对DVR进行了优化控制,以补偿负载下低失真的长时间电压凹陷

Jun Tan, Xinchun Lin, Y. Duan, J. Qiu
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引用次数: 6

摘要

动态电压恢复器(DVR)的设计是为了保护敏感负荷免受配电馈线电压跌落的影响。DVR补偿长时间电压跌落的能力很大程度上取决于恢复器内存储的能量,这是非常昂贵的。为了降低DVR的价格,为了更好地利用存储的能量,采用了多种控制策略。不幸的是,传统的电压补偿策略仅仅是为了最小化所需的补偿电压,以从直流链路中提取更多的能量,或者降低DVR的输出有功功率,或者减少负载的畸变。为了结合传统控制策略的优点,避免其缺点,设计了一种优化控制策略,并通过MATLAB仿真进行了测试。该方法在不增加直流链路储能的前提下,显著提高了补偿时间,且具有较低的负载畸变
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized control for a DVR to compensate long duration voltage sag with low distortion at the load
The dynamic voltage restorer (DVR) is designed to protect sensitive loads from the effects of voltage sags on the distribution feeder. The capability of DVR in compensating long-duration voltage sags is largely depended on the amount of stored energy within the restorer which is very expensive. In order to reduce the price of DVR, many control strategies have been implemented to make better use of the stored energy. Unfortunately, the traditional voltage compensation strategies are merely designed to minimize the needed compensation voltage to extract more energy from the DC-link or to decrease the output active power of DVR or to reduce the distortions at the load. To combine the advantages and avoid the drawbacks of the traditional strategies, an optimized control strategy has been designed and tested by MATLAB simulation. The new strategy can dramatically increase the compensation time with low distortion at the load and without enlarging the energy storage of the DC-link
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