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Time-optimal three-axis reorientation of asymmetric rigid spacecraft via homotopic approach

机译:通过同位点方法对不对称刚性航天器进行时间最优的三轴重定向

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This paper investigates the time-optimal rest-to-rest three-axis reorientation of asymmetric rigid spacecraft. First, time-optimal solutions for the inertially symmetric rigid spacecraft (ISRS) three-axis reorientation are briefly reviewed. By utilizing initial costates and reorientation time of the ISRS time-optimal solution, the homotopic approach is introduced to solve the asymmetric rigid spacecraft time-optimal three-axis reorientation problem. The main merit is that the homotopic approach can start automatically and reliably, which would facilitate the real-time generation of open-loop time-optimal solutions for attitude slewing maneuvers. Finally, numerical examples are given to illustrate the performance of the proposed method. For principle axis reorientation, numerical results and analytical derivations show that, multiple time-optimal solutions exist and relations between them are given. For generic reorientation problem, though mathematical rigorous proof is not available to date, numerical results also indicated the existing of multiple time-optimal solutions.
机译:本文研究了非对称刚性航天器在时间上最佳的静止到静止三轴重取向。首先,简要回顾了惯性对称刚性航天器(ISRS)三轴重新定向的时间最优解。通过利用ISRS时间最优解的初始代价和重新定向时间,引入了同伦方法来解决非对称刚性航天器时间最优三轴定向问题。主要优点是,同位方法可以自动且可靠地启动,这将有助于为姿态回转操作实时生成开环时间最优解。最后,通过数值算例说明了该方法的性能。对于主轴重新定向,数值结果和解析推导表明,存在多个时间最优解,并给出了它们之间的关系。对于通用的重新定向问题,尽管到目前为止尚无精确的数学证明,但数值结果也表明存在多个时间最优解。

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