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Fault-tolerant adaptive finite-time attitude synchronization and tracking control for multi-spacecraft formation

机译:航天器编队容错自适应有限时姿态同步与跟踪控制

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摘要

AbstractThis paper addresses the attitude synchronization and tracking control (ASTC) for multi-spacecraft formation system (MFS) under undirected and directed graph. First, a new adaptive nonsingular fast terminal sliding mode surface (ANFTSMS) is developed. It has both the merits of the NFTSM avoiding singularity and the adaptive method regulating the relative weighting of parameters. This provides designers a new way to improve the control performance. Second, by applying ANFTSMS, the proposed ANFTSM-controllers (ANFTSMCs) provide high precision finite-time convergence, robust to time-varying disturbances, uncertainties and accommodate to actuator faults, limited inputs. Moreover, the ANFTSMCs also achieve simple structure, inexpensive computations and chattering-free for continuous design. Few studies have addressed these problems simultaneously. Finally, effectiveness of the algorithms are verified via simulations.
机译: 摘要 本文讨论了无向和有向图下多航天器编队系统(MFS)的姿态同步和跟踪控制(ASTC)。首先,开发了一种新的自适应非奇异快速终端滑模面(ANFTSMS)。它既具有避免奇异性的NFTSM的优点,又具有调节参数相对权重的自适应方法。这为设计人员提供了一种改善控制性能的新方法。其次,通过应用ANFTSMS,所提出的ANFTSM控制器(ANFTSMC)提供了高精度的有限时间收敛性,对时变扰动具有鲁棒性,不确定性并适应执行器故障,输入受限。此外,ANFTSMC还实现了简单的结构,廉价的计算以及连续设计的无颤动。很少有研究能够同时解决这些问题。最后,通过仿真验证了算法的有效性。

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