D-STATCOM based Voltage Compensator for a new Micro Hydro Power Generation Scheme Supplying Remote Areas

P. Singh, S. Gao
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引用次数: 1

Abstract

This paper presents a new micro hydro power generation scheme using capacitor excited asynchronous generator and back to back converter. The scheme also considers variable turbine which rotates the generator at variable speed to generate variable AC voltage. The use of AC-DC-AC converter helps to convert the variable AC to DC and then to constant AC voltage and frequency. The design of control algorithms of the converter is based on the decoupled d-q control theory. The performance of the proposed scheme is analysed under resistive and inductive loads. The proposed model also has a D-STATCOM for regulating the output voltage at constant peak voltage during loading. The control principle of the D-STATCOM is based on a modified SRF theory and it has the ability to compensate unbalanced load current and load harmonics apart from regulating load voltage. The simulation is carried out with the help of MATLAB/Simulink and the power quality issues are also studied. The results show satisfactory performance of the proposed scheme.
基于D-STATCOM的偏远地区微型水力发电电压补偿器
提出了一种采用电容励磁异步发电机和背靠背变换器的微型水力发电新方案。该方案还考虑了可变涡轮,使发电机以变速旋转产生可变交流电压。使用AC-DC-AC变换器有助于将可变的交流转换为直流,然后转换为恒定的交流电压和频率。变换器的控制算法设计基于解耦的d-q控制理论。分析了该方案在电阻性和感性负载下的性能。该模型还具有一个D-STATCOM,用于在加载过程中以恒定峰值电压调节输出电压。D-STATCOM的控制原理基于改进的SRF理论,除了调节负载电压外,还具有补偿负载不平衡电流和负载谐波的能力。利用MATLAB/Simulink进行了仿真,并对电能质量问题进行了研究。结果表明,该方案具有良好的性能。
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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