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Shunt Active Power Filter for Harmonic and Reactive Current Compensation in Wind Conversion Systems

机译:用于风转换系统的谐波和反应电流补偿的分流器电力滤波器

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This paper presents an analysis of a shunt active power filter (SAPF) for harmonic and reactive current compensation. This filter is used in wind energy systems that uses a permanent magnet synchronous generator (PMSG). The system uses supply current measurements instead of load current measurements, therefore, harmonic and reactive current measurements are not required. This simplifies the control system. To keep the PMSG voltage constant, the system uses PMSG terminal voltage control, which regulates the PMSG magnetization. To synchronize the d-q current, the control system uses a new decoupled double synchronous reference frame phase-locked loop (DDSRF-PLL) that can operate under varying rotor frequencies. The DDSRF-PLL provides fast, precise, robust current detection, even under unbalanced and distorted voltages. Experimental results show the accuracy and validity of the proposed control scheme for the PMSG-SAPF system.
机译:本文介绍了对谐波和反应电流补偿的分流有源电力滤波器(SAPF)的分析。该过滤器用于风能系统,该系统使用永磁同步发电机(PMSG)。系统使用电源电流测量而不是负载电流测量,因此,不需要谐波和无功电流测量。这简化了控制系统。为了保持PMSG电压恒定,系统使用PMSG端子电压控制,该控制器调节PMSG磁化。为了使D-Q电流同步,控制系统使用新的分离的双同步参考帧锁相环(DDSRF-PLL),其可以在不同的转子频率下操作。 DDSRF-PLL即使在不平衡和扭曲的电压下也提供快速,精确,鲁棒电流检测。实验结果表明了PMSG-SAPF系统所提出的控制方案的准确性和有效性。

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