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Formation Control of Spacecraft under orbital perturbation

机译:眶下扰动下航天器的形成控制

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The novel concept of multiple spacecraft formation flying as a substitute for a single large vehicle will enhance future space mission performance. The benefits of a spacecraft formation include more cost effective synthetic aperture radar for observations, flexibility of the satellites altering their roles, reduction of cost owing to the reduction of mass launched into orbit etc. A significant challenge in the domain of control design is to contrive a formation maintenance controller that will enable the member spacecrafts to maintain a desired relative orbit with optimal propellant expenditure while maintaining the desired formation. This paper examines a low earth orbit formation control methodology, with the aim of evaluating formation from a propellant budget, thrust level and error dynamics standpoint. A State feedback controller has been applied on J_2 perturbed Clohessy-Wiltshire dynamics, and the system is checked for its stability and performance.
机译:多种航天器形成飞行的新颖概念作为单一大型车辆的替代品将增强未来的空间特派性能。 航天器形成的益处包括更具成本效益的合成孔径雷达,用于观察,卫星的灵活性改变其作用,由于在轨道上的肿块减少而降低了成本。控制设计领域的重大挑战是陷入困境 形成维护控制器,使得成员航天器能够维持所需的相对轨道,其具有最佳推进剂支出,同时保持所需的形成。 本文探讨了低地球轨道形成控制方法,目的是从推进剂预算,推力水平和误差动态的角度评估形成。 已在J_2扰动Clohessy-Wiltshire动态上应用了状态反馈控制器,并检查了其稳定性和性能的系统。

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