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D-STATCOM With Positive-Sequence Admittance and Negative-Sequence Conductance to Mitigate Voltage Fluctuations in High-Level Penetration of Distributed-Generation Systems

机译:具有正序导纳和负序电导的D-STATCOM可以缓解分布式发电系统高水平穿透中的电压波动

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摘要

Voltage fluctuations resulting from variable output power of renewable energy sources are strictly challenging power quality in distributed-generation systems. This paper presents a control method for distributed static synchronous compensator (D-STATCOM) to alleviate variation of both positive- and negative-sequence voltages. The D-STATCOM simultaneously operates as fundamental positive-sequence admittance and fundamental negative-sequence conductance to restore the positive-sequence voltage to the nominal value as well as reduce the negative-sequence voltage to an allowable level. Both admittance and conductance are dynamically tuned to improve voltage-regulation performances in response to load changes and power variation of renewable sources. A proportional–resonant current regulator with selectively harmonic compensation is realized to control the fundamental current of the D-STATCOM as well as reduce the harmonic current, which could be an advantage in practical applications due to high voltage distortion in low-voltage microgrids. Voltage-regulation performances are discussed for different D-STATCOM locations as well as different D-STATCOM currents. Computer simulations and laboratory tests validate effectiveness.
机译:由可再生能源的可变输出功率引起的电压波动严格挑战了分布式发电系统的电能质量。本文提出了一种分布式静态同步补偿器(D-STATCOM)的控制方法,以减轻正序电压和负序电压的变化。 D-STATCOM同时充当基本正序导纳和基本负序电导,以将正序电压恢复到标称值,并将负序电压降低到允许的水平。响应于负载变化和可再生资源的功率变化,动态调整导纳和电导,以改善电压调节性能。实现了具有选择性谐波补偿的比例谐振电流调节器,以控制D-STATCOM的基本电流并降低谐波电流,由于低压微电网中的高电压失真,这在实际应用中可能是一个优势。讨论了不同D-STATCOM位置以及不同D-STATCOM电流的电压调节性能。计算机模拟和实验室测试验证了有效性。

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