电动机器人电机驱动系统的传导电磁干扰预测

Yingshuang Cao, Zhe Liu, Yabin Liu, Tian Liu
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引用次数: 0

摘要

随着人工智能的不断发展,电网中的电动机器人可以在一些对精度要求较高的危险环境和条件下取代人工作业。电力机器人在复杂电磁环境中的电磁兼容性对其安全性和可靠性尤为重要,是电力机器人实际应用的关键指标之一。在动力机器人的电机驱动系统中,由于开关装置的快速开合,会产生许多脉冲,这些脉冲信号会引起振荡,产生不可忽略的电磁干扰,严重影响其自身设备和相邻电气设备的正常运行。本文分析了电机驱动系统的传导扰动源和扰动传播路径,提出了电机伺服驱动传导扰动的建模和预测方法,并对仿真结果进行了实验验证,对传导扰动的抑制方法进行了前瞻性研究。试验表明,该方法能有效预测电力机器人电机驱动系统的传导扰动波形,对解决电力机器人驱动系统的电磁扰动问题具有重要指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Conducted Electromagnetic Disturbance Prediction of Electric Power Robot Motor Drive System
With the continuous development of artificial intelligence, electric robots in the power grid can replace manual work in some dangerous environments and conditions with high accuracy requirements. The electromagnetic compatibility of power robots in complex electromagnetic environments is particularly important for safety and reliability, and is one of the key indicators for the practical application of power robots. In the motor drive system of power robots, due to the rapid opening and closing of switching devices, many pulses are generated, and these pulse signals can cause oscillations and generate non-negligible electromagnetic disturbance, which seriously affects the normal operation of its own equipment and adjacent electrical equipment. In this paper, we analyze the conduction disturbance sources and disturbance propagation paths of motor drive system, propose a modeling and prediction method for conduction disturbance of motor servo drive, and conduct experimental verification of simulation results, and make a prospective study on the suppression method of conduction disturbance. The test shows that the method can effectively predict the conducted disturbance waveform of electric power robot motor drive system, which is an important guidance for the solution of electromagnetic disturbance problem of electric power robot drive system.
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