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A Novel Filtering Method Based on a Nonlinear Tracking Differentiator for the Speed Measurement of Direct-drive Permanent Magnet Traction Machines

机译:基于非线性跟踪微分器的直接驱动永磁曳引机速度测量的新型滤波方法

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摘要

This paper presents a novel filtering method for speed measurements to improve the low-speed performance of the direct-drive permanent magnet traction machines for elevators. Based on the theory of nonlinear tracking differentiator (NTD), this method, which can act as a high performance filter of a raw speed signal, obtains a more accurate speed feedback signal when applying a low-resolution encoder. In addition, it can relieve the interference caused by the position derivative for speed sampling. By analyzing the frequency response of the NTD, the influence of its parameters on the performance of the speed filtering is investigated. Compared with different types of low-pass filters, the proposed method shows a shorter time delay and a stronger ability in terms of noise suppression when the parameters are selected carefully. In addition, when using the measured speed signal through a nonlinear tracking differentiator as the feedback of the system, the motor runs more steadily at low speeds. As a result, the riding comfort of a. direct-drive elevator can be improved. The feasibility of the proposed strategy was verified on an 11.7kW elevator traction machine using a commercial inverter.
机译:本文提出了一种用于速度测量的新型滤波方法,以改善电梯直驱永磁牵引机的低速性能。该方法基于非线性跟踪微分器(NTD)的原理,可以用作原始速度信号的高性能滤波器,在应用低分辨率编码器时可以获得更准确的速度反馈信号。此外,它还可以减轻速度采样中位置导数引起的干扰。通过分析NTD的频率响应,研究了其参数对速度滤波性能的影响。与不同类型的低通滤波器相比,该方法在选择参数时表现出更短的时延和更强的噪声抑制能力。此外,当通过非线性跟踪微分器将测得的速度信号用作系统的反馈时,电动机在低速时会更稳定地运行。这样一来,乘坐舒适感就达到了。可以改善直驱电梯。所提策略的可行性在使用商用逆变器的11.7kW电梯曳引机上得到了验证。

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