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Multirate PWM Control of Precision Stage for Ultrahigh-Speed Nanoscale Positioning

机译:用于超高速纳米级定位的精密平台的多速率PWM控制

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Motion control techniques are employed for nanoscale positioning in industrial equipment such as numerical control (NC) machine tools and exposure systems. The advanced motion control techniques are based on precise current control. However, speeding up the precise current response causes a serious limitation owing to the carrier period of the inverter. In addition, the position response has to be slower than the current response. In a previous paper, we designed and fabricated an experimental precision stage, achieving novel ultrahigh-speed nanoscale positioning based on multirate pulse width modulation (PWM) control. However, it was difficult to achieve faster and more precise positioning because of the resonance modes of the stage. In this paper, we propose a multirate PWM control in which the resonance mode is considered. Simulations and experiments are performed to demonstrate the advantages of the proposed method.
机译:运动控制技术用于工业设备(例如数控(NC)机床和曝光系统)中的纳米级定位。先进的运动控制技术基于精确的电流控制。但是,由于逆变器的载波周期,加快精确的电流响应会造成严重的限制。另外,位置响应必须比当前响应慢。在先前的论文中,我们设计并制造了一个实验精密平台,该平台基于多速率脉冲宽度调制(PWM)控制实现了新颖的超高速纳米级定位。但是,由于平台的共振模式,很难实现更快,更精确的定位。在本文中,我们提出了一种考虑谐振模式的多速率PWM控制。仿真和实验表明了该方法的优越性。

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