基于遗传算法的电液位置伺服系统最优控制策略

Q4 Engineering
Xunyi Zhu, Bing Zhang, Junsen Rao
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引用次数: 0

摘要

背景:最优控制策略广泛应用于电液位置伺服系统中,以实现高精度的位置跟踪。然而,最优控制中加权矩阵的选取困难往往导致跟踪精度较差。目的:本专利提出了一种利用遗传算法提高电液伺服系统跟踪精度的最优控制策略。方法:本专利首先建立了阀控非对称缸的系统状态方程。其次,基于线性二次最优控制理论和遗传算法,提出了一种基于遗传算法的最优控制策略。仿真和实验结果表明,所设计的控制器具有较高的位置跟踪精度。结果:利用Matlab/Simulink设计了基于遗传算法的最优控制器,并通过仿真验证了控制器的有效性。此外,实验结果表明,对于给定参考信号,采用遗传算法的最优控制控制器比比例-积分-导数控制器和传统反步控制器具有更高的跟踪精度。结论:采用遗传算法的最优控制器的控制技术优于比例-积分-导数和传统的反演控制器,线性二次型调节器控制器的跟踪误差较小。这证明了本专利中使用遗传算法的最优控制策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Control Strategy of Electro-hydraulic Position Servo System Using Genetic Algorithm
background: The optimal control strategy has been widely used in electro-hydraulic position servo systems to achieve high-precision position tracking. However, the difficulty of selecting the weighted matrices in optimal control often leads to poor tracking accuracy. objective: This patent proposes an optimal control strategy using a genetic algorithm to improve the tracking accuracy of the electro-hydraulic servo system. methods: The patent first established the system state equation of the valve-controlled asymmetric cylinder. Secondly, based on linear quadratic optimal control theory and genetic algorithm, an optimal control strategy using a genetic algorithm was proposed. Finally, the simulation and experimental results showed that the designed controller has high position tracking accuracy. results: The optimal controller using a genetic algorithm was designed using Matlab/Simulink, and the effectiveness of the controller was verified through simulation. Additionally, experimental results showed that the proposed optimal control controller using a genetic algorithm had higher tracking accuracy than the proportional-integral-derivative controller and traditional backstepping controller for a given reference signal. conclusion: The control technology of the optimal controller using a genetic algorithm was found to be superior to proportional-integral-derivative and traditional backstepping controllers, and the tracking error of the linear quadratic regulator controller was reported to be relatively small. This demonstrated the effectiveness of the optimal control strategy using a genetic algorithm in this patent.
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来源期刊
Recent Patents on Mechanical Engineering
Recent Patents on Mechanical Engineering Engineering-Mechanical Engineering
CiteScore
0.80
自引率
0.00%
发文量
48
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