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Comparison of two compensation control strategies for shunt active power filter in three-phase four-wire system

机译:三相四线制并联有源滤波器的两种补偿控制策略比较

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Due to a large amount of non-linear power electronic equipments, impact and fluctuating loads (such as that of arc furnace, heavy merchant mill and electric locomotive, etc), problems of power quality have become more and more serious with each passing day, as a result Active power filter (APF) gains much more attention due to excellent harmonic compensation. But still the performance of the active filter seems to be in contradictions with different control strategies. This paper presents detailed analysis to compare and elevate the performance of two control strategies for extracting reference currents of shunt active filters under distorted and unbalanced conditions. The well known methods, instantaneous real active and reactive power method (p-q) and active and reactive current method (id−iq) are two control methods which are extensively used in active filters. On owing id − iq method gives away an outstanding performance under any voltage conditions (balanced, un-balanced, balanced non-sinusoidal and balanced sinusoidal with different main frequencies). Extensive simulations were carried out; simulation results validate the superior performance of active and reactive method (id − iq).
机译:由于大量的非线性电力电子设备,冲击负荷和波动负荷(例如电弧炉,重型轧机和电力机车等),电能质量的问题日趋严重,结果,由于出色的谐波补偿,有源功率滤波器(APF)获得了更多关注。但是有源滤波器的性能似乎仍然与不同的控制策略相矛盾。本文提出了详细的分析,以比较和提高在失真和不平衡条件下提取并联有源滤波器参考电流的两种控制策略的性能。众所周知的方法有两种,即瞬时有功和无功功率瞬时法(pq)和有功和无功电流方法(i d -i q )。在主动过滤器中。由于i d -i q 方法在任何电压条件下(具有不同主频率的平衡,不平衡,平衡非正弦和平衡正弦)都具有出色的性能。进行了广泛的模拟。仿真结果验证了主动和被动方法(i d -i q )的优越性能。

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