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A Novel Fuzzy-Sliding and Fuzzy-Integral-Sliding Controller for the Twin-Rotor Multi-Input–Multi-Output System

机译:双转子多输入多输出系统的新型模糊滑移与模糊积分滑移控制器

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摘要

In this paper, a novel fuzzy-sliding and fuzzy-integral-sliding controller (FSFISC) is designed to position the yaw and pitch angles of a twin-rotor multi-input–multi-output system (TRMS). With the coupling effects, which are considered as the uncertainties, the highly coupled nonlinear TRMS is pseudodecomposed into a horizontal subsystem and a vertical subsystem (VS). The proposed FSFISC consists of a fuzzy-sliding controller and an FISC for the horizontal and the VSs, respectively. The reaching conditions and the stability of the TRMS with the proposed controller are guaranteed. Simulation results are included to indicate that TRMS with the presented FSFISC can greatly alleviate the chattering effect and remain robust to the external disturbances. In addition, the performance comparisons with the proportional–integral–differential (PID) approach using a modified real-value-type genetic algorithm are provided to show that the FSFISC has better performance in the aspects of error and control indexes.
机译:在本文中,设计了一种新颖的模糊滑动和模糊积分滑动控制器(FSFISC)来定位双转子多输入多输出系统(TRMS)的偏航角和俯仰角。利用被认为是不确定性的耦合效应,高度耦合的非线性TRMS被伪分解为水平子系统和垂直子系统(VS)。所提出的FSFISC由模糊滑动控制器和分别用于水平和VS的FISC组成。所提控制器保证了TRMS的达到条件和稳定性。包括仿真结果表明,采用所提出的FSFISC的TRMS可以极大地减轻抖振效应,并保持对外部干扰的鲁棒性。此外,使用改进的实值类型遗传算法与比例积分微分(PID)方法进行性能比较,结果表明FSFISC在误差和控制指标方面具有更好的性能。

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