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Optimisation-based strategy for shunt active power filter control under non-ideal supply voltages

机译:在非理想电源电压下基于优化的并联有源滤波器控制策略

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摘要

A new theory and a conceptual design for the three-phase shunt active power filter (APF) control strategy under imbalanced and distorted supply voltages are presented. Conventionally, the compensation currents injected by the APF are determined according to reference frame transformation-based approaches, where the load instantaneous real and reactive powers are calculated in the new reference frame. The APF injection currents are then computed to maintain the balanced and sinusoidal source currents, as well as the least active power consumption by the APF. However, if current harmonics set by harmonic standards or other constraints are considered, the load harmonic currents after APF compensation can be controlled to meet the requirements. Therefore, the APF may have an adjustable performance. An optimal algorithm for the APF control in steady state is proposed, in which the individual and total harmonic current distortion limits, the minimum load power factor, levels of current imbalance and the size of the APF can be taken into account. The planned APF does not consume or produce active power and only the passive energy-storage elements are required in the new APF design. Results obtained by simulations with Matlab and Simulink show that the proposed approach is more flexible than conventional approaches for compensating reactive power and harmoniceutral currents of the load, even if the source voltages are severely distorted and imbalanced. The new control strategy is very suitable for planning the APF when several alternative objective functions and constraints are under considerations.
机译:提出了在电源电压不平衡和失真的情况下三相并联有源电力滤波器(APF)控制策略的新理论和概念设计。常规上,APF注入的补偿电流是根据基于参考框架变换的方法确定的,其中在新的参考框架中计算负载瞬时有功功率和无功功率。然后计算APF注入电流,以保持平衡的和正弦波的源电流,以及APF的最小有功功率消耗。但是,如果考虑由谐波标准或其他约束条件设置的电流谐波,则可以控制APF补偿后的负载谐波电流以满足要求。因此,APF可能具有可调节的性能。提出了一种用于APF稳态控制的最优算法,该算法考虑了单个谐波电流畸变和总谐波电流畸变极限,最小负载功率因数,电流不平衡水平以及APF的大小。计划的APF不会消耗或产生有功功率,而新APF设计中仅需要无源储能元件。通过Matlab和Simulink仿真获得的结果表明,即使电源电压严重失真和失衡,所提出的方法也比常规方法更灵活,可以补偿负载的无功功率和谐波/中性电流。当考虑其他一些目标功能和约束条件时,新的控制策略非常适合规划APF。

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