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Control of a class of second-order linear vibrating systems with time-delay: Smith predictor approach

机译:一类具有时滞的二阶线性振动系统的控制:Smith预估器方法

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This paper presents an innovative approach to the design of feedback control in second-order symmetric linear systems under long input time-delay. Recent works have presented design techniques for second order-systems. However, most of them carry out ana posteriorianalysis to check if the target eigenvalues are correctly assigned. An inaccurate eigenvalue assignment can occur due to infinite dimensional nature of the characteristic polynomial for systems with time-delay, and, eventually, the target eigenvalues can be assigned as secondary ones, with unstable, dangerous primary eigenvalues entering the picture. The proposal uses a Smith Predictor based approach to compensate the time-delay by providing a nominal characteristic polynomial without delay. The prediction is obtained by employing the versatile receptance approach in the conception of the predictor, and thus the design is entirely made at the frequency domain. The proposal uses a filtered prediction error which can be applied to attenuate the undesired effect of the poorly damped eigenvalues and ensure the internal stability of the marginally stable case. Some numerical experiments are given to illustrate the effectiveness of the proposed approach.
机译:本文提出了一种创新的方法来设计长输入时滞下的二阶对称线性系统的反馈控制。最近的工作提出了用于二阶系统的设计技术。但是,它们中的大多数都进行了后验分析,以检查目标特征值是否正确分配。对于具有时滞的系统,由于特征多项式的无限维性质,可能会导致不正确的特征值分配,并且最终,目标特征值可能被分配为次要特征值,而不稳定,危险的主要特征值会进入图像。该提案使用基于Smith Smith预测器的方法,通过提供标称特征多项式而没有延迟来补偿时间延迟。通过在预测器的概念中采用通用接受方法来获得预测,因此设计完全在频域进行。该建议使用滤波后的预测误差,该预测误差可用于衰减弱阻尼特征值的不良影响,并确保边缘稳定情况的内部稳定性。一些数值实验说明了该方法的有效性。

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