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Multisatellite Formation Control for Remote Sensing Applications Using Artificial Potential Field and Adaptive Fuzzy Sliding Mode Control

机译:人工势场和自适应模糊滑模控制在遥感多卫星编队控制中的应用

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摘要

The formation control of satellites for remote sensing applications has received considerable attention during the past decade. This work deals with the development of a formation control strategy for the circular formation of a group of satellites. In this paper, artificial potential field method is used for path planning, and sliding mode control (SMC) technique is used for designing a robust controller. A fuzzy inference mechanism is utilized to reduce the chattering phenomenon inherent in the conventional SMC. An adaptive tuning algorithm is also derived based on Lyapunov stability theory to tune the fuzzy parameter. The proposed fuzzy-SMC-based technique is intended to compensate for the modeling uncertainties existing in practical applications. The results of simulations done for a group of five satellites making a circular formation confirm the stability and robustness of the present scheme.
机译:在过去的十年中,用于遥感应用的卫星的编队控制受到了相当大的关注。这项工作涉及为一组卫星进行圆形编队的编队控制策略的发展。在本文中,人工势场方法用于路径规划,而滑模控制(SMC)技术用于设计鲁棒控制器。利用模糊推理机制来减少常规SMC固有的抖动现象。还基于Lyapunov稳定性理论推导了自适应调整算法,以对模糊参数进行调整。所提出的基于模糊SMC的技术旨在补偿实际应用中存在的建模不确定性。对一组五个卫星进行圆形编队的仿真结果证实了本方案的稳定性和鲁棒性。

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