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High performance ultra-low speed servo system based on doubly coprime factorization and instantaneous speed observer

机译:基于双互质分解和瞬时速度观测器的高性能超低速伺服系统

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摘要

This paper proposes a new speed servo system for a wide speed range based on doubly coprime factorization and instantaneous speed observer. The proposed speed controller is a new two-degrees-of-freedom speed servo system considering the robust stability according to inertia variation, which is designed on the basis of doubly coprime factorization and disturbance observer. In an ultra-low speed range, a speed sensor based on a rotary encoder cannot detect a motor speed. In this paper, a speed information in a very low speed range is estimated by the proposed instantaneous speed observer which mounts the parameter identification algorithm to cancel out the estimation error caused by parameter variation. Therefore, the two-degrees-of-freedom speed servo system connecting the instantaneous speed observer regulates a motor speed robustly in a wide speed range including an ultra-low speed range, and it keeps the desired speed response for all speed reference including an ultra-low speed range.
机译:本文提出了一种基于双互质数分解和瞬时速度观测器的宽速度范围的新型速度伺服系统。所提出的速度控制器是一种基于惯性变化的具有鲁棒稳定性的新型两自由度速度伺服系统,该系统是在双重互质分解和扰动观测器的基础上设计的。在超低速范围内,基于旋转编码器的速度传感器无法检测电动机速度。在本文中,所提出的瞬时速度观测器估计了极低速度范围内的速度信息,该瞬时速度观测器安装了参数识别算法以抵消由参数变化引起的估计误差。因此,连接瞬时速度观测器的两自由度速度伺服系统可在包括超低速范围在内的较宽的速度范围内稳定地调节电动机速度,并且可为包括超速在内的所有速度基准保持所需的速度响应。 -低速范围。

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