docs: create individual Xihe-class mothership pages, restructure overview

Overview page (xihe_mothership):
- Polish: use Chinese ship names throughout with wiki links
- Add "与万星源级的关系" section explaining hull transfer to Stellaria
- Add construction evolution: Vulture LEO assembly → Qingtian + Star Port
- Condense operational history, defer to individual ship pages
- Fix problematic "XH-01既是舰级也是技术谱系" paragraph

New individual ship pages:
- XH-01 羲和号: 693-day LEO construction, 8 mission subsections (2053-2060)
- XH-02 太白号: Qingtian+Star Port construction, Vesta + Mars missions
- XH-03 常曦号: Jupiter relay role, currently in shakedown (2060)

Wiki paths: /home/Exploration_Motherships/Xihe/XH-01, XH-02, XH-03

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
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co-authored by Claude Opus 4.7
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<article class="mw-parser-output wiki-article">
<h1 id="xihe-xH01">Xihe (XH-01)</h1>
<table class="infobox">
<caption>Xihe<span>XH-01</span></caption>
<tbody>
<tr><td><div class="image-placeholder">XH-01 Xihe side view image placeholder (Xihe-class lead ship, assembled in LEO)</div><div class="thumbcaption">Xihe is the lead ship of the Xihe-class interplanetary exploration mothership, assembled segment-by-segment in low Earth orbit by Vulture Shuttles between 2050 and 2052.</div></td></tr>
<tr><td><b>Ship name</b>: Xihe (XH-01)</td></tr>
<tr><td><b>Class</b>: Xihe-class interplanetary exploration mothership</td></tr>
<tr><td><b>Construction start</b>: 2050-03-15</td></tr>
<tr><td><b>Assembly complete</b>: 2052-02-06</td></tr>
<tr><td><b>Outfitting complete</b>: 2052-05-31</td></tr>
<tr><td><b>Commissioning</b>: 2052-06-01 to 2052-11-30</td></tr>
<tr><td><b>Entered service</b>: December 2052</td></tr>
<tr><td><b>Current status</b>: Active (Europa Expedition 3, Jovian system)</td></tr>
<tr><td><b>Construction method</b>: Vulture Shuttle LEO assembly</td></tr>
<tr><td><b>Primary missions</b>: Mars base construction, Jovian system exploration</td></tr>
<tr><td><b>Home port</b>: Star Port Station</td></tr>
</tbody></table>
<p><b>Xihe</b> (designation <b>XH-01</b>) is the lead ship of the Xihe-class interplanetary exploration mothership and the first large crewed interplanetary mothership to enter service in human history. Named after Xihe, the solar deity in Chinese mythology, the vessel was assembled segment-by-segment in low Earth orbit by Vulture Shuttles between 2050 and 2052, formally entering service in December 2052. As of March 2060, Xihe is in the Jovian system executing Europa Expedition 3, having completed two Mars base construction missions, one Mars expedition, two Europa expeditions, and one deep-space test mission over eight years of service, with a total operational range spanning Earth orbit, the Mars system, and the Jovian system.</p>
<p>The construction and operation of Xihe pioneered an entirely new paradigm for deep-space motherships. It demonstrated that assembling a large crewed deep-space platform in low Earth orbit and using it to execute interplanetary missions was both technically and operationally viable. Its operational experience directly led to the construction of subsequent Xihe-class sister ships (XH-02 Taibai, XH-03 Changxi) and provided critical data for the design of the second-generation Stellaria-class mothership. As the class leader, Xihe achieved a string of historic firsts — the first crewed Mars construction mission, the first interplanetary crew handover, and the first outer Solar System expedition — each a milestone in the history of crewed deep-space exploration.</p>
<nav class="toc" aria-label="Contents">
<div class="toc-title">Contents</div>
<ol>
<li><a href="#design-overview">Design overview</a></li>
<li><a href="#construction">Construction</a></li>
<li><a href="#testing-and-commissioning">Testing and commissioning</a></li>
<li><a href="#service-and-operational-history">Service and operational history</a>
<ol>
<li><a href="#deep-space-test-mission_2053">Deep Space Test Mission (2053)</a></li>
<li><a href="#mars-mission-demonstration_20542055">Mars Mission Demonstration (2054-2055)</a></li>
<li><a href="#mars-one-base-construction-1_20552056">Mars One Base Construction Mission 1 (2055-2056)</a></li>
<li><a href="#mars-one-base-construction-3_20562057">Mars One Base Construction Mission 3 (2056-2057)</a></li>
<li><a href="#mars-expedition-2_20572058">Mars Expedition 2 (2057-2058)</a></li>
<li><a href="#europa-expedition-1_20582059">Europa Expedition 1 (2058-2059)</a></li>
<li><a href="#greenhouse-upgrade-and-maintenance_20592060">Greenhouse Upgrade and Maintenance (2059-2060)</a></li>
<li><a href="#europa-expedition-3_2060-ongoing">Europa Expedition 3 (2060-02 - ongoing)</a></li>
</ol>
</li>
<li><a href="#specifications">Specifications</a></li>
<li><a href="#see-also">See also</a></li>
</ol>
</nav>
<h2 id="design-overview">Design overview</h2>
<p>As the lead ship of the Xihe class, Xihe adopts the class's signature long axial-spine multi-module cylindrical configuration. The vessel measures 83.4 m in overall length with a maximum diameter of 25 m at the artificial-gravity habitation ring, and is composed of nine major modules arranged sequentially along the central axis: forward docking hub, command center, artificial-gravity habitation ring, static habitation module, central docking hub, greenhouse module, main storage module, truss section, and propulsion module. Standardized mechanical, electrical, fluid, and data interfaces between modules enable in-orbit maintenance and localized replacement.</p>
<p>Propulsion is provided by the Perseverance mass-driver propulsion system, powered by an Ark cold-fusion reactor with approximately 8 TW output class, delivering a full-load delta-v of about 1700 km/s (with a 300 t payload). Standard mode produces 2400 kN of thrust at 500,000 s specific impulse; high-thrust mode reaches 3800 kN at 250,000 s specific impulse. Xihe is not capable of atmospheric re-entry or planetary landing — surface access is handled by two carried Echo shuttles (or compatible ferry craft). The ship accommodates a long-duration crew of 15 (up to 30 short-duration) with an artificial-gravity habitation ring producing approximately 0.41 g at roughly 4 RPM and a greenhouse module providing food supplementation and atmospheric regeneration via closed hydroponics. For a complete description of design details, see the main <a href="/home/Exploration_Motherships/Xihe">Xihe-class interplanetary exploration mothership</a> article.</p>
<h2 id="construction">Construction</h2>
<figure class="thumb tright"><div class="image-placeholder">Xihe LEO assembly process image placeholder</div><figcaption class="thumbcaption">Xihe underwent a 693-day assembly campaign in low Earth orbit, with the Vulture Shuttle Block 1 fleet handling all heavy module transport.</figcaption></figure>
<p>The construction of Xihe marked the first time in human spaceflight history that a hundred-tonne-class crewed deep-space platform was assembled in low Earth orbit. Construction officially began on 2050-03-15, when a Vulture Shuttle delivered the first module — the forward docking hub — to LEO and released it at the designated assembly position. This was among the largest segment-transport missions executed by Vulture Shuttles at the time and signaled the dawn of the orbital mothership construction era.</p>
<p>Over the following 693 days, Xihe's assembly proceeded at a near-continuous tempo. The Vulture Shuttle Block 1 fleet handled all heavy-module transport, with 2050-2051 representing the fleet's peak operational year. Nine major modules were delivered and mated in the following sequence: forward docking hub (2050-03-15), command center (May 2050), static habitation module (July 2050), central docking hub (September 2050), main storage module (December 2050), greenhouse module (March 2051), truss section (July 2051), propulsion module (November 2051), and artificial-gravity habitation ring (December 2051). The habitation ring, with its 25 m diameter exceeding Vulture Shuttle cargo-bay capacity, was launched separately by a super-heavy launch vehicle and positioned by orbital tugs.</p>
<p>Primary assembly was completed on 2052-02-06, followed by the outfitting phase (2052-02-07 to 2052-05-31, 114 days). Outfitting encompassed ship-wide power bus redundant connections, cross-module life-support plumbing integration, rotating ring dynamic balance fine-tuning, docking-interface hydraulic pressure testing, greenhouse hydroponic system pre-installation, and reactor low-power startup commissioning. A substantial portion of verification work that could not be performed on Earth was transferred to orbit, including pressurized compartment isolation tests, towing-interface limit-load trials, and long-duration attitude-control hold verification. From first module arrival to completion of outfitting, total construction spanned nearly two years.</p>
<table>
<thead><tr><th>Phase</th><th>Period</th><th>Duration</th><th>Activity</th></tr></thead>
<tbody>
<tr><td>Orbital assembly</td><td>2050-03-15 to 2052-02-06</td><td>693 days</td><td>Sequential delivery, docking, and integration of 9 major modules</td></tr>
<tr><td>Outfitting</td><td>2052-02-07 to 2052-05-31</td><td>114 days</td><td>Ship-wide system connections, plumbing integration, equipment installation and commissioning</td></tr>
<tr><td>Total</td><td>2050-03-15 to 2052-05-31</td><td>808 days</td><td>From first module arrival to outfitting completion</td></tr>
</tbody></table>
<h2 id="testing-and-commissioning">Testing and commissioning</h2>
<p>Xihe's commissioning phase ran from 2052-06-01 to 2052-11-30, a total of 182 days, conducted in three progressively demanding stages.</p>
<p><b>Phase 1 (June-July 2052): Earth orbit systems check.</b> A comprehensive item-by-item verification of all ship systems in LEO, including the Ark reactor full-power run, Perseverance propulsion static fire, artificial-gravity habitation ring continuous 72-hour rotation test, closed-loop life-support system full-crew simulated operation, communications antenna omnidirectional scan calibration, and thermal-control radiator deployment and retraction testing. All critical systems met acceptance criteria.</p>
<p><b>Phase 2 (August-September 2052): GEO transfer and station-keeping.</b> Xihe fired its main propulsion system for the first time, transferring from LEO to geostationary orbit (GEO). Four weeks of station-keeping tests at GEO validated propulsion response precision under continuous fine-adjustment mode, deep-space communications link stability at GEO distance, and the reliability of the onboard computer in long-distance autonomous navigation.</p>
<p><b>Phase 3 (October-November 2052): Lunar orbit round-trip.</b> Xihe departed GEO, executed an Earth-Moon transfer, and entered lunar orbit. After three weeks of orbit-keeping and sensor calibration in lunar orbit, the vessel returned to Earth. This was the first time a Xihe-class mothership performed an orbital maneuver beyond the Earth-Moon system boundary and the first validation of navigation and attitude-control adaptability in the lunar gravitational environment.</p>
<p>Following commissioning, Xihe returned to LEO, where the engineering team applied targeted optimizations to propulsion redundancy loops, communications antenna pointing mechanisms, and life-support recirculation circuits based on commissioning data. The successful completion of commissioning certified all of Xihe's systems to deep-space-grade standards and its crew as qualified for deep-space operations. Xihe then entered a pre-maiden-mission maintenance window (2052-12-01 to 2053-01-05) for final preparations ahead of the Deep Space Test Mission.</p>
<h2 id="service-and-operational-history">Service and operational history</h2>
<p>Since formally entering service in December 2052, Xihe has executed eight major missions, evolving from a near-Earth test platform into a front-line outer Solar System expedition vessel. The following details each mission phase in chronological order.</p>
<h3 id="deep-space-test-mission_2053">Deep Space Test Mission (2053-01-12 to 2053-12-18)</h3>
<p>On 2053-01-12, Xihe departed LEO in an uncrewed configuration bound for the Sun-Earth L2 Lagrange point, executing a 340-day deep-space test mission. This was the first Xihe-class mothership operation beyond the Earth-Moon system and the longest uncrewed autonomous deep-space flight in the Chinese space program at that time.</p>
<p>During the mission, Xihe validated several systems critical to subsequent crewed operations: long-duration autonomous navigation and station-keeping reliability without real-time ground intervention, deep-space communications stability at the Sun-Earth L2 distance (approximately 1.5 million km), radiation shielding effectiveness in the actual deep-space environment, and extended uncrewed operation of the closed-loop life-support system. The flight computer independently executed all orbital maneuvers and system scheduling across the full 340 days without a single anomaly requiring ground intervention.</p>
<p>On 2053-12-18, Xihe completed the mission and returned to LEO. Based on telemetry analysis, the engineering team applied targeted upgrades to propulsion redundancy, communications antenna pointing mechanisms, and life-support recirculation loops. The success of the Deep Space Test Mission formally transitioned Xihe from an orbital test platform to a mission-capable deep-space asset, clearing the final critical hurdle for crewed Mars missions.</p>
<h3 id="mars-mission-demonstration_20542055">Mars Mission Demonstration (2054-07-10 to 2055-02-28)</h3>
<p>On 2054-07-10, Xihe departed LEO uncrewed for its first Mars demonstration mission, injecting at 102 km/s. After 42 days of interplanetary cruise, it arrived at Mars orbit on 2054-08-21. The mission's core objective was to validate the mothership's deep-space delivery capability and Mars orbital operations in the actual Martian orbital environment.</p>
<p>Upon arrival, Xihe successfully delivered the first Mars One Base equipment package, containing habitation module components, solar array support structures, and initial life-support hardware. The mission also validated Xihe-class Mars orbit insertion precision and long-duration orbital station-keeping for the first time. The surface operations phase ran from 2054-08-21 to 2055-01-10 — 142 days — with the mothership remaining in high Mars orbit, monitoring equipment deployment and self-check status via telemetry relay.</p>
<p>On 2055-01-10, Xihe departed Mars orbit with a 97 km/s injection, reaching Earth on 2055-02-28. This mission definitively proved that the Xihe class could operate reliably at Mars distance and deliver heavy payloads to the Martian surface, clearing the final critical hurdle for crewed Mars missions.</p>
<h3 id="mars-one-base-construction-1_20552056">Mars One Base Construction Mission 1 (2055-06-15 to 2056-03-18)</h3>
<figure class="thumb tright"><div class="image-placeholder">Xihe Mars mission artist's impression placeholder</div><figcaption class="thumbcaption">Xihe was the first mothership-class platform to carry crew to Mars, remaining on standby in high Mars orbit while Echo shuttles handled crew and cargo surface transfer.</figcaption></figure>
<p>On 2055-06-15, Xihe departed LEO carrying the first Mars construction crew, arriving at Mars on 2055-07-30. This was the first crewed Mars mission of the Xihe class and the first time astronauts traveled to another planet aboard a mothership-class platform. The mission's historic significance lay in extending crewed deep-space flight from lunar distances to interplanetary distances for the first time.</p>
<p>Surface operations extended from 2055-07-30 to 2056-02-07 — 192 days. During this period, the crew established the core infrastructure of Mars One Base: mating and pressurizing the primary habitation module, activating initial life-support systems, erecting communications antennas, and conducting the first scientific surveys of the Martian surface. Xihe itself remained on standby in high Mars orbit, with two Echo-class shuttles providing crew and cargo surface transfer — establishing the "mothership holds safe orbit, ferry vehicles execute terminal transport" model as the standard protocol for all subsequent mothership missions.</p>
<p>For the return leg, Xihe employed the FAST RETURN trajectory for the first time, injecting from Mars orbit into the Earth-Mars transfer with a 207 km/s burn, substantially shortening the return transit. Departing 2056-02-07 and arriving at Earth on 2056-03-18, the return trip took only 39 days. After return, Xihe entered an 87-day maintenance cycle (2056-03-25 to 2056-06-20) for its first comprehensive post-mission inspection of propulsion, docking interfaces, and life-support equipment.</p>
<h3 id="mars-one-base-construction-3_20562057">Mars One Base Construction Mission 3 (2056-07-30 to 2057-03-25)</h3>
<p>On 2056-07-30, Xihe departed again for Mars at 95 km/s injection, arriving on 2056-09-15. The defining moment of this mission came on 2056-09-17, when Xihe's crew met the Stellaria-class ST-01 crew on the Martian surface, completing humanity's first interplanetary crew handover.</p>
<p>This historic moment marked the dawn of coordinated multi-mothership operations. With XH-01 and ST-01 simultaneously present in the Mars system, the two vessels completed the first inter-mothership cargo transfer and joint communications relay test. This was humanity's first coordinated two-mothership operation, proving the feasibility of operating two large crewed spacecraft simultaneously around another planet.</p>
<p>The surface stay ran from 2056-09-15 to 2057-02-12. During this period, Xihe's crew took over Mars One Base operations while simultaneously extending base infrastructure and conducting a second round of scientific surveys. Return transit began on 2057-02-12, arriving at Earth on 2057-03-25. The dual-mothership coordination experience gained during this mission directly informed planning for later multi-platform Jovian-system operations.</p>
<h3 id="mars-expedition-2_20572058">Mars Expedition 2 (2057-05-05 to 2058-05-20)</h3>
<p>On 2057-05-05, Xihe departed for the now-established Mars One Base, arriving on 2057-06-22. Unlike previous construction-focused missions, this expedition emphasized scientific investigation and base operations while pioneering the inclusion of commercial space tourism.</p>
<p>The surface stay lasted 300 days — the longest continuous human presence on the Martian surface recorded to that date. The crew conducted extensive scientific work including Martian geological sampling, atmospheric studies, subsurface ice detection, and long-duration physiological data collection. The expedition also completed a base expansion, adding a dedicated laboratory module and upgraded water-recovery facilities. The 300-day continuous surface habitation dataset provided irreplaceable life-support system validation for subsequent longer-duration Mars and Jovian missions.</p>
<p>The mission's most groundbreaking achievement was carrying the first paying passengers to the Martian surface. These passengers participated in science-support work and surface exploration activities during their stay. This accomplishment not only demonstrated the technical and operational viability of deep-space tourism but also showcased the commercial potential of deep-space transportation to the world. The return leg began on 2058-04-18 with a 115 km/s injection departing Mars, arriving at Earth on 2058-05-20.</p>
<h3 id="europa-expedition-1_20582059">Europa Expedition 1 (2058-07-10 to 2059-11-15)</h3>
<p>On 2058-07-10, Xihe departed LEO with a 160 km/s injection bound for the Jovian system — the first Xihe-class mission beyond Mars orbit and into the outer Solar System. After 77 days of interplanetary cruise, Xihe arrived at Jupiter on 2058-09-25, formally opening the era of crewed outer Solar System exploration.</p>
<p>Xihe spent 288 days in the Jovian system, conducting scientific investigations across multiple target bodies:</p>
<ul>
<li><b>Europa surface operations</b> (2058-09-25 to 2058-12-15): Focused on subsurface ocean sounding, surface composition analysis, and radiation environment measurement. Deployed probes conducted detailed mapping of Europa's ice fractures and suspected plume regions.</li>
<li><b>Io volcanic plume sampling</b> (2058-12-20 to 2059-01-20): Deployed probes through Io's volcanic eruption plumes, collecting precious ejecta samples. This was humanity's first in-situ volcanic sampling in Io orbit.</li>
<li><b>Ganymede exploration</b> (2059-07-05): Completed magnetic-field mapping and surface geological surveys of Ganymede, validating its geological and resource conditions as a potential future outer Solar System resupply waypoint.</li>
</ul>
<p>On 2059-07-10, Xihe departed the Jovian system for the 128-day return voyage, docking at Star Port Station on 2059-11-15. The irrefutable success of Europa Expedition 1 demonstrated that the Xihe class was capable of executing long-duration, complex scientific missions in the outer Solar System, opening the door to subsequent Jovian expeditions.</p>
<h3 id="greenhouse-upgrade-and-maintenance_20592060">Greenhouse Upgrade and Maintenance (2059-11-16 to 2060-02-19)</h3>
<p>On 2059-11-16, Xihe began a 95-day deep maintenance and upgrade cycle at Star Port Station. After missions spanning from Mars to Jupiter, the mothership required a comprehensive systems overhaul to meet the demands of more intensive, longer-distance deep-space operations.</p>
<p>The upgrade's core projects included:</p>
<ul>
<li><b>Greenhouse module complete renovation</b>: Hydroponic system upgraded from single-crop cultivation to multi-zone rotational planting, nutrient-loop efficiency improved by approximately 40%, and automated environmental control and disease monitoring systems added, all aimed at supporting longer-duration missions with reduced reliance on resupply.</li>
<li><b>Radiation protection reinforcement</b>: Additional composite shielding installed around the command center, habitation modules, and medical bay to handle the higher cumulative radiation doses of outer Solar System missions.</li>
<li><b>Water-recycling system complete overhaul</b>: All membrane filters replaced and purification units upgraded, raising the closed-loop recovery rate above 97%.</li>
<li><b>Navigation and sensor upgrades</b>: Next-generation deep-space star trackers and inertial measurement units installed; external sensor array and communications antennas underwent full calibration and partial replacement.</li>
<li><b>Docking system maintenance</b>: All docking-seal assemblies on the forward docking hub replaced; rotating habitation ring bearings replaced and dynamic balance re-calibrated.</li>
</ul>
<p>This maintenance cycle restored Xihe's systems to near-new condition, thoroughly preparing the ship for the upcoming Europa Expedition 3.</p>
<h3 id="europa-expedition-3_2060-ongoing">Europa Expedition 3 (2060-02-20 - ongoing)</h3>
<p>On 2060-02-20, the upgraded Xihe departed once more for the Jovian system with a 163 km/s injection burn. This is the Xihe class's third Jovian expedition and the most ambitious outer Solar System crewed mission to date.</p>
<p>Xihe is scheduled to arrive at the Jovian system on 2060-05-01. The Europa Expedition 3 mission plan encompasses consecutive exploration of multiple Jovian targets:</p>
<ul>
<li>First, an Io surface landing operation — the first crewed landing on Io's surface in human history.</li>
<li>Transfer to Ganymede for surface reconnaissance.</li>
<li>Arrival at Callisto around 2060-05-25 for scientific observations.</li>
<li>Crew rotation at Europa Outpost to sustain continuous outpost operations.</li>
</ul>
<p>This multi-target continuous exploration plan takes full advantage of Jovian-system orbital alignment windows, demonstrating the Xihe class's mature scheduling capability for complex multi-body missions. As of March 2060, Xihe is in transit on its Jupiter transfer trajectory, with all systems operating nominally and crew in good condition. Data from this mission will provide critical input for the expansion of Europa Outpost and the planning of second-generation motherships' outer Solar System operations.</p>
<h2 id="specifications">Specifications</h2>
<table>
<thead><tr><th>Parameter</th><th>Value</th></tr></thead>
<tbody>
<tr><td>Ship name</td><td>Xihe (XH-01)</td></tr>
<tr><td>Class</td><td>Xihe-class interplanetary exploration mothership</td></tr>
<tr><td>Type</td><td>Crewed interplanetary exploration mothership</td></tr>
<tr><td>Configuration</td><td>Axial-spine multi-module cylindrical layout</td></tr>
<tr><td>Length</td><td>83.4 m</td></tr>
<tr><td>Maximum diameter</td><td>25 m at the artificial-gravity habitation ring</td></tr>
<tr><td>Propulsion</td><td>Perseverance mass-driver propulsion system</td></tr>
<tr><td>Main reactor</td><td>Ark cold-fusion reactor, about 8 TW output class</td></tr>
<tr><td>Thrust</td><td>2400 kN standard mode; 3800 kN high-thrust mode</td></tr>
<tr><td>Specific impulse</td><td>500,000 s standard mode; 250,000 s high-thrust mode</td></tr>
<tr><td>Full-load delta-v</td><td>About 1700 km/s with 300 t payload</td></tr>
<tr><td>Maximum payload</td><td>300 t</td></tr>
<tr><td>Long-duration crew</td><td>15</td></tr>
<tr><td>Short-duration crew</td><td>30</td></tr>
<tr><td>Artificial gravity</td><td>About 0.41 g from the rotating habitation ring at roughly 4 RPM</td></tr>
<tr><td>Typical carried vehicles</td><td>Two Echo shuttles</td></tr>
<tr><td>Construction start</td><td>2050-03-15</td></tr>
<tr><td>Assembly complete</td><td>2052-02-06</td></tr>
<tr><td>Outfitting complete</td><td>2052-05-31</td></tr>
<tr><td>Commissioning</td><td>2052-06-01 to 2052-11-30</td></tr>
<tr><td>Entered service</td><td>December 2052</td></tr>
<tr><td>Home port</td><td>Star Port Station</td></tr>
<tr><td>Current status</td><td>Active (Europa Expedition 3, Jovian system)</td></tr>
</tbody></table>
<h2 id="see-also">See also</h2>
<ul>
<li><a href="/home/Exploration_Motherships/Xihe">Xihe-class interplanetary exploration mothership</a></li>
<li><a href="/home/Exploration_Motherships/Xihe/XH-02">Taibai (XH-02)</a></li>
<li><a href="/home/Exploration_Motherships/Xihe/XH-03">Changxi (XH-03)</a></li>
<li><a href="/home/Exploration_Motherships/Stellaria">Stellaria-class interplanetary exploration mothership</a></li>
<li><a href="/home/Space_Shuttles/Echo_Shuttle">Echo Shuttle</a></li>
<li><a href="/home/Space_Shuttles/Vulture_Shuttle">Vulture Shuttle</a></li>
<li><a href="/home/Stations/Star_Port_Station">Star Port Station</a></li>
<li><a href="/home/Bases/Mars_One">Mars One Base</a></li>
<li><a href="/home/Bases/Europa_Research_Outpost">Europa Research Outpost</a></li>
</ul>
</article>