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A Hybrid Integrator-Gain Based Low-Pass Filter for Nonlinear Motion Control

机译:非线性运动控制的基于混合积分增益的低通滤波器

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In this paper a hybrid low-pass filter is developed and subsequently embedded in a PID-based control design. The hybrid element switches between gain and integrator mode, depending on the evaluation of specifically designed switching conditions. Given the properties of the hybrid low-pass filter, which are mainly expressed by reduced phase lag as compared to a linear-equivalent low-pass filter, the bandwidth of the PID-based control design can potentially be increased. Based on describing function analysis, this bandwidth increase is obtained while identical robustness properties of the closed-loop system in terms of bounds imposed on the closed-loop sensitivity function are guaranteed. In this sense, the hybrid control design provides more design freedom compared to the equivalent linear control design, which leads to a factor two improvement in low-frequency disturbance suppression of a state-of-the-art scanning stage of an industrial wafer scanner.
机译:本文开发了一种混合型低通滤波器,随后将其嵌入基于PID的控制设计中。混合元件根据对专门设计的开关条件的评估,在增益模式和积分模式之间切换。给定混合型低通滤波器的属性(与线性等效低通滤波器相比,主要通过减少相位滞后来表示),可以潜在地增加基于PID的控制设计的带宽。基于描述函数分析,获得了带宽增加,同时确保了根据闭环灵敏度函数所施加的边界,闭环系统具有相同的鲁棒性。从这个意义上讲,与等效的线性控制设计相比,混合控制设计提供了更多的设计自由度,这导致了工业晶圆扫描仪的最新扫描台在低频干扰抑制方面的改进。

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