Experimental validation of a velocity estimation algorithm for speed control of electrical drives

S. D'arco, L. Piegari, R. Rizzo
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引用次数: 5

Abstract

The problem of the estimation of rotating speed is a very important problem, especially for systems that works with high dynamics. Actually the most common way to measure velocity is to use an incremental encoder. However the precision of the velocity estimation is yet a not completely solved problem. Typically, it is possible to increase the accuracy of the measure increasing the observation time, but during dynamic phenomena this could be dangerous for the efficiency and the stability of the control of the system. In the paper authors have proposed an innovative algorithm for the estimation of velocity starting from the output signal of an incremental encoder. The algorithm proposed can be used either at steady state or in dynamic conditions because it has a self-adjustable observation time in function of velocity and acceleration of the system. The algorithm has been tested in laboratory and experimental results have been reported in the paper.
一种电传动速度控制速度估计算法的实验验证
转速的估计问题是一个非常重要的问题,特别是对于高动态系统。实际上,测量速度最常用的方法是使用增量编码器。然而,速度估计的精度仍然是一个没有完全解决的问题。通常,增加观测时间可以提高测量的精度,但在动态现象中,这可能会对系统控制的效率和稳定性造成危险。本文提出了一种从增量式编码器的输出信号出发估计速度的新算法。该算法具有随系统速度和加速度自调的观测时间,既可用于稳态,也可用于动态。该算法已在实验室进行了测试,并在论文中报道了实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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