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Transient Analysis of Synchronous Generator with Stator Winding Faults Based on Starting Process

机译:基于启动过程的定子绕组故障同步发电机瞬态分析

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Multi-loop theory is the most common and effective method used for analyzing stator winding internal faults of synchronous generators. Based on the current analysis methods, this paper modifies the existing models and introduces the motion equation of rotor into the Multi-loop analysis model to describe the associated relations between main parameters (e.g. current, voltage, torque, speed of rotation) of generator. Since the starting process of motor contains abundant information, this paper analyzes the influence of internal faults to relevant parameters, during the starting process from zero to rated speed. Through analysis some conclusions can be obtained as follow: when stator winding internal faults occur, since the influence of space harmonic is stronger, electromagnetic torque is on oscillatory regime. All waves are distorted when turn-to-tum faults occur. The starting current is bigger than normal, and the current will fluctuate after stabilization. The changing trends of short circular current and neutral-point current are the same. The currents are both small when starting, then gradually decay and go stabilization after an obvious increasing. The amplitudes of currents are far bigger than every branch current of stator. After faults, the electromagnetic torque of motor changes a lot and there is still an oscillation with certain amplitudes after stabilization. More short turns would cause bigger amplitudes of oscillation.
机译:多回路理论是分析同步发电机定子绕组内部故障的最常用,最有效的方法。本文基于当前的分析方法,对现有模型进行了修改,并将转子的运动方程式引入多回路分析模型,以描述发电机主要参数(例如电流,电压,转矩,转速)之间的关联关系。由于电动机的启动过程中包含大量信息,因此本文分析了从零到额定转速启动过程中内部故障对相关参数的影响。通过分析可以得出以下结论:当定子绕组内部发生故障时,由于空间谐波的影响较大,因此电磁转矩处于振荡状态。发生转向间故障时,所有波都会失真。起动电流大于正常电流,稳定后电流会波动。短循环电流和中性点电流的变化趋势是相同的。启动时电流都很小,然后逐渐衰减并在明显增加后趋于稳定。电流的幅度远大于定子的每个分支电流。故障后,电机的电磁转矩变化很大,稳定后仍然存在一定幅度的振荡。较短的匝数会导致更大的振荡幅度。

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