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Stable orbital transfer of partial space elevator by tether deployment and retrieval

机译:通过系绳的部署和检索稳定进行部分空间电梯的轨道转移

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摘要

This paper investigates the stable orbital transfer of a climber in a partial space elevator system in circular orbits. The elevator includes a main satellite, an end body, and a climber, which are connected by two straight, inextensible, massless and variable length tethers. Derived from system dynamics, two closed-loop velocity control strategies are proposed to regulate the tethers' deploying and retrieving speeds directly to control the Coriolis forces acting on the climber and the end body directly. The stable region of the control strategies is analyzed, and the effectiveness of the proposed strategies is demonstrated by numerical simulation. Simulation results show that the newly proposed strategies effectively minimize the libration of a partial space elevator system during the orbital transfer of the climber and the system states successfully approach to the desired equilibrium by the end of the orbital transfer. Furthermore, the proposed deployment/retrieval control strategies can be converted to tension control laws easily.
机译:本文研究了圆形轨道部分空间升降机系统中登山者的稳定轨道转移。电梯包括一个主卫星,一个终端主体和一个登山者,它们通过两条直的,不可延伸的,无质量的和可变长度的系链连接。从系统动力学派生,提出了两种闭环速度控制策略来直接调节系绳的部署和检索速度,以直接控制作用在登山者和末端主体上的科里奥利力。分析了控制策略的稳定区域,并通过数值仿真验证了所提策略的有效性。仿真结果表明,新提出的策略有效地减少了部分空间电梯系统在爬升器轨道转移过程中的释放,并且系统状态在轨道转移结束时成功地达到了所需的平衡。此外,所提出的部署/检索控制策略可以轻松转换为张力控制法则。

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