基于Whale优化算法的电力加载系统自抗扰控制

Jia-Ming Chang, D. Shen, Dong Chen
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引用次数: 0

摘要

扭力载荷试验是飞机侧杆研制的关键试验之一。由于机械结构的耦合作用,飞机侧杆本身产生的角度会影响电加载系统的加载转矩,从而出现多余转矩。提出了一种消除飞机侧杆加载装置剩余转矩的控制方法。自抗扰控制(ADRC)采用扩展状态观测器收集所有非线性不确定性进行补偿。为避免自抗扰控制器控制参数强耦合的负面影响,结合鲸鱼优化算法(WOA)对最小剩余转矩状态的参数进行自动调谐。仿真结果表明,与PID控制相比,经WOA调谐的自抗扰控制器可以减小侧杆角扰动的影响,满足剩余转矩较小的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Active Disturbance Rejection Control Tuned by Whale Optimization Algorithm for Electric Loading System
The torque load test is one of the key tests in the development of aircraft sidestick. Due to the coupling effect of mechanical structure, the angle produced by aircraft sidestick itself will affected the loaded torque of electric loading system, so that the surplus torque appears. In this paper, a control method is proposed to eliminate the surplus torque of loading device for aircraft sidestick. Active disturbance rejection control (ADRC) uses the extended state observer to collect all the nonlinear uncertainties for compensation. In order to avoid the negative influence of strong coupling of ADRC control parameters, whale optimization algorithm (WOA) is combined to automatically tune the parameters for the state of minimum surplus torque. The simulation results show that compared with PID control, the ADRC tuned by WOA can reduce the influence of sidestick angle disturbance, thus it satisfies the requirement for less surplus torque.
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