单相自励感应发电机三相电机馈电动态负载的暂态分析

S. N. Mahato, M. Sharma, S. Singh
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引用次数: 7

摘要

本文研究了单相自激感应发电机(SEIG)为异步电动机供电时的暂态特性。发电机由三个电容的三相星形感应电机和单相感应电机负载组成。基于静止参考系d-q轴理论,建立了SEIG和电机负载的动力学模型,励磁电容器的方程用三相abc模型描述。感应电动机在开关过程中会产生大的瞬变,使系统变得不稳定。提出了在串联电容器之间使用阻尼电阻来抑制瞬态,以保证稳定运行。使用阻尼电阻,电机可以成功启动。仿真结果与无阻尼阻力起动失败和有阻尼阻力起动成功的实验结果进行了比较,验证了所建立的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transient Analysis of a Single-Phase Self-Excited Induction Generator using a Three-Phase Machine feeding Dynamic Load
This paper presents the transient behavior of a single-phase self-excited induction generator (SEIG) supplying a dynamic load i.e. induction motor. The generator consists of a three-phase star connected induction machine with three capacitors and a single-phase induction motor load. The dynamic models of the SEIG and the motor load have been developed based on stationary reference frame d-q axes theory and the equations of excitation capacitors are described by three-phase abc model. Heavy transients occur during the switching of induction motor and the system becomes unstable. The use of damping resistors across series capacitors is proposed to damp out the transients for the stable operation. Using the damping resistors, the motor can be started up successfully. Simulated results have been compared with the experimental results for unsuccessful starting without damping resistances and successful starting with damping resistances to validate the developed model.
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