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Control strategy of DVR with a positive and negative sequence extraction method

机译:正负序列提取方法控制DVR的策略

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This paper presents a new compensation strategy based on instantaneous reactive power theory which can be used in the Dynamic Voltage Restorer (DVR). This strategy uses multiple DQ transformation with separation modules to extract the positive and negative sequence components from fundamental and harmonic waves, so as to analyze and adjust each component separately. As a result of this new strategy, the dynamic response and the tracking accuracy are improved and the fluctuations of DQ components are decayed. To verify its effectiveness, a cascade DVR simulation model has been built in MATLAB/SINMULINK and a series of simulations have been carried out. The results of transient and steady state show that the DVR is competent to make a better compensation with this new strategy in the case of complex conditions such as sags, harmonics and unbalances. The control strategy is tested by a 10kV/500kVA voltage drop generator test rig, and the experimental results validate that the strategy can provide improved dynamic response and high accuracy in both dynamic and steady states. The strategy has tremendous engineering applications.
机译:本文提出了一种基于瞬时无功功率理论的新型补偿策略,该策略可用于动态电压恢复器(DVR)。该策略使用带有分离模块的多个DQ变换从基波和谐波中提取正序和负序分量,从而分别分析和调整每个分量。这种新策略的结果是,动态响应和跟踪精度得到了改善,并且DQ分量的波动得到了缓解。为了验证其有效性,已在MATLAB / SINMULINK中建立了一个级联DVR仿真模型,并进行了一系列仿真。瞬态和稳态的结果表明,在复杂的情况下,例如下垂,谐波和不平衡情况下,DVR可以使用这种新策略更好地进行补偿。该控制策略在10kV / 500kVA压降发生器测试装置上进行了测试,实验结果验证了该策略可以在动态和稳态下提供改进的动态响应和高精度。该策略具有大量的工程应用。

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