Dynamic Modeling of Wound-Rotor Slip-Ring Induction Generator with Switched-Excitation Capacitance and Chopper Resistance Across Bridge Rectifier in the Rotor Circuit

B. Nasir
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Abstract

This paper presents a novel external secondary self-excitation capacitance and chopper resistance across the diode bridge rectifier in the rotor circuit to control the voltage and frequency of 3-phase, wound-rotor, slip-ring, induction generator (WRSRIG). The problem related to the excitation- capacitance from the rotor side is the required large excitation capacitance to enhance the generator performance in a wide - range. In the present proposed method, a dynamic excitation capacitance is used in the H-Bridge inverter circuit connected in series with a chopper resistance across a 3-phase diode bridge rectifier in the rotor circuit. The duty ratios of the H-bridge thyristor elements and the thyristor chopper element are varied to emulate the excitation-capacitance as well as external-rotor resistance values dynamically, and to be used as terminal voltage and its frequency control. The dynamic excitation-capacitance is used to control the terminal voltage, while the dynamic external rotor resistance is used to control the generator speed (frequency). To study the performance of the WRSRIG a dynamic model is presented in this paper in D-Q axes rotating synchronously in a reference frame. The dynamic model takes into account all the machine parameters, such as stator and rotor - iron core losses, stator and rotor - stray load losses, dynamic saturation of the magnetizing inductance, rotor harmonic losses generated due to switching action of the bridge rectifier, reduction voltage in the rotor circuit due to the over-lap phenomenon and rotor external resistance losses. The new proposed equivalent circuit of the WRSRIG will become an efficient method for studying the performance characteristics of the generator and to be used as a suitable tool for an algorithm of the vector control analysis.
带开关励磁电容和斩波电阻的绕线式转子滑环感应发电机转子电路动力学建模
本文提出了一种新型转子电路中横跨二极管桥式整流器的外部二次自激电容和斩波电阻,用于控制三相绕线转子滑环感应发电机(WRSRIG)的电压和频率。与转子侧励磁电容有关的问题是在大范围内提高发电机性能所需的大励磁电容。在该方法中,在h桥逆变电路中使用动态激励电容,在转子电路中通过三相二极管桥式整流器与斩波电阻串联。改变h桥晶闸管元件和晶闸管斩波元件的占空比,动态模拟激励电容和转子外电阻值,并作为终端电压及其频率控制。动态激励电容用于控制终端电压,而动态外转子电阻用于控制发电机转速(频率)。为了研究WRSRIG的性能,本文建立了D-Q轴在参照系中同步旋转的动态模型。动态模型考虑了电机的所有参数,如定子和转子-铁芯损耗、定子和转子-杂散负载损耗、充磁电感的动态饱和、桥式整流器开关作用产生的转子谐波损耗、重叠现象引起的转子电路中的降电压以及转子外阻损耗等。新提出的WRSRIG等效电路将成为研究发电机性能特性的有效方法,并可作为矢量控制分析算法的合适工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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