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Time-Delayed Control of SISO Systems for Improved Stability Margins

机译:SISO系统的时滞控制以提高稳定性裕度

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While time delays typically lead to poor control performance, and even instability, previous research shows that time delays can, in some cases, be beneficial. This paper presents a new benefit of time-delayed control (TDC) for single-input single-output (SISO) linear time invariant (LTI) systems: it can be used to improve robustness. Time delays can be used to approximate state derivative feedback (SSD), which together with state feedback (SF) can reduce sensitivity and improve stability margins. Additional sensors are not required since the state derivatives are approximated using available measurements and time delays. A systematic design approach, based on solution of delay differential equations (DDEs) using the Lambert W method, is presented using a scalar example. The method is then applied to both single-and two-degree of freedom (DOF) mechanical systems. The simulation results demonstrate excellent performance with improved stability margins.
机译:虽然时间延迟通常会导致不良的控制性能,甚至不稳定,但先前的研究表明,时间延迟在某些情况下可能是有益的。本文介绍了单输入单输出(SISO)线性时不变(LTI)系统的时延控制(TDC)的新优势:可用于提高鲁棒性。时间延迟可用于近似状态导数反馈(SSD),它与状态反馈(SF)一起可降低灵敏度并提高稳定性裕度。由于状态导数是使用可用的测量值和时间延迟来近似的,因此不需要其他传感器。通过一个标量示例,提出了一种基于系统设计方法,该方法基于使用Lambert W方法求解延迟微分方程(DDE)的方法。然后将该方法应用于单自由度和二自由度(DOF)机械系统。仿真结果证明了卓越的性能以及改进的稳定性余量。

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