Small-signal transient analysis of induction machines with stator inter-turn faults using dynamic phasors

D. Patel, M. Chandorkar
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引用次数: 10

Abstract

This paper presents a dynamic phasor modeling approach to the small signal transient analysis of induction machines with stator inter-turn faults. An important advantage of dynamic phasor modeling is that it results in time-invariant models of unbalanced three-phase systems. The linearized dynamic phasor model facilitates the analytical studies of transients of unbalanced systems using eigenvalues. The linearized q - d model of a machine with stator inter-turn fault has a system matrix having time periodic entries, and is thus unsuitable for eigenvalue analysis. The dynamic phasor model helps in this case. In this paper, the dynamic phasor model of induction machine with stator inter-turn fault is developed, and this is further used for eigenvalue analysis. The eigenvalue comparison of healthy and faulted machines is presented. This analysis is verified by transient simulations of the dynamic phasor model and experiments. The eigenvalue analysis and the results of experiments and simulations show that the effect of stator inter-turn fault in transients of positive and negative sequence currents is very small. Also the stator inter-turn fault produces coupling between transients of positive and negative sequence currents.
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用动态相量分析具有定子匝间故障的感应电机的小信号暂态
针对具有定子匝间故障的异步电机的小信号暂态分析,提出了一种动态相量建模方法。动态相量建模的一个重要优点是它可以得到不平衡三相系统的时不变模型。线性化的动态相量模型便于利用特征值分析不平衡系统的暂态。具有定子匝间故障的电机线性化q - d模型的系统矩阵具有时间周期项,因此不适合进行特征值分析。在这种情况下,动态相量模型会有所帮助。本文建立了具有定子匝间故障的异步电机动态相量模型,并将其用于特征值分析。给出了健康机与故障机的特征值比较。动态相量模型的瞬态仿真和实验验证了这一分析。特征值分析以及实验和仿真结果表明,定子匝间故障对正、负序电流暂态的影响很小。定子匝间故障也会产生正序电流和负序电流的瞬态耦合。
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