New Adaptive Scheme for Dynamic Voltage Restorer to Voltage Sag Compensation and Flexible Self-recovery

Chunming Tu, Qi Guo, Yong Sun, Fan Xiao, Fei Jiang
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引用次数: 1

Abstract

In this paper, a systematic adaptive control scheme to improve the voltage quality of sensitive loads using dynamic voltage restorer is proposed. The existing control strategies either emphasis on the optimal control during steady operation stage of compensation, or corrects the phase jump in the initial stage of compensation. Considering the few attention to the voltage phase jump on the load side after voltage fluctuation removal and the draw-back of existing energy self-recovery strategy, based on the main objective that improving the overall sag compensation time while corrects the phase jump, and accelerating the self-recovery of dc side voltage, in this paper, 1) The minimum active power of voltage compensation, and maximum active power of energy absorption strategies are adopted to the voltage compensation and self-recovery stages, respectively. 2) The proposed approach aims at completing the smooth transition of the transient process during the both stage, which ensuring the flexible switching from former to the latter.
动态电压恢复器电压暂降补偿和柔性自恢复的自适应新方案
本文提出了一种利用动态电压恢复器改善敏感负载电压质量的系统自适应控制方案。现有的控制策略或侧重于补偿稳定运行阶段的最优控制,或纠正补偿初始阶段的相位跳变。考虑到电压波动去除后对负荷侧电压相位跳变的关注较少,以及现有能量自恢复策略的不足,本文以提高总体暂降补偿时间同时校正相位跳变,加速直流侧电压自恢复为主要目标,1)电压补偿的最小有功功率;电压补偿和自恢复阶段分别采用最大有功能量吸收策略。2)本文提出的方法旨在完成两个阶段暂态过程的平稳过渡,保证从前者到后者的灵活切换。
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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