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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Design of Critical Control Systems Utilizing Genetic Algorithms and LMI-Based Regional Pole Assignment Technique
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Design of Critical Control Systems Utilizing Genetic Algorithms and LMI-Based Regional Pole Assignment Technique

机译:基于遗传算法和基于LMI的区域极点分配技术的关键控制系统设计

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摘要

A method for designing critical systems subject to magnitude-and-rate-limited reference inputs is proposed. The worst-case tracking error is minimized under the constraint on the control effort. The LMI-based technique developed by Chilali and Gahinet is utilized to assign the resulting closed-loop poles into the intersection of a vertical strip and a conic sector. The optimal pole region is searched via the simple genetic algorithm. An illustrative design example of the position control system for a two-inertia system is provided to demonstrate the proposed design method. The simulation and experimental results show that a critical position control system is successfully designed on the basis of the proposed method.
机译:提出了一种用于设计受幅值和速率限制的参考输入的关键系统的方法。在控制努力的约束下,最坏情况的跟踪误差被最小化。由Chilali和Gahinet开发的基于LMI的技术用于将所得的闭环极点分配到垂直带和圆锥形扇形的相交处。通过简单的遗传算法搜索最佳极区。提供了用于两个惯性系统的位置控制系统的说明性设计示例,以演示所提出的设计方法。仿真和实验结果表明,在所提出的方法的基础上,成功设计了关键位置控制系统。

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