Implementation of a Three-Phase Switched Reluctance Generator System for Wind Power Applications

H. Chen
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引用次数: 30

Abstract

The paper presents a developed switched reluctance wind power generator system. The block diagram and the elements of the system, such as generator, rotor position detector, excitation power converter and controller are described. The transient phase current analysis and the energy analysis of the switched reluctance generator are evaluated. The rotor position and the peak value of the phase current at three different conditions are given. The closed-loop output power control of the switched reluctance wind power generator system implemented by regulating the turn-on angle of the main switches with fuzzy logic algorithm and fixed turn-off angle of the main switches at a precisely optimized value is presented. There are two input control parameters in the fuzzy logic algorithm, namely the deviation of the average DC output current and the variation of the deviation of the average DC output current. The output control parameter of the fuzzy logic algorithm is the increment of the turn-on angle of the main switches. The photographs of the developed 500 W prototype are also given. The tested results show that the error of the closed-loop output power control is within 2.2%, while the rotor speed range is close to the ratio of 1 to 3 with the low rotor speed 405 r/min.
风力发电用三相开关磁阻发电机系统的实现
本文介绍了一种研制成功的开关磁阻风力发电系统。给出了系统的框图和主要组成部分,如发电机、转子位置检测器、励磁功率变换器和控制器。对开关磁阻发电机进行了暂态相电流分析和能量分析。给出了三种不同工况下的转子位置和相电流峰值。提出了用模糊逻辑算法调节主开关导通角,将主开关关断角固定在精确优化值上,实现开关磁阻风力发电系统输出功率闭环控制的方法。在模糊逻辑算法中有两个输入控制参数,即直流平均输出电流的偏差和直流平均输出电流的偏差的变化。模糊逻辑算法的输出控制参数为主开关导通角的增量。并给出了研制的500w原型机的照片。试验结果表明,闭环输出功率控制误差在2.2%以内,低速405 r/min时转子转速范围接近1比3。
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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