用常规方法分析五相感应电动机驱动的稳定性

M. Alam, M. R. Khan, R. Arora
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引用次数: 1

摘要

任何电机在动态和稳态状态下的性能都是通过对电机的稳定性分析来评估的。三相异步电动机因其可靠性和低成本而广泛应用于工业领域。在闭环控制系统中,由于电路复杂,稳定性问题经常出现。本文建立了电压磁链关系的动态模型。在根轨迹法、波德图、奈奎斯特图等常用方法的基础上,采用线性化模型对五相感应电机的控制特性进行了评价。该模型应用了小扰动来评估控制性能。建立了电压电流关系来研究机器的性能。本文采用电压-电流模型来确定电机在不同负载条件下的稳定性。已经开发了MATLAB代码来进行这项研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability analysis of five phase induction motor drive using conventional methods
Performance of any electrical machine during dynamic and steady state condition is assessed by stability analysis of the machine. Three phase induction motors are widely used for a number of applications in industries because of their reliability and low cost. In close loop control system complex circuits are there so the problem of stability is always arises. In this paper a dynamic model of voltage flux linkage relationship. A linearized model is used to evaluate the control characteristics of the five phase induction motor drive which is based on the Conventional methods such as Root Locus technique, Bode plot, Nyquist plot etc. are used for stability analysis of high phase induction machine. Small perturbations are applied with the model to evaluate the control performance. Voltage current relationship is developed to study the behavior of the machine. In this paper voltage-current model is utilized to determine the stability of the motor under different load conditions. MATLAB codes have been developed to carry out this study.
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