docs: update wiki pages, draft board location hierarchy, log book data

- Expand location hierarchy in draft_board.md to 72 items across all systems
- Update ST-01/ST-02/XH-01/XH-02/XH-03/Xihe wiki pages (zh + en)
- Update log_book.xlsx state node detail data for XH-01 and ST-01 missions

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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2026-06-01 15:29:18 +08:00
co-authored by Claude Opus 4.7
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</nav>
<h2 id="design-overview">Design overview</h2>
<p>Wanxingyuan is the lead ship of the Stellaria class, adopting a long axial-spine multi-module cylindrical configuration that extends the proven axial modular layout of the Xihe class across several key dimensions. Following the 2059-2060 Star Port comprehensive upgrade, the vessel measures approximately 125 m in overall length and features dual artificial-gravity habitation rings (each 30 m in diameter), a central extension section, a greenhouse module, cryo-sleep chambers, and enhanced radiation protection. Propulsion is centered on the lightspeed engine powered by an Ark cold-fusion reactor, with a retained Perseverance mass-driver propulsion system serving as backup.</p>
<p>Wanxingyuan is the lead ship of the Stellaria class, adopting a long axial-spine multi-module cylindrical configuration that extends the proven axial modular layout of the Xihe class across several key dimensions. Following the 2059-2060 Star Port comprehensive upgrade, the vessel measures approximately 125 m in overall length and features dual artificial-gravity habitation rings (each 30 m in diameter), a central extension section, a greenhouse module, cryo-sleep chambers, and enhanced radiation protection. Propulsion is centered on the lightspeed engine powered by an Ark cold-fusion reactor, with a retained VS-02 Perseverance mass-driver propulsion system serving as backup.</p>
<p>Wanxingyuan is not capable of atmospheric re-entry or planetary landing; surface access and short-range transport are handled by two carried <a href="/home/Space_Shuttles/Echo_Shuttle">Echo-class shuttles</a> (or compatible ferry craft). The ship accommodates a long-duration crew of 25 (up to 50 short-duration), with the dual artificial-gravity rings operating at different rotation rates to provide adjustable artificial gravity between approximately 0.4 g and 0.6 g. The greenhouse module features multi-zone rotational hydroponic cultivation, providing stable food supplementation and atmospheric regeneration for long-duration missions. Cryo-sleep chambers support reduced metabolic consumption during ultra-long transits such as outer-planet missions. For a complete description of design details, see the main <a href="/home/Exploration_Motherships/Stellaria">Stellaria-class interplanetary exploration mothership</a> article.</p>
@@ -107,32 +107,43 @@
<table>
<thead><tr><th>No.</th><th>Date</th><th>Mission</th><th>Orbiter</th><th>Primary module(s)</th><th>Notes</th></tr></thead>
<tbody>
<tr><td>1</td><td>2050-09-15</td><td>VLT-456</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Patience</a> (uncrewed)</td><td>Forward docking hub</td><td>Orbiter remained on orbit as initial assembly platform</td></tr>
<tr><td>2</td><td>2050-12-01</td><td>VLT-478</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Perseverance</a> (crewed)</td><td>Command center</td><td>Crew used Patience as ops base; returned aboard Patience after mission</td></tr>
<tr><td>3</td><td>2051-03-15</td><td>VLT-503</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Loyalty</a> (crewed)</td><td>Static habitation module</td><td>Crew used the orbiter left by Perseverance as base</td></tr>
<tr><td>4</td><td>2051-06-01</td><td>VLT-530</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Determination</a> (crewed)</td><td>Central docking hub + initial truss</td><td>--</td></tr>
<tr><td>5</td><td>2051-09-15</td><td>VLT-558</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Courage</a> (crewed)</td><td>Greenhouse module</td><td>--</td></tr>
<tr><td>6</td><td>2051-12-01</td><td>VLT-581</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Endurance</a> (crewed)</td><td>Main storage module</td><td>--</td></tr>
<tr><td>7</td><td>2052-03-15</td><td>VLT-607</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Courage</a> (crewed)</td><td>Artificial-gravity habitation ring + truss extension</td><td>Ring segment exceeding Vulture payload bay limits assisted by super-heavy launch vehicle</td></tr>
<tr><td>8</td><td>2052-06-01</td><td>VLT-632</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Determination</a> (crewed)</td><td>Propulsion module base structure</td><td>Ship achieved autonomous power and basic attitude control from this point</td></tr>
<tr><td>9</td><td>2052-09-15</td><td>VLT-650</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Patience</a> (crewed)</td><td>Remaining truss + solar arrays</td><td>Final orbiter relay mission; subsequent work conducted directly on the mothership</td></tr>
<tr><td>1</td><td>2050-09-15</td><td>VLT-456</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-05 Patience</a> (uncrewed)</td><td>Forward docking hub</td><td>Orbiter remained on orbit as initial assembly platform</td></tr>
<tr><td>2</td><td>2050-12-01</td><td>VLT-478</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 Perseverance</a> (crewed)</td><td>Command center</td><td>Crew used VS-05 Patience as ops base; returned aboard VS-05 Patience after mission</td></tr>
<tr><td>3</td><td>2051-03-15</td><td>VLT-503</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-07 Loyalty</a> (crewed)</td><td>Static habitation module</td><td>Crew used the orbiter left by VS-02 Perseverance as base</td></tr>
<tr><td>4</td><td>2051-06-01</td><td>VLT-530</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 Determination</a> (crewed)</td><td>Central docking hub + initial truss</td><td>--</td></tr>
<tr><td>5</td><td>2051-09-15</td><td>VLT-558</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 Courage</a> (crewed)</td><td>Greenhouse module</td><td>--</td></tr>
<tr><td>6</td><td>2051-12-01</td><td>VLT-581</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 Endurance</a> (crewed)</td><td>Main storage module</td><td>--</td></tr>
<tr><td>7</td><td>2052-03-15</td><td>VLT-607</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 Courage</a> (crewed)</td><td>Artificial-gravity habitation ring + truss extension</td><td>Ring segment exceeding Vulture payload bay limits assisted by super-heavy launch vehicle</td></tr>
<tr><td>8</td><td>2052-06-01</td><td>VLT-632</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 Determination</a> (crewed)</td><td>Propulsion module base structure</td><td>Ship achieved autonomous power and basic attitude control from this point</td></tr>
<tr><td>9</td><td>2052-09-15</td><td>VLT-650</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-05 Patience</a> (crewed)</td><td>Remaining truss + solar arrays</td><td>Final orbiter relay mission; subsequent work conducted directly on the mothership</td></tr>
</tbody></table>
<p>By 2053-02-02, initial construction had accumulated 871 days. At this point the hull had completed primary structural mating and most cross-module connections, but the main propulsion system (the Xihe-class Perseverance mass-driver) had not yet been delivered. Just as the propulsion module was about to arrive, a strategic decision altered the ship's destiny: the emerging Stellaria Program offered the revolutionary lightspeed engine propulsion technology. Completing it as a standard Xihe-class mothership would have missed the window to leverage the new technology.</p>
<p>By 2053-02-02, initial construction had accumulated 871 days. At this point the hull had completed primary structural mating and most cross-module connections, but the main propulsion system (the Xihe-class VS-02 Perseverance mass-driver) had not yet been delivered. Just as the propulsion module was about to arrive, a strategic decision altered the ship's destiny: the emerging Stellaria Program offered the revolutionary lightspeed engine propulsion technology. Completing it as a standard Xihe-class mothership would have missed the window to leverage the new technology.</p>
<p>Construction was formally halted on 2053-02-02. Three months later (2053-05-11), the hull was officially transferred to the Stellaria Program and entered the reconfiguration phase. The other base mothership (future ST-02) was also halted on 2053-02-10 and subsequently transferred as well.</p>
<h3 id="reconfiguration-stellaria-class-lead-ship">Reconfiguration: Stellaria-class lead ship (2053-2054)</h3>
<p>Reconfiguration work commenced on 2053-05-11 at <a href="/home/Stations/Star_Port_Station">Star Port Station</a>, lasting 352 days and completing on 2054-04-28. During this period, the ship's original Xihe-class propulsion module mounting base was replaced with a lightspeed-engine-compatible interface, and lightspeed engine core components were delivered in batches to Star Port by <a href="/home/Cargo_Ships/Qingtian">Qingtian cargo ships</a> (LEO upmass capacity approximately 150 t) for orbital installation and static testing.</p>
<p>Reconfiguration work commenced on 2053-05-11 in low Earth orbit, lasting 352 days and completing on 2054-04-28. During this period, the ship's original Xihe-class propulsion module mounting base was replaced with a lightspeed-engine-compatible interface, and lightspeed engine core components were delivered in batches to LEO by <a href="/home/Space_Shuttles/Vulture_Shuttle">Vulture Shuttles</a> (by this time in the Block 1.5 era at 24 flights/year per orbiter) for orbital installation and static testing.</p>
<p>It is crucial to emphasize that this reconfiguration's core change was the replacement of the Xihe-class Perseverance mass-driver propulsion system with the lightspeed engine -- all other systems (including command center, habitation modules, greenhouse, docking interfaces, and life-support systems) remained at Xihe-class standards. In other words, upon completion of reconfiguration in 2054, Wanxingyuan was essentially a hybrid platform: "Xihe-class hull + Stellaria-class propulsion core." This identity defined its early operations from 2055 to 2058, until the 2059-2060 Star Port upgrade brought it to full Stellaria-class specifications.</p>
<p>It is crucial to emphasize that this reconfiguration's core change was the replacement of the Xihe-class VS-02 Perseverance mass-driver propulsion system with the lightspeed engine -- all other systems (including command center, habitation modules, greenhouse, docking interfaces, and life-support systems) remained at Xihe-class standards. In other words, upon completion of reconfiguration in 2054, Wanxingyuan was essentially a hybrid platform: "Xihe-class hull + Stellaria-class propulsion core." This identity defined its early operations from 2055 to 2058, until the 2059-2060 Star Port upgrade brought it to full Stellaria-class specifications.</p>
<p>Reconfiguration work was handled entirely by <a href="/home/Space_Shuttles/Vulture_Shuttle">Vulture Shuttles</a>. Since the lightspeed engine core components could be transported in disassembled form within the Vulture payload bay, no super-heavy launch vehicle assistance was required. The following table records the key launches of the reconfiguration phase:</p>
<table>
<thead><tr><th>No.</th><th>Date</th><th>Mission</th><th>Orbiter</th><th>Primary payload</th><th>Notes</th></tr></thead>
<tbody>
<tr><td>1</td><td>2053-05-11</td><td>VLT-755</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 Courage</a> (crewed)</td><td>Lightspeed engine interface mounting base retrofit kit</td><td>Replaced Xihe-class propulsion base with lightspeed-engine-compatible interface</td></tr>
<tr><td>2</td><td>2053-08-01</td><td>VLT-772</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 Determination</a> (crewed)</td><td>Magnetic confinement field coil assembly + primary cooling loop</td><td>--</td></tr>
<tr><td>3</td><td>2053-11-15</td><td>VLT-795</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 Endurance</a> (crewed)</td><td>Thrust vector control unit + propulsion control system core</td><td>--</td></tr>
<tr><td>4</td><td>2054-01-15</td><td>VLT-812</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-05 Patience</a> (crewed)</td><td>Power transmission bus + redundant control loops</td><td>--</td></tr>
<tr><td>5</td><td>2054-03-01</td><td>VLT-830</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 Perseverance</a> (crewed)</td><td>Final integration test equipment + static fire preparation kit</td><td>Final reconfiguration launch; subsequent system integration and static testing conducted on the ship</td></tr>
</tbody></table>
<table>
<thead><tr><th>Phase</th><th>Start</th><th>End</th><th>Duration</th><th>Activity</th></tr></thead>
<tbody>
<tr><td>Initial construction (Xihe-class base mothership)</td><td>2050-09-15</td><td>2053-02-02</td><td>871 days</td><td>Vulture Shuttle orbiter relay, structural assembly and cross-module connections</td></tr>
<tr><td>Construction halt</td><td>2053-02-02</td><td>2053-05-11</td><td>98 days</td><td>Strategic decision and transfer preparation</td></tr>
<tr><td>Reconfiguration (Stellaria-class lead ship)</td><td>2053-05-11</td><td>2054-04-28</td><td>352 days</td><td>Qingtian cargo ship transport, lightspeed engine installation and static testing</td></tr>
<tr><td>Reconfiguration (Stellaria-class lead ship)</td><td>2053-05-11</td><td>2054-04-28</td><td>352 days</td><td>Vulture Shuttle orbiter relay, lightspeed engine component delivery and installation</td></tr>
<tr><td>Total</td><td>2050-09-15</td><td>2054-04-28</td><td>1,321 days</td><td>From first module arrival to reconfiguration completion</td></tr>
</tbody></table>
@@ -253,7 +264,7 @@
<tr><td>Length</td><td>Approximately 125 m (post-2059 upgrade)</td></tr>
<tr><td>Maximum diameter</td><td>30 m (dual artificial-gravity habitation rings, each 30 m diameter)</td></tr>
<tr><td>Primary propulsion</td><td>Lightspeed engine (Stellaria-class standard)</td></tr>
<tr><td>Backup propulsion</td><td>Perseverance mass-driver propulsion system (Xihe-class standard)</td></tr>
<tr><td>Backup propulsion</td><td>VS-02 Perseverance mass-driver propulsion system (Xihe-class standard)</td></tr>
<tr><td>Main reactor</td><td>Ark cold-fusion reactor, enhanced output class</td></tr>
<tr><td>Full-load delta-v</td><td>Approximately 3,500 km/s with 500 t payload (lightspeed engine)</td></tr>
<tr><td>Maximum payload</td><td>500 t (including surface vehicles and supplies)</td></tr>
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<table>
<thead><tr><th>序号</th><th>日期</th><th>任务</th><th>轨道器</th><th>主要模块</th><th>备注</th></tr></thead>
<tbody>
<tr><td>1</td><td>2050-09-15</td><td>VLT-456</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">耐心号</a>(无人)</td><td>前部对接枢纽</td><td>轨道器留在轨道上,作为初始组装平台</td></tr>
<tr><td>2</td><td>2050-12-01</td><td>VLT-478</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">毅力号</a>(载人)</td><td>指挥中心</td><td>人员以耐心号为操作基地;任务后乘耐心号返回</td></tr>
<tr><td>3</td><td>2051-03-15</td><td>VLT-503</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">忠诚号</a>(载人)</td><td>静止居住模块</td><td>人员以毅力号留下的轨道器为基地</td></tr>
<tr><td>4</td><td>2051-06-01</td><td>VLT-530</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">决心号</a>(载人)</td><td>中心对接枢纽 + 初始桁架段</td><td></td></tr>
<tr><td>5</td><td>2051-09-15</td><td>VLT-558</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">勇气号</a>(载人)</td><td>温室模块</td><td></td></tr>
<tr><td>6</td><td>2051-12-01</td><td>VLT-581</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">耐力号</a>(载人)</td><td>主储藏模块</td><td></td></tr>
<tr><td>7</td><td>2052-03-15</td><td>VLT-607</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">勇气号</a>(载人)</td><td>人工重力居住环 + 桁架延伸段</td><td>人工重力环超出秃鹫货舱限制的一部分由超重型火箭辅助发射</td></tr>
<tr><td>8</td><td>2052-06-01</td><td>VLT-632</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">决心号</a>(载人)</td><td>推进模块基础结构</td><td>母舰自此具备自主电力和基础姿态控制</td></tr>
<tr><td>9</td><td>2052-09-15</td><td>VLT-650</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">耐心号</a>(载人)</td><td>剩余桁架段 + 太阳能阵列</td><td>最后一次轨道器接力;此后建造工作直接在母舰上进行</td></tr>
<tr><td>1</td><td>2050-09-15</td><td>VLT-456</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-05 耐心号</a>(无人)</td><td>前部对接枢纽</td><td>轨道器留在轨道上,作为初始组装平台</td></tr>
<tr><td>2</td><td>2050-12-01</td><td>VLT-478</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 毅力号</a>(载人)</td><td>指挥中心</td><td>人员以VS-05 耐心号为操作基地;任务后乘VS-05 耐心号返回</td></tr>
<tr><td>3</td><td>2051-03-15</td><td>VLT-503</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-07 忠诚号</a>(载人)</td><td>静止居住模块</td><td>人员以VS-02 毅力号留下的轨道器为基地</td></tr>
<tr><td>4</td><td>2051-06-01</td><td>VLT-530</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 决心号</a>(载人)</td><td>中心对接枢纽 + 初始桁架段</td><td></td></tr>
<tr><td>5</td><td>2051-09-15</td><td>VLT-558</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 勇气号</a>(载人)</td><td>温室模块</td><td></td></tr>
<tr><td>6</td><td>2051-12-01</td><td>VLT-581</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 耐力号</a>(载人)</td><td>主储藏模块</td><td></td></tr>
<tr><td>7</td><td>2052-03-15</td><td>VLT-607</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 勇气号</a>(载人)</td><td>人工重力居住环 + 桁架延伸段</td><td>人工重力环超出秃鹫货舱限制的一部分由超重型火箭辅助发射</td></tr>
<tr><td>8</td><td>2052-06-01</td><td>VLT-632</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 决心号</a>(载人)</td><td>推进模块基础结构</td><td>母舰自此具备自主电力和基础姿态控制</td></tr>
<tr><td>9</td><td>2052-09-15</td><td>VLT-650</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-05 耐心号</a>(载人)</td><td>剩余桁架段 + 太阳能阵列</td><td>最后一次轨道器接力;此后建造工作直接在母舰上进行</td></tr>
</tbody></table>
<p>至 2053 年 2 月 2 日,初始建造完成 871 天。此时舰体已完成主体结构对接和大部分跨模块连接,但尚未安装主推进系统(羲和级"毅力"质量驱动推进系统尚未交付)。就在推进模块即将运抵之际,一项战略决策改变了这艘舰的命运:新兴的万星源计划提供了光速引擎这一革命性推进技术。继续将其建造成标准羲和级母舰将错失利用新技术的窗口。</p>
@@ -127,12 +127,23 @@
<p>需要特别强调的是,此次重新配置的核心变更是将羲和级的"毅力"质量驱动推进系统替换为光速引擎——其余系统(包括指挥中心、居住模块、温室、对接口和生命保障系统)均保持羲和级标准。换言之,万星源号在 2054 年重新配置完成时本质上是一艘"羲和级舰体 + 万星源级推进核心"的混合平台。这一定位贯穿了其 2055—2058 年的初期运营,直至 2059—2060 年星港升级才达到完整的万星源级规格。</p>
<p>重新配置工作仍由<a href="/home/Space_Shuttles/Vulture_Shuttle">秃鹫航天飞机</a>(此时已进入 Block 1.5 时代,单架年飞行率提升至 24 次/年)承担全部运输和组装任务。由于不涉及大型整体模块(光速引擎核心组件可在拆解状态下由秃鹫货舱容纳),重新配置无需超重型火箭辅助。以下为重新配置阶段的主要发射记录:</p>
<table>
<thead><tr><th>序号</th><th>日期</th><th>任务</th><th>轨道器</th><th>主要载荷</th><th>备注</th></tr></thead>
<tbody>
<tr><td>1</td><td>2053-05-11</td><td>VLT-755</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 勇气号</a>(载人)</td><td>光速引擎接口基座改造套件</td><td>替换羲和级推进模块基座,安装光速引擎兼容接口</td></tr>
<tr><td>2</td><td>2053-08-01</td><td>VLT-772</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 决心号</a>(载人)</td><td>磁约束场线圈组件及冷却系统初级回路</td><td></td></tr>
<tr><td>3</td><td>2053-11-15</td><td>VLT-795</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 耐力号</a>(载人)</td><td>推力矢量控制单元及推进控制系统核心</td><td></td></tr>
<tr><td>4</td><td>2054-01-15</td><td>VLT-812</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-05 耐心号</a>(载人)</td><td>动力传输总线及冗余控制回路</td><td></td></tr>
<tr><td>5</td><td>2054-03-01</td><td>VLT-830</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 毅力号</a>(载人)</td><td>最终集成测试设备及静态点火准备套件</td><td>末次重新配置发射;此后在舰上进行系统集成与静态测试</td></tr>
</tbody></table>
<table>
<thead><tr><th>阶段</th><th>开始</th><th>结束</th><th>持续</th><th>主要内容</th></tr></thead>
<tbody>
<tr><td>初始建造(羲和级基础母舰)</td><td>2050-09-15</td><td>2053-02-02</td><td>871 天</td><td>秃鹫航天飞机轨道器接力,主体结构对接与跨模块连接</td></tr>
<tr><td>建造暂停</td><td>2053-02-02</td><td>2053-05-11</td><td>98 天</td><td>战略决策与移交准备</td></tr>
<tr><td>重新配置(万星源级首舰)</td><td>2053-05-11</td><td>2054-04-28</td><td>352 天</td><td>擎天货运飞船运输,光速引擎安装与静态测试</td></tr>
<tr><td>重新配置(万星源级首舰)</td><td>2053-05-11</td><td>2054-04-28</td><td>352 天</td><td>秃鹫航天飞机轨道器接力,光速引擎核心组件分批运抵与安装</td></tr>
<tr><td>总计</td><td>2050-09-15</td><td>2054-04-28</td><td>1,321 天</td><td>从首个模块运抵到重新配置完成</td></tr>
</tbody></table>
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@@ -103,31 +103,47 @@
<table>
<thead><tr><th>No.</th><th>Date</th><th>Mission</th><th>Orbiter</th><th>Primary module(s)</th><th>Notes</th></tr></thead>
<tbody>
<tr><td>1</td><td>2052-01-14</td><td>VLT-661</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Loyalty</a> (uncrewed)</td><td>Forward docking hub + command center</td><td>Final Vulture Block 1 uncrewed first launch; orbiter remained as assembly platform</td></tr>
<tr><td>2</td><td>2052-04-01</td><td>VLT-685</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Perseverance</a> (crewed)</td><td>Static habitation module + initial truss</td><td>--</td></tr>
<tr><td>3</td><td>2052-07-15</td><td>VLT-708</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Courage</a> (crewed)</td><td>Central docking hub</td><td>--</td></tr>
<tr><td>4</td><td>2052-10-01</td><td>VLT-725</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Determination</a> (crewed)</td><td>Greenhouse module</td><td>--</td></tr>
<tr><td>5</td><td>2052-12-15</td><td>VLT-741</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">Endurance</a> (crewed)</td><td>Main storage module + truss extension</td><td>Final orbiter relay. Construction halted thereafter</td></tr>
<tr><td>1</td><td>2052-01-14</td><td>VLT-661</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-07 Loyalty</a> (uncrewed)</td><td>Forward docking hub + command center</td><td>Final Vulture Block 1 uncrewed first launch; orbiter remained as assembly platform</td></tr>
<tr><td>2</td><td>2052-04-01</td><td>VLT-685</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 Perseverance</a> (crewed)</td><td>Static habitation module + initial truss</td><td>--</td></tr>
<tr><td>3</td><td>2052-07-15</td><td>VLT-708</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 Courage</a> (crewed)</td><td>Central docking hub</td><td>--</td></tr>
<tr><td>4</td><td>2052-10-01</td><td>VLT-725</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 Determination</a> (crewed)</td><td>Greenhouse module</td><td>--</td></tr>
<tr><td>5</td><td>2052-12-15</td><td>VLT-741</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 Endurance</a> (crewed)</td><td>Main storage module + truss extension</td><td>Final orbiter relay. Construction halted thereafter</td></tr>
</tbody></table>
<p>On 2053-02-10, the same strategic decision that affected ST-01 was applied to this vessel: rather than completing it as a standard Xihe-class mothership, it was transferred to the Stellaria Program to be equipped with the lightspeed engine. Construction was formally halted. Three months later (2053-05-12 -- just one day after ST-01's transfer), the hull was officially transferred to the Stellaria Program and entered the reconfiguration phase.</p>
<h3 id="reconfiguration-stellaria-class-second-ship">Reconfiguration: Stellaria-class second ship (2053-2055)</h3>
<p>Kristen's reconfiguration commenced on 2053-05-12 at <a href="/home/Stations/Star_Port_Station">Star Port Station</a>, lasting approximately 884 days and completing on 2055-10-13. This was the longest reconfiguration phase of any mothership -- approximately 2.5 times ST-01's 352 days. Three primary factors account for this difference:</p>
<p>Kristen's reconfiguration commenced on 2053-05-12 in low Earth orbit, lasting approximately 884 days and completing on 2055-10-13. This was the longest reconfiguration phase of any mothership -- approximately 2.5 times ST-01's 352 days. Three primary factors account for this difference:</p>
<ul>
<li><b>Lower initial completion level</b>: Kristen had fewer modules installed when construction halted in February 2053, requiring approximately 2-3 Xihe-standard modules to be backfilled (including the artificial-gravity habitation ring and propulsion module base structure) before the lightspeed engine could be installed.</li>
<li><b>Resource prioritization</b>: During 2053-2054, the Stellaria Program's engineering resources and Qingtian cargo ship capacity were prioritized toward ST-01's reconfiguration to ensure the lead ship completed as early as possible. Kristen's reconfiguration only accelerated fully after ST-01's completion in April 2054.</li>
<li><b>Lower initial completion level</b>: Kristen had fewer modules installed when construction halted in February 2053 (roughly 6-7 modules vs. ST-01's 9), requiring approximately 2-3 Xihe-standard modules to be backfilled (including the artificial-gravity habitation ring and propulsion module base structure) before the lightspeed engine could be installed.</li>
<li><b>Resource prioritization</b>: During 2053-2054, the <a href="/home/Space_Shuttles/Vulture_Shuttle">Vulture Shuttle</a> fleet's resources were prioritized toward ST-01's reconfiguration to ensure the lead ship completed as early as possible. Kristen's reconfiguration only received sufficient orbiter resources and entered its full acceleration phase after ST-01's completion in April 2054.</li>
<li><b>Lead-ship lessons learned</b>: The engineering team deliberately leveraged ST-01's reconfiguration and trial-run data to optimize the lightspeed engine installation process, propulsion control interfaces, and Xihe/Stellaria system integration approach on Kristen.</li>
</ul>
<p>Reconfiguration work was supported by <a href="/home/Cargo_Ships/Qingtian">Qingtian cargo ships</a> (LEO upmass capacity approximately 150 t) for large-module transport, with Star Port Station's resident engineering teams conducting orbital installation and testing. As with ST-01, the core change of this reconfiguration was the installation of the lightspeed engine -- all other systems remained at Xihe-class standards.</p>
<p>As with the initial construction phase, all reconfiguration work was carried out by <a href="/home/Space_Shuttles/Vulture_Shuttle">Vulture Shuttles</a> (Block 1.5, 24 flights/year per orbiter). Kristen's reconfiguration proceeded in two phases: Phase 1 (May 2053 to April 2054) focused on backfilling missing Xihe-standard modules at a slower pace with only 2 launches, as ST-01's reconfiguration took priority; Phase 2 (April 2054 to October 2055), after ST-01's completion freed up orbiter resources, accelerated to 6 launches. The reconfiguration totaled 8 Vulture launches -- more than ST-01's 5 reconfiguration launches, compensating for the module shortfall from the shorter initial construction phase. The following table records the key launches:</p>
<table>
<thead><tr><th>No.</th><th>Date</th><th>Mission</th><th>Orbiter</th><th>Primary payload</th><th>Notes</th></tr></thead>
<tbody>
<tr><td colspan="6"><b>Phase 1: Backfill missing modules (2053-2054, concurrent with ST-01 reconfiguration, resource-constrained)</b></td></tr>
<tr><td>1</td><td>2053-08-15</td><td>VLT-778</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 Determination</a> (crewed)</td><td>Propulsion module base structure</td><td>Backfill of Xihe-standard propulsion base, providing structural foundation for subsequent lightspeed engine installation</td></tr>
<tr><td>2</td><td>2053-12-01</td><td>VLT-798</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 Endurance</a> (crewed)</td><td>Artificial-gravity habitation ring</td><td>Final Xihe-standard missing module backfill completed</td></tr>
<tr><td colspan="6"><b>Phase 2: Lightspeed engine installation (2054-2055, full acceleration after ST-01 completion)</b></td></tr>
<tr><td>3</td><td>2054-04-15</td><td>VLT-825</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 Courage</a> (crewed)</td><td>Lightspeed engine interface mounting base retrofit kit</td><td>Replaced the backfilled Xihe propulsion base interface with lightspeed-engine-compatible interface</td></tr>
<tr><td>4</td><td>2054-08-01</td><td>VLT-848</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 Endurance</a> (crewed)</td><td>Magnetic confinement field coil assembly + primary cooling loop</td><td>--</td></tr>
<tr><td>5</td><td>2054-12-15</td><td>VLT-872</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-05 Patience</a> (crewed)</td><td>Thrust vector control unit + propulsion control system core</td><td>--</td></tr>
<tr><td>6</td><td>2055-03-01</td><td>VLT-895</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 Perseverance</a> (crewed)</td><td>Power transmission bus + redundant control loops</td><td>--</td></tr>
<tr><td>7</td><td>2055-06-15</td><td>VLT-920</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 Determination</a> (crewed)</td><td>Xihe/Stellaria system integration optimization kit</td><td>Propulsion control interfaces and system integration optimized based on ST-01 trial run feedback</td></tr>
<tr><td>8</td><td>2055-09-01</td><td>VLT-938</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 Courage</a> (crewed)</td><td>Final integration test equipment + static fire preparation kit</td><td>Final reconfiguration launch; subsequent system integration and static testing conducted on the ship</td></tr>
</tbody></table>
<p>As with ST-01, the core change of this reconfiguration was the installation of the lightspeed engine -- all other systems remained at Xihe-class standards. Kristen's construction totaled 13 Vulture launches (5 initial + 8 reconfiguration), comparable to ST-01's 14 launches (9 initial + 5 reconfiguration), reflecting the Stellaria Program's strategy of flexibly allocating orbiter resources across different phases based on prevailing conditions.</p>
<table>
<thead><tr><th>Phase</th><th>Start</th><th>End</th><th>Duration</th><th>Activity</th></tr></thead>
<tbody>
<tr><td>Initial construction (Xihe-class base mothership)</td><td>2052-01-14</td><td>2053-02-10</td><td>~392 days</td><td>Vulture Shuttle orbiter relay, structural assembly and cross-module connections</td></tr>
<tr><td>Construction halt</td><td>2053-02-10</td><td>2053-05-12</td><td>~91 days</td><td>Strategic decision and transfer preparation</td></tr>
<tr><td>Reconfiguration (Stellaria-class second ship)</td><td>2053-05-12</td><td>2055-10-13</td><td>~884 days</td><td>Qingtian cargo transport, backfill of missing modules, lightspeed engine installation and testing</td></tr>
<tr><td>Total</td><td>2052-01-14</td><td>2055-10-13</td><td>~1,367 days</td><td>From first module arrival to reconfiguration completion</td></tr>
<tr><td>Reconfiguration (Stellaria-class second ship)</td><td>2053-05-12</td><td>2055-10-13</td><td>~884 days</td><td>Vulture Shuttle orbiter relay, backfill of missing modules, lightspeed engine installation and testing</td></tr>
<tr><td>Total</td><td>2052-01-14</td><td>2055-10-13</td><td>~1,367 days</td><td>From first module arrival to reconfiguration completion (13 Vulture launches total)</td></tr>
</tbody></table>
<h2 id="testing-and-commissioning">Testing and commissioning</h2>
@@ -222,7 +238,7 @@
<tr><td>Current length</td><td>Approximately 83.4 m (post-upgrade: ~125 m)</td></tr>
<tr><td>Current max diameter</td><td>25 m (artificial-gravity habitation ring); post-upgrade: 30 m (dual rings)</td></tr>
<tr><td>Primary propulsion</td><td>Lightspeed engine (Stellaria-class standard)</td></tr>
<tr><td>Backup propulsion</td><td>Perseverance mass-driver propulsion system (Xihe-class standard)</td></tr>
<tr><td>Backup propulsion</td><td>VS-02 Perseverance mass-driver propulsion system (Xihe-class standard)</td></tr>
<tr><td>Main reactor</td><td>Ark cold-fusion reactor, approximately 8 TW output class</td></tr>
<tr><td>Full-load delta-v</td><td>Approximately 2,200 km/s with 300 t payload (lightspeed engine)</td></tr>
<tr><td>Maximum payload</td><td>300 t (post-upgrade: 500 t)</td></tr>
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@@ -103,31 +103,47 @@
<table>
<thead><tr><th>序号</th><th>日期</th><th>任务</th><th>轨道器</th><th>主要模块</th><th>备注</th></tr></thead>
<tbody>
<tr><td>1</td><td>2052-01-14</td><td>VLT-661</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">忠诚号</a>(无人)</td><td>前部对接枢纽 + 指挥中心</td><td>最后一次秃鹫 Block 1 无人首飞;轨道器留轨作为组装平台</td></tr>
<tr><td>2</td><td>2052-04-01</td><td>VLT-685</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">毅力号</a>(载人)</td><td>静止居住模块 + 初始桁架</td><td></td></tr>
<tr><td>3</td><td>2052-07-15</td><td>VLT-708</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">勇气号</a>(载人)</td><td>中心对接枢纽</td><td></td></tr>
<tr><td>4</td><td>2052-10-01</td><td>VLT-725</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">决心号</a>(载人)</td><td>温室模块</td><td></td></tr>
<tr><td>5</td><td>2052-12-15</td><td>VLT-741</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">耐力号</a>(载人)</td><td>主储藏模块 + 桁架延伸段</td><td>末次轨道器接力。此后建造暂停</td></tr>
<tr><td>1</td><td>2052-01-14</td><td>VLT-661</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-07 忠诚号</a>(无人)</td><td>前部对接枢纽 + 指挥中心</td><td>最后一次秃鹫 Block 1 无人首飞;轨道器留轨作为组装平台</td></tr>
<tr><td>2</td><td>2052-04-01</td><td>VLT-685</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 毅力号</a>(载人)</td><td>静止居住模块 + 初始桁架</td><td></td></tr>
<tr><td>3</td><td>2052-07-15</td><td>VLT-708</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 勇气号</a>(载人)</td><td>中心对接枢纽</td><td></td></tr>
<tr><td>4</td><td>2052-10-01</td><td>VLT-725</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 决心号</a>(载人)</td><td>温室模块</td><td></td></tr>
<tr><td>5</td><td>2052-12-15</td><td>VLT-741</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 耐力号</a>(载人)</td><td>主储藏模块 + 桁架延伸段</td><td>末次轨道器接力。此后建造暂停</td></tr>
</tbody></table>
<p>2053 年 2 月 10 日,与 ST-01 相同的战略决策作用于这艘舰:与其将其建造成标准羲和级母舰,不如移交至万星源计划并配备光速引擎。建造正式暂停。三个月后(2053 年 5 月 12 日——仅比 ST-01 晚一天),该舰体正式移交万星源计划,进入重新配置阶段。</p>
<h3 id="重新配置_万星源级二号舰">重新配置:万星源级二号舰(2053—2055)</h3>
<p>克里斯滕号的重新配置于 2053 年 5 月 12 日在<a href="/home/Stations/Star_Port_Station">星港空间站</a>启动,历时约 884 天,于 2055 年 10 月 13 日完成。这是所有母舰中耗时最长的重新配置阶段——约为 ST-01 的 352 天的 2.5 倍。造成这一差异的主要原因有三:</p>
<p>克里斯滕号的重新配置于 2053 年 5 月 12 日在近地轨道启动,历时约 884 天,于 2055 年 10 月 13 日完成。这是所有母舰中耗时最长的重新配置阶段——约为 ST-01 的 352 天的 2.5 倍。造成这一差异的主要原因有三:</p>
<ul>
<li>初始完成度较低:克里斯滕号在 2053 年 2 月停工时的模块完成度低于 ST-01,需要先补装约 2-3 个羲和级标准模块(包括人工重力居住环和推进模块基座结构),再安装光速引擎。</li>
<li>资源优先分配:2053—2054 年间,万星源计划的工程资源和擎天货运飞船运力优先保障 ST-01 的重新配置,以确保首舰尽早完成。克里斯滕号的重新配置在 ST-01 于 2054 年 4 月完成后才全面加速。</li>
<li>吸取首舰经验:工程团队有意利用 ST-01 的重新配置和试运行数据,在克里斯滕号上优化光速引擎安装流程、推进控制接口和羲和级/万星源级系统集成方案。</li>
<li><b>初始完成度较低</b>:克里斯滕号在 2053 年 2 月停工时的模块完成度低于 ST-01(约 6-7 个模块 vs ST-01 的 9 个模块),需要先补装约 2-3 个羲和级标准模块(包括人工重力居住环和推进模块基座结构),再安装光速引擎。</li>
<li><b>资源优先分配</b>2053—2054 年间,<a href="/home/Space_Shuttles/Vulture_Shuttle">秃鹫航天飞机</a>机队资源优先保障 ST-01 的重新配置,以确保首舰尽早完成。克里斯滕号的重新配置在 ST-01 于 2054 年 4 月完成后才获得充足的轨道器资源,进入全面加速阶段</li>
<li><b>吸取首舰经验</b>:工程团队有意利用 ST-01 的重新配置和试运行数据,在克里斯滕号上优化光速引擎安装流程、推进控制接口和羲和级/万星源级系统集成方案。</li>
</ul>
<p>重新配置工作由<a href="/home/Cargo_Ships/Qingtian">擎天货运飞船</a>(近地轨道上行能力约 150 吨)承担大型模块运输,星港空间站常驻工程团队负责在轨安装和测试。与 ST-01 一样,此次重新配置的核心变更是安装光速引擎——其余系统保持羲和级标准。</p>
<p>与初始建造阶段一样,重新配置工作全部<a href="/home/Space_Shuttles/Vulture_Shuttle">秃鹫航天飞机</a>Block 1.5,单架年飞行率 24 次/年)承担。克里斯滕号的重新配置分为两个阶段:第一阶段(2053 年 5 月至 2054 年 4 月)以补装缺失的羲和级基础模块为主,进度较慢,仅完成 2 次发射;第二阶段(2054 年 4 月至 2055 年 10 月),ST-01 完成重新配置后轨道器资源释放,克里斯滕号进入全面加速,完成 6 次发射。重新配置期间共计 8 次秃鹫发射——多于 ST-01 重新配置的 5 次,弥补了初始建造阶段因资源不足导致的模块缺口。以下为重新配置阶段的主要发射记录:</p>
<table>
<thead><tr><th>序号</th><th>日期</th><th>任务</th><th>轨道器</th><th>主要载荷</th><th>备注</th></tr></thead>
<tbody>
<tr><td colspan="6"><b>第一阶段:补装缺失模块(2053—2054,与 ST-01 重新配置并行,资源受限)</b></td></tr>
<tr><td>1</td><td>2053-08-15</td><td>VLT-778</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 决心号</a>(载人)</td><td>推进模块基座结构</td><td>补装羲和级标准推进基座,为后续光速引擎安装提供结构基础</td></tr>
<tr><td>2</td><td>2053-12-01</td><td>VLT-798</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 耐力号</a>(载人)</td><td>人工重力居住环</td><td>最后一项羲和级缺失模块补装完成</td></tr>
<tr><td colspan="6"><b>第二阶段:光速引擎安装(2054—2055,ST-01 完成后全面加速)</b></td></tr>
<tr><td>3</td><td>2054-04-15</td><td>VLT-825</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 勇气号</a>(载人)</td><td>光速引擎接口基座改造套件</td><td>替换补装的羲和级推进基座接口,安装光速引擎兼容接口</td></tr>
<tr><td>4</td><td>2054-08-01</td><td>VLT-848</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 耐力号</a>(载人)</td><td>磁约束场线圈组件及冷却系统初级回路</td><td></td></tr>
<tr><td>5</td><td>2054-12-15</td><td>VLT-872</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-05 耐心号</a>(载人)</td><td>推力矢量控制单元及推进控制系统核心</td><td></td></tr>
<tr><td>6</td><td>2055-03-01</td><td>VLT-895</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 毅力号</a>(载人)</td><td>动力传输总线及冗余控制回路</td><td></td></tr>
<tr><td>7</td><td>2055-06-15</td><td>VLT-920</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 决心号</a>(载人)</td><td>羲和级/万星源级系统集成优化套件</td><td>基于 ST-01 试运行反馈优化推进控制接口和系统集成</td></tr>
<tr><td>8</td><td>2055-09-01</td><td>VLT-938</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 勇气号</a>(载人)</td><td>最终集成测试设备及静态点火准备套件</td><td>末次重新配置发射;此后在舰上进行系统集成与静态测试</td></tr>
</tbody></table>
<p>与 ST-01 一样,此次重新配置的核心变更是安装光速引擎——其余系统保持羲和级标准。克里斯滕号建造总计 13 次秃鹫发射(初始 5 次 + 重新配置 8 次),与 ST-01 的 14 次(初始 9 次 + 重新配置 5 次)总量相当,反映了万星源计划在不同阶段根据资源条件灵活调度轨道器的建造策略。</p>
<table>
<thead><tr><th>阶段</th><th>开始</th><th>结束</th><th>持续</th><th>主要内容</th></tr></thead>
<tbody>
<tr><td>初始建造(羲和级基础母舰)</td><td>2052-01-14</td><td>2053-02-10</td><td>约 392 天</td><td>秃鹫航天飞机轨道器接力,主体结构对接</td></tr>
<tr><td>建造暂停</td><td>2053-02-10</td><td>2053-05-12</td><td>约 91 天</td><td>战略决策与移交准备</td></tr>
<tr><td>重新配置(万星源级二号舰)</td><td>2053-05-12</td><td>2055-10-13</td><td>约 884 天</td><td>擎天货运飞船运输,补缺失模块,光速引擎安装与测试</td></tr>
<tr><td>总计</td><td>2052-01-14</td><td>2055-10-13</td><td>约 1,367 天</td><td>从首个模块运抵到重新配置完成</td></tr>
<tr><td>重新配置(万星源级二号舰)</td><td>2053-05-12</td><td>2055-10-13</td><td>约 884 天</td><td>秃鹫航天飞机轨道器接力,补缺失模块,光速引擎安装与测试</td></tr>
<tr><td>总计</td><td>2052-01-14</td><td>2055-10-13</td><td>约 1,367 天</td><td>从首个模块运抵到重新配置完成(共 13 次秃鹫发射)</td></tr>
</tbody></table>
<h2 id="测试与服役">测试与服役</h2>
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@@ -94,14 +94,14 @@
<table>
<thead><tr><th>序号</th><th>日期</th><th>任务</th><th>轨道器</th><th>模块</th><th>备注</th></tr></thead>
<tbody>
<tr><td>1</td><td>2050-03-15</td><td>VLT-411</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">耐力号Endurance</a>(无人)</td><td>前部对接枢纽</td><td>轨道器留在轨道上,作为初始组装平台</td></tr>
<tr><td>2</td><td>2050-06-01</td><td>VLT-432</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">勇气号Courage</a>(载人)</td><td>指挥中心 + 初始桁架段</td><td>人员使用耐力号为操作基地;任务后乘耐力号返回,勇气号留在轨道</td></tr>
<tr><td>3</td><td>2050-08-15</td><td>VLT-448</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">毅力号Perseverance</a>(载人)</td><td>静止居住模块</td><td>人员使用勇气号为基地;任务后乘勇气号返回,毅力号留在轨道</td></tr>
<tr><td>1</td><td>2050-03-15</td><td>VLT-411</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 耐力号</a>(无人)</td><td>前部对接枢纽</td><td>轨道器留在轨道上,作为初始组装平台</td></tr>
<tr><td>2</td><td>2050-06-01</td><td>VLT-432</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-03 勇气号</a>(载人)</td><td>指挥中心 + 初始桁架段</td><td>人员使用耐力号为操作基地;任务后乘耐力号返回,勇气号留在轨道</td></tr>
<tr><td>3</td><td>2050-08-15</td><td>VLT-448</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-02 毅力号</a>(载人)</td><td>静止居住模块</td><td>人员使用勇气号为基地;任务后乘勇气号返回,毅力号留在轨道</td></tr>
<tr><td>4</td><td>2050-11-01</td><td></td><td>超重型运载火箭(无人)</td><td>人工重力居住环</td><td>直径 25 米,超出秃鹫货舱限制;由轨道拖船辅助对接</td></tr>
<tr><td>5</td><td>2051-01-15</td><td>VLT-479</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">决心号Determination</a>(载人)</td><td>温室模块 + 中心对接枢纽</td><td>人员使用毅力号为基地;任务后乘毅力号返回,决心号留在轨道</td></tr>
<tr><td>6</td><td>2051-04-01</td><td>VLT-501</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">坚毅号Fortitude</a>(载人)</td><td>主储藏模块</td><td>人员使用决心号为基地;任务后乘决心号返回,坚毅号留在轨道</td></tr>
<tr><td>7</td><td>2051-06-15</td><td>VLT-522</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">耐力号Endurance</a>(载人)</td><td>推进模块</td><td>含"毅力"推进系统与方舟反应堆。母舰自此具备自主电力和姿态控制能力</td></tr>
<tr><td>8</td><td>2051-09-01</td><td>VLT-544</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">忠诚号Loyalty</a>(载人)</td><td>剩余桁架段 + 太阳能阵列 + 外部设备</td><td>最后一次轨道器接力任务。此后母舰可独立飞行,建造工作直接在母舰上进行</td></tr>
<tr><td>5</td><td>2051-01-15</td><td>VLT-479</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-04 决心号</a>(载人)</td><td>温室模块 + 中心对接枢纽</td><td>人员使用毅力号为基地;任务后乘毅力号返回,决心号留在轨道</td></tr>
<tr><td>6</td><td>2051-04-01</td><td>VLT-501</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-06 坚毅号</a>(载人)</td><td>主储藏模块</td><td>人员使用决心号为基地;任务后乘决心号返回,坚毅号留在轨道</td></tr>
<tr><td>7</td><td>2051-06-15</td><td>VLT-522</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-01 耐力号</a>(载人)</td><td>推进模块</td><td>含"毅力"推进系统与方舟反应堆。母舰自此具备自主电力和姿态控制能力</td></tr>
<tr><td>8</td><td>2051-09-01</td><td>VLT-544</td><td><a href="/home/Space_Shuttles/Vulture_Shuttle">VS-07 忠诚号</a>(载人)</td><td>剩余桁架段 + 太阳能阵列 + 外部设备</td><td>最后一次轨道器接力任务。此后母舰可独立飞行,建造工作直接在母舰上进行</td></tr>
</tbody></table>
<p>第 7 次发射(推进模块)完成后,羲和号首次使用自身反应堆供电并启动姿态控制系统,标志着母舰具备了独立运行能力。第 8 次发射后,建造工作转入系统集成和舱内舾装阶段。2051 年 9 月至 2052 年 2 月期间,不再有新的模块发射,组装人员乘坐母舰自身携带的临时居住舱驻留,专注于跨模块电力母线连接、生命保障管路贯通和全舰系统联调。</p>
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@@ -54,10 +54,10 @@
<tr><td><b>Current status</b>: Xihe at Jupiter system, Europa Expedition 3 (ongoing)</td></tr>
</tbody></table>
<p>The <b>Xihe-class interplanetary exploration mothership</b> is a first-generation large crewed mothership designed for long-range operations inside the Solar System. Named after Xihe, the solar deity in Chinese mythology, the class supports scientific expeditions, off-world base construction, crew rotation, and deep-space technology validation around Mars, the Jovian moons, and other target bodies. As of March 2060, the lead ship <a href="/home/Exploration_Motherships/Xihe/XH-01">Xihe (XH-01)</a> is in the Jovian system on Europa Expedition 3, continuing deep-space exploration and base-support duties. As of March 2060, the Xihe class has three active ships (<a href="/home/Exploration_Motherships/Xihe/XH-01">Xihe</a>, <a href="/home/Exploration_Motherships/Xihe/XH-02">Taibai (XH-02)</a>, <a href="/home/Exploration_Motherships/Xihe/XH-03">Changxi (XH-03)</a>) and one under construction (XH-04). The lead ship Xihe is currently executing Europa Expedition 3 in the Jovian system.</p>
<p>The <b>Xihe-class interplanetary exploration mothership</b> is a first-generation large crewed mothership designed for long-range operations inside the Solar System. Named after Xihe, the solar deity in Chinese mythology, the class supports scientific expeditions, off-world base construction, crew rotation, and deep-space technology validation around Mars, the Jovian moons, and other target bodies. As of March 2060, the lead ship <a href="/home/Exploration_Motherships/Xihe/XH-01">Xihe (XH-01)</a> is in the Jovian system on Europa Expedition 3. Taibai (XH-02) has completed construction and is undergoing its trial run. Changxi (XH-03) remains under construction. The status of XH-04 is to be verified.</p>
<p>The class uses an axial modular configuration with a mass-driver main propulsion system, an Ark cold-fusion reactor, closed-loop life support, an artificial-gravity habitation ring, scientific facilities, a greenhouse module, and reinforced docking hardware. It is not capable of atmospheric re-entry or planetary landing. Surface access and short-range target-system transport are handled by carried ferry shuttles and surface vehicles.</p>
<p>Before the Stellaria class entered service, Xihe-class motherships served as the main platform for multiple interplanetary missions. Xihe was assembled in low Earth orbit from 2050 to 2052 and subsequently supported Mars-orbit validation, Mars base construction, Europa outpost construction, and Jovian-system scientific operations. The class provided the operational foundation for later interplanetary exploration motherships.</p>
<p>The Xihe class is a large crewed mothership class designed for Mars and Jovian system exploration. The lead ship, Xihe (XH-01), was completed and commissioned in 2052. Subsequent ships Taibai (XH-02) and Changxi (XH-03) continue the class design with distinct mission specializations.</p>
<p>The Xihe class is a large crewed mothership class designed for Mars and Jovian system exploration. The lead ship, Xihe (XH-01), was completed and commissioned in 2052. Taibai (XH-02) completed construction in July 2059 and, as of March 2060, is in its trial run phase. Changxi (XH-03) began construction in February 2056 and, as of March 2060, remains under construction.</p>
<nav class="toc" aria-label="Contents">
<div class="toc-title">Contents</div>
@@ -112,40 +112,33 @@
<h2 id="mission-operations-system">Mission operations system</h2>
<p>Xihe-class missions usually combine four elements: the mothership transfer phase, ferry-shuttle terminal transport, surface or orbital-base reception, and return-window management. The mothership handles interplanetary transfer, deep-space communications, life support, cargo custody, and mission command. Echo, Amalthea-type vehicles, or other ferry shuttles handle short-range transport to the target body.</p>
<p>In 2060, Taibai (XH-02) performed a support transfer from Earth to the Mars One campus, with a mission window from February 26 to March 29. Its cargo included structural trusses, greenhouse components, and support supplies. The mission summary listed a 31-day transfer and about 105 km/s of delta-v margin, reflecting the role of later Xihe-class ships as trunk platforms for Mars-base expansion.</p>
<p>During the same period, Changxi (XH-03) underwent a Jupiter-relay deployment refit at Star Port Station between January 8 and April 12, 2060. The mission placed later XH-series platforms in deep-space communications, Jovian relay deployment, payload integration, and engine overhaul work as well as surface-support logistics.</p>
<table>
<thead><tr><th>Vehicle or site</th><th>Window</th><th>Mission</th><th>Operational meaning</th></tr></thead>
<tbody>
<tr><td>Taibai (XH-02)</td><td>2060-02-26 to 2060-03-29</td><td>Mars One campus supply transfer</td><td>Transported structural trusses, greenhouse components, and support supplies.</td></tr>
<tr><td>Taibai (XH-02)</td><td>2060-03-29</td><td>Mars arrival and cargo handoff</td><td>Surface fleet or ferry vehicles received cargo while the mothership remained in orbital standby.</td></tr>
<tr><td>Changxi (XH-03)</td><td>2060-01-08 to 2060-04-12</td><td>Star Port Jupiter-relay deployment refit</td><td>Supported communications, payload deployment, and deep-space infrastructure work.</td></tr>
<tr><td>Mars One Campus Alpha</td><td>From 2059-10-20</td><td>Surface expansion and ISRU staging</td><td>Mothership windows directly affected surface-construction pace.</td></tr>
</tbody></table>
<p>Mission tempo is closely tied to off-world base construction schedules. Mothership departure and return windows determine the available time for crew rotations, supply delivery, and equipment installation. In Mars-system missions, the mothership typically remains in a high parking orbit while the surface fleet or ferry shuttles handle terminal cargo transfer. Star Port Station serves as the staging, supply loading, and post-return maintenance hub for mothership missions.</p>
<h2 id="construction-and-development">Construction and development</h2>
<p>The lead ship Xihe (XH-01) was assembled in low Earth orbit between 2050 and 2052. The first module arrived in LEO on 2050-03-15, delivered by Vulture shuttles to begin orbital assembly. The artificial-gravity ring exceeded shuttle cargo-bay limits and was launched separately by a super-heavy vehicle. Main assembly took 693 days and was completed on 2052-02-06.</p>
<p>The orbital commissioning phase (2052-06-01 to 2052-11-30) included low Earth orbit checkout, geostationary-orbit maneuvers, lunar-orbit round trips, and full-system pressure testing, verifying structural integrity, thermal stability, propulsion response, and long-duration life-support endurance. Immediately after commissioning, Xihe entered the Deep Space Test Mission (2053), an uncrewed flight to the Sun-Earth L2 point lasting 340 days, which validated autonomous navigation, remote telemetry, and large-payload delivery ahead of the first crewed Mars mission.</p>
<p>In terms of construction methods, Xihe (XH-01) was assembled in LEO using Vulture Shuttle heavy-lift missions (2050&ndash;2052). Later Xihe-class ships (Taibai, Changxi, XH-04) and Stellaria-class ships transitioned to using Qingtian cargo vessels for module delivery. Assembly shifted from LEO free-flying construction to dock-based assembly at Star Port Station. This transition significantly improved construction efficiency and reduced the burden on the Vulture Shuttle fleet.</p>
<p>The fitting phase (2052-02-07 to 2052-05-31, 114 days) covered internal system integration and commissioning. The orbital trial run (2052-06-01 to 2052-11-30, 182 days) included low Earth orbit checkout, geostationary-orbit maneuvers, lunar-orbit round trips, and full-system pressure testing, verifying structural integrity, thermal stability, propulsion response, and long-duration life-support endurance. After the trial run, Xihe entered its first maintenance period (2052-12-01 to 2053-01-05), then proceeded to the Deep Space Test Mission (2053-01-12 to 2053-12-18), an uncrewed flight to the Sun-Earth L2 point lasting 340 days, which validated autonomous navigation, remote telemetry, and large-payload delivery ahead of the first crewed Mars mission.</p>
<p>In terms of construction methods, Xihe (XH-01) was assembled in LEO using Vulture Shuttle heavy-lift missions (2050&ndash;2052). Later ships and Stellaria-class vessels transitioned to using Qingtian cargo vehicles for module delivery. Assembly shifted from LEO free-flying construction to dock-based assembly at Star Port Station. This transition improved construction efficiency and reduced the burden on the Vulture Shuttle fleet.</p>
<p>Xihe-class construction experience directly influenced the Stellaria class. Stellaria retained the axial spine, artificial-gravity ring, and central docking logic while increasing propulsion capability, central volume, long-duration life support, and cryosleep capacity. Later mothership construction increasingly moved toward Star Port Station and large orbital shipyards, with Qingtian cargo vehicles carrying more of the large-module transport work.</p>
<h2 id="operational-history">Operational history</h2>
<p>Xihe (XH-01) has executed a series of landmark missions since commissioning in 2052: the Deep Space Test Mission (2053), Mars Mission Demonstration (2054&ndash;2055), two Mars One Base construction missions (2055&ndash;2057), Mars Expedition 2 (2057&ndash;2058), Europa Expedition 1 (2058&ndash;2059), and the ongoing Europa Expedition 3 (from 2060), with a comprehensive greenhouse upgrade and maintenance cycle at Star Port Station in 2059&ndash;2060. Taibai (XH-02), commissioned in 2056, supported the Vesta mission and multiple Mars expedition rotations. Changxi (XH-03), commissioned in 2059, specializes in Jupiter relay deployment and deep-space communications infrastructure support.</p>
<p>Detailed operational records are available on individual ship pages.</p>
<p>Xihe (XH-01) has executed a series of landmark missions since commissioning in 2052: the Deep Space Test Mission (2053), Mars Mission Demonstration (2054&ndash;2055), Mars One Base construction missions (2055&ndash;2057), Mars Expedition 2 (2057&ndash;2058), Europa Expedition 1 (2058&ndash;2059), and the ongoing Europa Expedition 3 (from 2060), with a comprehensive greenhouse upgrade and maintenance cycle at Star Port Station in 2059&ndash;2060.</p>
<p>Taibai (XH-02) began construction in February 2058, completed assembly in July 2059, and immediately entered its trial run phase. As of March 2060, the trial run remains in progress and the ship has not yet been formally commissioned. Changxi (XH-03) began construction in February 2056, but its construction has greatly exceeded its planned schedule. As of March 2060, it remains under construction.</p>
<p>Detailed records are available on individual ship pages.</p>
<ul>
<li><a href="/home/Exploration_Motherships/Xihe/XH-01">Xihe (XH-01)</a> &mdash; complete mission record including Deep Space Test, Mars One construction, Mars expeditions, and Europa expeditions.</li>
<li><a href="/home/Exploration_Motherships/Xihe/XH-02">Taibai (XH-02)</a> &mdash; mission record including the Vesta mission and Mars expedition support.</li>
<li><a href="/home/Exploration_Motherships/Xihe/XH-03">Changxi (XH-03)</a> &mdash; mission record including Jupiter relay deployment and deep-space communications infrastructure support.</li>
<li><a href="/home/Exploration_Motherships/Xihe/XH-02">Taibai (XH-02)</a> &mdash; construction record and trial run progress.</li>
<li><a href="/home/Exploration_Motherships/Xihe/XH-03">Changxi (XH-03)</a> &mdash; construction record.</li>
</ul>
<table>
<thead><tr><th>Stage</th><th>Time</th><th>Main activity</th></tr></thead>
<tbody>
<tr><td>Low Earth orbit assembly</td><td>2050-2052</td><td>Segment assembly, major-module docking, and whole-ship integration.</td></tr>
<tr><td>Orbital checkout</td><td>2052</td><td>Earth-orbit, GEO, and lunar-orbit round-trip tests.</td></tr>
<tr><td>Mars-system missions</td><td>2053-2056</td><td>Mars-orbit validation, Mars One base construction, and crewed surface operations.</td></tr>
<tr><td>Jovian-system missions</td><td>2056-2059</td><td>Europa outpost support, Jovian-moon science, and long-duration residence validation.</td></tr>
<tr><td>Post-upgrade service</td><td>From 2060</td><td>Continued deep-space support after radiation, navigation, greenhouse, and docking upgrades.</td></tr>
<tr><td>Low Earth orbit assembly</td><td>2050-03 to 2052-02</td><td>Segment assembly, major-module docking, and whole-ship integration (693 days).</td></tr>
<tr><td>Fitting</td><td>2052-02 to 2052-05</td><td>Internal system integration and commissioning (114 days).</td></tr>
<tr><td>Orbital trial run</td><td>2052-06 to 2052-11</td><td>Earth-orbit, GEO, and lunar-orbit round-trip tests (182 days).</td></tr>
<tr><td>Deep space test</td><td>2053-01 to 2053-12</td><td>Uncrewed autonomous flight to Sun-Earth L2 (340 days).</td></tr>
<tr><td>Mars-system missions</td><td>2054&ndash;2058</td><td>Mars-orbit validation, Mars One base construction and crewed surface operations, Mars Expedition 2.</td></tr>
<tr><td>Jovian-system missions</td><td>From 2058</td><td>Europa Expedition 1, Europa outpost support, Jovian-moon science (ongoing).</td></tr>
</tbody></table>
<h2 id="maintenance-and-upgrades">Maintenance and upgrades</h2>
@@ -183,26 +176,26 @@
</tbody></table>
<h2 id="relationship-with-stellaria-class">Relationship with Stellaria class</h2>
<p>The Xihe program initially planned to build multiple hulls following XH-01. In September 2050, two additional hulls began construction as "basic motherships" based on the Xihe design. By early 2053, with 871 days of construction completed, these two hulls were paused.</p>
<p>The pause was driven by a strategic decision: the emerging Stellaria program offered a higher-performance platform with lightspeed engine capability. Rather than complete them as standard Xihe-class ships, the two incomplete hulls were transferred to the Stellaria program in May 2053. Over the following 352 days (May 2053 to April 2054), they were reconfigured &mdash; receiving lightspeed engines while retaining Xihe-class standard systems for other components. These became <a href="/home/Exploration_Motherships/Stellaria/ST-01">ST-01 (Wanxingyuan)</a> and <a href="/home/Exploration_Motherships/Stellaria/ST-02">ST-02 (Wanxingyuan NEXT)</a>.</p>
<p>Meanwhile, Xihe-class production continued independently. Taibai (XH-02) began construction in December 2054 (completed October 2056). Changxi (XH-03) began February 2056 (completed December 2059). XH-04 began September 2059 (projected completion August 2061).</p>
<p>The Xihe program initially planned to build multiple hulls following XH-01. In September 2050, two additional hulls began construction as "basic motherships" based on the Xihe design (concurrently with XH-01's own construction). By February 2053, with 871 days of construction completed, these two hulls were paused.</p>
<p>The pause was driven by a strategic decision: the emerging Stellaria program offered a higher-performance platform with lightspeed engine capability. Rather than complete them as standard Xihe-class ships, the two incomplete hulls were transferred to the Stellaria program in May 2053. Over the following 352 days (May 2053 to April 2054), they were reconfigured &mdash; receiving lightspeed engines while retaining Xihe-class standard systems for other components. These became <a href="/home/Exploration_Motherships/Stellaria/ST-01">ST-01 (Wanxingyuan)</a> and <a href="/home/Exploration_Motherships/Stellaria/ST-02">ST-02 (Wanxingyuan NEXT)</a>. It is important to note that these two basic mothership hulls are not the same as the later XH-02 Taibai and XH-03 Changxi &mdash; they were separate hulls started in 2050 alongside XH-01, while XH-02 and XH-03 are different ships built later.</p>
<p>Xihe-class production continued independently thereafter. Changxi (XH-03) began construction in February 2056, the earliest of the follow-on hulls to start, but its construction has greatly exceeded its planned schedule and, as of March 2060, remains incomplete. Taibai (XH-02) began construction in February 2058 &mdash; roughly two years after XH-03 &mdash; yet completed assembly first, in July 2059, and immediately entered its trial run. This unusual construction sequence (XH-03 started first but XH-02 finished first) may reflect resource allocation decisions made during the Stellaria program ramp-up.</p>
<p>The two classes now serve complementary roles: Xihe class focuses on Mars and Jupiter system missions with established technology; Stellaria class pushes outward to Saturn, Neptune, and beyond with higher speed and endurance.</p>
<h2 id="fleet-and-successors">Fleet and successors</h2>
<table>
<thead><tr><th>Ship</th><th>Construction</th><th>Status</th><th>Current Mission</th></tr></thead>
<thead><tr><th>Ship</th><th>Construction</th><th>Status (2060-03)</th><th>Current Mission</th></tr></thead>
<tbody>
<tr><td><a href="/home/Exploration_Motherships/Xihe/XH-01">Xihe (XH-01)</a></td><td>2050-03 &rarr; 2052-02</td><td>Active</td><td>Europa Expedition 3 (Jovian system, departed 2060-02-20)</td></tr>
<tr><td><a href="/home/Exploration_Motherships/Xihe/XH-02">Taibai (XH-02)</a></td><td>2054-12 &rarr; 2056-10</td><td>Active</td><td>Post-Vesta mission maintenance, Mars expedition support</td></tr>
<tr><td><a href="/home/Exploration_Motherships/Xihe/XH-03">Changxi (XH-03)</a></td><td>2056-02 &rarr; 2059-12</td><td>Active</td><td>Post-Jupiter relay deployment refit shakedown</td></tr>
<tr><td>XH-04</td><td>2059-09 &rarr; 2061-08 (est.)</td><td>Under construction</td><td>Assembly phase</td></tr>
<tr><td><a href="/home/Exploration_Motherships/Xihe/XH-01">Xihe (XH-01)</a></td><td>2050-03 &rarr; 2052-02</td><td>Active</td><td>Europa Expedition 3 (Jovian system)</td></tr>
<tr><td><a href="/home/Exploration_Motherships/Xihe/XH-02">Taibai (XH-02)</a></td><td>2058-02 &rarr; 2059-07</td><td>In trial run</td><td>Trial run (not yet commissioned)</td></tr>
<tr><td><a href="/home/Exploration_Motherships/Xihe/XH-03">Changxi (XH-03)</a></td><td>2056-02 &rarr; incomplete</td><td>Under construction / maintenance</td><td>Construction phase</td></tr>
<tr><td>XH-04</td><td>To be verified</td><td>To be verified</td><td>To be verified</td></tr>
</tbody></table>
<p>Complete construction records and mission details are available on individual ship pages: <a href="/home/Exploration_Motherships/Xihe/XH-01">Xihe (XH-01)</a>, <a href="/home/Exploration_Motherships/Xihe/XH-02">Taibai (XH-02)</a>, <a href="/home/Exploration_Motherships/Xihe/XH-03">Changxi (XH-03)</a>.</p>
<p>Complete construction records are available on individual ship pages: <a href="/home/Exploration_Motherships/Xihe/XH-01">Xihe (XH-01)</a>, <a href="/home/Exploration_Motherships/Xihe/XH-02">Taibai (XH-02)</a>, <a href="/home/Exploration_Motherships/Xihe/XH-03">Changxi (XH-03)</a>.</p>
<p>In the supporting cargo fleet, Jinniao-class cargo ships JW-01 through JW-03 provide regular heavy cargo resupply to Mars One Base and Europa Outpost, forming a logistics chain with Xihe-class motherships from LEO to the Mars and Jovian systems.</p>
<p>As the Stellaria class entered service, the Xihe class gradually shifted to routine inner-Solar-System support, technology validation, and high-reliability backup platform roles. Construction of XH-04 confirms that the Xihe lineage maintains production capacity in the second-generation-mothership era.</p>
<p>As the Stellaria class entered service, the Xihe class gradually shifted to routine inner-Solar-System support, technology validation, and high-reliability backup platform roles. The construction schedule of follow-on Xihe-class hulls depends on mission requirements and Stellaria-program resource allocation.</p>
<h2 id="see-also">See also</h2>
<ul>
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1. 清理掉现在项目根目录里面用不到的文件,如果有能用到的,梳理一下放到应该有的文件目录里面去
2. 执行完1,我们开始准备一个新的wiki文档。CERV Shuttle。
# KSP管理后台 — 重新设计 Todo
## 处理顺序
1. [x] Asset 面板 — 已讨论,结论归档
2. [x] 任务日志新增界面 — 已讨论
3. [x] 任务日志编辑界面 — 已讨论
4. [x] 地点板 — 已讨论,demo 完成
5. [x] 时间线 — 已讨论
6. [x] 任务资产目录 — 已讨论
7. [x] 数据中心 — 已讨论,保持现状
---
## 1. Asset 面板
### 展示信息
- Asset 名称、类别、日志数量、当前状态(是否退役)、当前所属任务
- **当前位置**:从日志的 `location` 字段根据当前模拟时间派生(LEO / GEO / Solar Orbit / Mars Orbit 等),**不可直接编辑**
- **对接载具列表**:哪些载具当前对接到了此 Asset 上(时间敏感,随 simulation_time 变化)
- **对接目标**:当前 Asset 对接到了哪个母 Asset 上
- **日志列表**:分页呈现,支持筛选
- **Upcoming events**:当前模拟时间之后的未来事件
### 全局功能(共享)
- **调节当前时间**:顶部栏全局控件,修改后写入 DB,所有页面按新时间重新计算
### Asset 基础编辑
- 修改 Asset 名称
- 修改 Asset 类别
- 修改 Asset 状态(是否退役)
### 新增对接载具
**输入信息:**
- 对接时间(默认使用当前模拟时间,用户可修改)
- 对接载具:
- 分支 A:从已有 Asset 库中选择(记为 selected_asset
- 分支 B:用户输入一个字符串(用于未入库的载具,如 "Echo Shuttle"
- 备注信息(用户输入,可为空)
**保存时自动操作日志(分支 A — selected_asset):**
对当前 Asset 和 selected_asset **双方**都执行:
1. 检查是否存在一条日志(state interval),其时间段涵盖了对接时间点:
- **存在** → 在该日志下新增一个 state node:
- Title: "XXX 对接到 YYY"
- Node Detail: 备注信息
- Node At: 对接时间
- **不存在** → 新增一条日志(state interval):
- Start At: 对接时间
- End At: 留空(表示该对接状态持续进行中)
- 在该日志下新增一个 state node(内容同上)
**保存时自动操作日志(分支 B — 用户输入字符串):**
仅对当前 Asset 执行上述操作。用户输入的字符串仅用于当前 Asset 的日志内容。
### 移除对接载具
**输入信息:**
- 选择某个已对接的载具
- 分离时间(默认使用当前模拟时间,用户可修改)
- 备注信息(用户输入,可为空)
**保存时自动操作日志(之前是 selected_asset 的情况):**
对当前 Asset 和 selected_asset **双方**都执行:
1. 检查是否存在一条日志:其 Start At 等于该 selected_asset 对接到当前 Asset 的时间,且 End At 为空:
- **存在** → 新增一个 state node 记录分离事件,分离时间设为该日志的 End At。结束
2. 如不存在,检查是否存在一条日志,其时间段涵盖了分离时间点:
- **存在** → 新增 state nodeTitle "XXX 从 YYY 分离"Node Detail 备注信息,Node At 分离时间
3. 如以上都不存在 → 新增一个 event point,记录分离信息
**保存时自动操作日志(之前是用户输入字符串的情况):**
仅对当前 Asset 执行上述操作。
### 数据库新增
- `docking_events` 表:parent_asset_id, child_asset_id (nullable), child_label (nullable), docked_at, undocked_at, dock_note, undock_note
### 设计约束
- Location **不可直接编辑**,只能通过修改日志来修正
- 对接关系是时间敏感的(随 simulation_time 变化)
---
## 2. 任务日志新增界面
### 字段(与现有保持一致)
Entry Type / Title / Start At / End At / Location / State Label / Mission Label / Summary / Note / State Nodes
### 改进点
1. **State node 按时间自动排序**:后端渲染 + JS 插入均按 `at_time` 升序
2. **保存成功**:跳转到目标页后顶部展示 toast 样式 flash 消息
3. **保存失败**:弹出 validation dialog,高亮异常字段,**不清空已填写的表单内容**
---
## 3. 任务日志编辑界面
同新增界面,共用 `asset_entry_form.html`,多一个删除按钮。无额外需求。
---
## 4. 地点板
### 布局
- 左侧/居中:大型可交互 Canvas 星图
- 右侧 320px 信息面板:Scope / Assets in Scope / Ongoing Missions / Upcoming Events
- 顶部栏:全局模拟时间控件(共享组件)
### 星图交互
- **初始 view**:太阳系全貌,太阳居中,八大行星 + Ceres + Vesta + 冥王星按内→外顺序排列
- **点击层级**(面包屑式导航):
- Solar System → 行星系(如 Earth System 含月球轨道)→ 单天体
- 点击有卫星的行星 → 行星系(planet_system),显示所有卫星轨道
- 再次点击同一行星 → 单天体视图(single_body
- 点击太阳或卫星 → 直接进入单天体视图
- **返回**:← Back 按钮回退到上一层
- **拖拽平移**:阈值 6px 以上才进入拖拽模式,避免误触
- **滚轮缩放**0.3x ~ 4x
### 天体渲染
- 天体纹理:使用真实 NASA/航天器照片纹理(从 Solar System Scope + NASA 下载)
- 3D 球体着色:光照高光 + 暗面阴影 + 大气边缘辉光
- 土星附加光环椭圆
- 星空背景:800 颗随机恒星,含亮星点缀
- 两种渲染模式切换:Flat(简化渐变球体)/ Realistic(真实纹理 + 全效果)
### 轨道计算
- 基于 JPL Keplerian 轨道根数(J2000 历元),解 Kepler 方程计算真实日心位置
- 显示缩放公式:`displayDist = dist^0.4 × 100`(非比例尺,保证内行星可见)
- 画布坐标系 Y 轴取反(Canvas Y↓ → 实际 Y↑),实现逆时针旋转
- 模拟时间变动时,天体位置平滑动画过渡(requestAnimationFrame + 缓动)
### 卫星数据
- 来源:项目 `user_input/RSSKopernicus/` 文件目录
- 已收录:木星 4 颗(Io, Europa, Ganymede, Callisto)、土星 7 颗(Mimas, Enceladus, Tethys, Dione, Rhea, Titan, Iapetus)、天王星 5 颗(Miranda, Ariel, Umbriel, Titania, Oberon)、海王星 1 颗(Triton)、火星 2 颗(Phobos, Deimos)、冥王星 1 颗(Charon)、地球 1 颗(Moon
- 卫星数据扁平化存入 `BD` 顶层字典,支持 `BD['io']` 直接查找
### 技术实现(后端集成参考)
- Demo 文件:`demo/location_board_demo.html`
- 纹理文件:`demo/textures/`sun, mercury, venus, earth, mars, jupiter, saturn, uranus, neptune, pluto, moon, io
- 设计系统:OLED 深色主题(`#0B0B10` 背景),Fira Code + 系统 sans-serif 字体栈
---
## 5. 时间线
### 交互
- 只读视图(不直接在时间线上拖拽编辑)
- 滚轮缩放 + 拖拽导航,无整页刷新
### 筛选系统(重新设计)
**布局:** 顶部横向筛选条
1. **搜索栏** — 实时过滤资产名称,输入时下方标签同步收缩
2. **快速预设**`Active only` / `This Month` / `Next 90d` / `All` 一键切换
3. **分类下拉**
- Type: All / Exploration Mothership / Space Shuttle / Station / Base / Cargo Ship
- Location: All / Earth System / Mars System / Jupiter System / Saturn System / Transfer
- State: All / Transfer / Docked / Maintenance / Exploration / Surface Ops
4. **日期范围** — start/end 输入 + 快捷预设(Last 30d / This Year / Next Year / Custom
5. **资产标签条** — 横向 pill 标签(checkbox),选中计数 + Select All / Clear
### 视觉风格
- 待高保真设计阶段统一处理
---
## 6. 任务资产目录
### 布局
- 保留表格布局
- 顶部:操作按钮 + 筛选栏
- 表头可点击排序(Name / Type / Location / Entries / Updated
### 筛选栏
```
[+ New Asset] [Import Log Book]
🔍 Search... Location: [All ▾] Type: [All ▾]
Sort: [Name ▾] ☐ Hide retired
```
- **搜索**:文本匹配 name / type / program / home_region
- **Location 下拉**:分层级,选父级匹配所有子集(见 Location 体系)
- **Type 下拉**All / Exploration Mothership / Space Shuttle / Station / Base / Cargo Ship
- **Sort**Name / Type / Location / Entries / Updated,表头点击切换
- **退役开关**:☐ Hide retired,默认隐藏
### 技术
- DB 级筛选(不在应用层加载全量)
- 分页保持现有分页逻辑
---
## 7. Location 分层体系
对标地点板 scope,Location 从自由文本改为结构化选项。日志 `location` 字段后续应改为从选项中选择。
### 完整层级(基于 RSSKopernicus 数据,含所有固体天体 surface)
```
Solar System
├── Mercury System
│ ├── Mercury Orbit Mercury Surface
├── Venus System
│ ├── Venus Orbit Venus Surface
├── Earth System
│ ├── LEO (Low Earth Orbit)
│ ├── GEO/MEO (Geostationary/Medium Earth Orbit)
│ ├── Lunar Orbit Lunar Surface
│ └── Earth Surface
├── Mars System
│ ├── Mars Orbit Mars Surface
│ ├── Phobos Orbit Phobos Surface
│ └── Deimos Orbit Deimos Surface
├── Ceres Orbit Ceres Surface
├── Vesta Orbit Vesta Surface
├── Jupiter System
│ ├── Jupiter Orbit (gas giant, no surface)
│ ├── Io Orbit Io Surface
│ ├── Europa Orbit Europa Surface
│ ├── Ganymede Orbit Ganymede Surface
│ └── Callisto Orbit Callisto Surface
├── Saturn System
│ ├── Saturn Orbit (gas giant, no surface)
│ ├── Mimas Orbit Mimas Surface
│ ├── Enceladus Orbit Enceladus Surface
│ ├── Tethys Orbit Tethys Surface
│ ├── Dione Orbit Dione Surface
│ ├── Rhea Orbit Rhea Surface
│ ├── Titan Orbit Titan Surface
│ └── Iapetus Orbit Iapetus Surface
├── Uranus System
│ ├── Uranus Orbit (ice giant, no surface)
│ ├── Miranda Orbit Miranda Surface
│ ├── Ariel Orbit Ariel Surface
│ ├── Umbriel Orbit Umbriel Surface
│ ├── Titania Orbit Titania Surface
│ └── Oberon Orbit Oberon Surface
├── Neptune System
│ ├── Neptune Orbit (ice giant, no surface)
│ └── Triton Orbit Triton Surface
├── Pluto System
│ ├── Pluto Orbit Pluto Surface
│ └── Charon Orbit Charon Surface
├── Solar Orbit
└── Transfer (interplanetary transit)
```
### 筛选规则
- 选父级 → 匹配所有子集(如 "Earth System" 含 LEO, GEO, Lunar Orbit, Lunar Surface, Earth Surface
- 选子级 → 精确匹配
---
## 8. 数据中心
保持现有结构和功能不变。包含四个参考数据表:
| 页面 | 模型 | 排序 | 筛选 |
|------|------|------|------|
| /engines | EngineFamily + Variants | 表头点击(6列升降序) | q + fuel + cycle + mod |
| /communications | CommunicationPart | 下拉(名称/距离/质量) | q + source + type |
| /tanks | TankSpec | 下拉(名称/容积/质量比) | q + fuel + source |
| /vehicles | VehicleCost | 下拉(名称/成本) | q + source |
有详情页的仅 Engines。其他三个无详情页。复合修改、删除功能。
待高保真阶段统一设计时考虑布局统一(表头点击排序推至全部四页)。
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