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Circle Condition-Based Robust Feedback Control Against Plant Perturbation

机译:基于圆条件的鲁棒反馈控制,防止植物扰动

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Abstract: This paper presents a novel robust feedback (FB) controller design against plant perturbation for the fast and precise motion control of high-precision servo systems. The plant perturbation, e.g., parameter fluctuation and uncertainties, due to temperature variation and/or aged deterioration generally deteriorates the motion performance as well as the system stability. Balancing a trade-off between expansion of the control bandwidth and the stability, therefore, is a general and important index in the FB controller design to provide robust properties against the perturbation. In this study, a circle condition-based robust FB controller design considering the robust stability and the robust sensitivity is proposed to achieve the improved motion control performance. Effectiveness of the proposed approach has been verified by numerical simulations for a galvano scanner.
机译:摘要:本文提出了一种针对植物扰动的新型鲁棒反馈(FB)控制器设计,用于高精度伺服系统的快速精确运动控制。由于温度变化和/或老化而导致的设备扰动(例如参数波动和不确定性)通常会使运动性能以及系统稳定性下降。因此,在FB控制器设计中,平衡控制带宽的扩展与稳定性之间的权衡是一项通用且重要的指标,以提供抵抗干扰的鲁棒性能。在这项研究中,提出了一种基于圆形条件的鲁棒FB控制器设计,该设计考虑了鲁棒稳定性和鲁棒灵敏度,以实现改进的运动控制性能。电流扫描器的数值模拟已经验证了所提出方法的有效性。

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