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SISO and SIMO active vibration control of a flexible plate structure using real-coded genetic algorithm

机译:基于实数编码遗传算法的柔性板结构的SISO和SIMO主动振动控制

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This paper presents the development of an active vibration control (AVC) mechanism using real-coded genetic algorithm (RCGA) optimization. The approach is realized with single-input single-output (SISO) and single-input multiple-output (SIMO) control configurations in a flexible plate structure. A simulation environment characterizing a thin, square plate, with all edges clamped, is developed using the finite difference (FD) method as a platform for test and verification of the developed control approach. Tests are carried out with different disturbance signal types, namely random and finite duration step. The control design comprises a direct optimization of the controller parameters based on minimization of the error (observed) signal. The RCGA is formulated with a fitness function based on mean square of the observed vibration. The performance of the system is assessed and analysed both in the time and frequency domains and it is demonstrated that the proposed scheme reduces vibration of the flexible plate significantly.
机译:本文介绍了使用实编码遗传算法(RCGA)优化的主动振动控制(AVC)机制的开发。该方法是通过柔性板结构中的单输入单输出(SISO)和单输入多输出(SIMO)控制配置实现的。使用有限差分(FD)方法开发了一个模拟环境,该环境表征了一块薄而方形的板,所有边都被夹紧,以此作为测试和验证已开发控制方法的平台。使用不同的干扰信号类型(即随机和有限持续时间步长)进行测试。控制设计包括基于误差(观察到的)信号最小化的控制器参数直接优化。 RCGA是根据观察到的振动的均方根而拟定的,具有适应度函数。在时域和频域均对系统的性能进行了评估和分析,结果表明,该方案显着降低了柔性板的振动。

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