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首页> 外文期刊>International Journal of Fuzzy Systems >Adaptive Fuzzy PID Control Strategy for Spacecraft Attitude Control
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Adaptive Fuzzy PID Control Strategy for Spacecraft Attitude Control

机译:航天器态度控制的自适应模糊PID控制策略

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摘要

In this paper, a novel adaptive fuzzy proportional-integral-derivative (AFPID) controller is designed for geostationary satellite attitude control. In order to design the AFPID controller, first a fuzzy PID (FPID) controller is proposed in which two fuzzy inference engines are used: single-input fuzzy inference engine (SIFIE) and preferential fuzzy inference engine (PFIE). SIFIE has only one input which means a separate SIFIE is assigned to each state variable, and on the other side, PFIE represents the control priority order of each state variable. Consequently, control gains of FPID controller will be adjusted and updated with a sliding mode-based adaptation mechanism. As a result, via numerical simulations, objectives of the AFPID controller in terms of faster convergence time and higher performance are achieved.
机译:本文设计了一种新颖的自适应模糊比例 - 整体衍生物(AFPID)控制器,专为地静止卫星姿态控制而设计。为了设计AFPID控制器,提出了一种模糊PID(FPID)控制器,其中使用了两个模糊推理引擎:单输入模糊推理引擎(SIFIE)和优先模糊推理引擎(PFIE)。 SIFIE仅具有一个输入,表示单独的SIFIE被分配给每个状态变量,另一侧,PFIE表示每个状态变量的控制优先级顺序。因此,将通过基于滑动模式的适配机制调整和更新FPID控制器的控制增益。结果,通过数值模拟,实现了AFPID控制器在更快的收敛时间和更高性能方面的目标。

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