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首页> 外文期刊>Generation, Transmission & Distribution, IET >Analysis and control of capacitor-excited induction generators connected to a micro-grid through power electronic converters
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Analysis and control of capacitor-excited induction generators connected to a micro-grid through power electronic converters

机译:通过电力电子转换器连接到微电网的电容器励磁感应发电机的分析和控制

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摘要

A system consisting of a capacitor-excited induction generator (CEIG) with associated power electronic converters has been developed for supplying power to a micro-grid. The power fed to the grid from the CEIG is controlled using a diode bridge rectifier (DBR) and a pulse width modulated (PWM) inverter, connected between the generator terminals and the grid. A simple analog based hysteresis current control (HCC) technique has been employed in which the current control of the PWM inverter alone needs to be carried out by sensing the current and voltage at the grid terminals. The successful working of the system has been demonstrated for three different patterns of feeding power to a micro-grid, by experiments conducted on a three-phase 230 V, 3.7 kW CEIG, with a 100 µF delta connected excitation capacitor bank and employing the controllers fabricated in the laboratory. The grid power is represented as an equivalent load resistance in the steady-state equivalent circuit of the CEIG and the technique of genetic algorithm (GA) has been adopted for the analysis of the proposed system. The predetermined performance characteristics of the system and the results of Matlab/Simulink simulation studies have also been presented.
机译:已经开发了一种由电容器励磁感应发电机(CEIG)和相关的电力电子转换器组成的系统,用于向微电网供电。通过使用连接在发电机端子和电网之间的二极管桥式整流器(DBR)和脉宽调制(PWM)逆变器,控制从CEIG馈入电网的功率。已经采用了一种简单的基于模拟的磁滞电流控制(HCC)技术,其中仅需要通过感测电网端子上的电流和电压来执行PWM逆变器的电流控制。通过在三相230 V,3.7 kW CEIG,100 µF三角形连接的励磁电容器组和控制器上进行的实验,证明了该系统成功工作的三种不同模式的微电网。在实验室制造的。在CEIG的稳态等效电路中,电网功率表示为等效负载电阻,并且采用遗传算法(GA)技术对所提出的系统进行分析。还介绍了系统的预定性能特征以及Matlab / Simulink仿真研究的结果。

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