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Titlebook: On-Orbit Operations Optimization; Modeling and Algorit Leping Yang,Yanwei Zhu,Yuanwen Zhang Book 2014 Leping Yang, Yanwei Zhu, Xianhai Ren,

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发表于 2025-3-23 12:04:15 | 显示全部楼层
Proximity Relative Motion Planning,mproved Artificial Potential Function (IAPF) is applied to surface following trajectory optimization when the field of view (FOV) is blocked. For a maneuvered customer, the Inverse Dynamics in the Virtual Domain method (IDVD) is explored to approach online trajectory planning.
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Introduction,cope repairs, assembly of the International Space Station, as well as demonstration of the Orbital Express, the growing importance of On-Orbit Servicing (OOS) has been emphasized. OOS, which has grown to be a hot topic in on-orbit operations field, will help transit space utilization into a new era of operational efficiency and cost-effectiveness.
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Spacecraft Multi-Mission Planning,ecraft multi-mission planning is founded on one-to-one single mission planning, including far-range orbital maneuver planning and proximity relative motion planning. In this chapter, a multilevel nonlinear planning model, which can be simplified as mission assignment, sequence arrangement, and time
发表于 2025-3-24 12:21:13 | 显示全部楼层
Far-Range Orbital Maneuver Planning,omer until the former gets close to the latter. Then the servicer sensor captures the customer, which marks the beginning of proximity relative motion phase. Trajectory planning of far-range orbital maneuver is to optimize the orbital maneuver for the servicer under the constraints of time, fuel, an
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Multi-Spacecraft Coordinated Planning,atellites, which requires coordinated planning to achieve and keep a desired configuration. The cyclic pursuit method and the contraction theory are investigated due to their promising features, such as less information exchange and global convergence. First, the cyclic pursuit method is put forward
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