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Active harmonic filtering using current-controlled, grid-connected DG units with closed-loop power control

机译:使用电流控制,并网连接的DG单元和闭环功率控制的有源谐波滤波

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摘要

The increasing application of nonlinear loads may cause distribution system power quality issues. In order to utilize distributed generation (DG) unit interfacing converters to actively compensate harmonics, this paper proposes an enhanced current control approach, which seamlessly integrates system harmonic mitigation capabilities with the primary DG power generation function. As the proposed current controller has two well-decoupled control branches to independently control fundamental and harmonic DG currents, local nonlinear load harmonic current detection and distribution system harmonic voltage detection are not necessary for the proposed harmonic compensation method. Moreover, a closed-loop power control scheme is employed to directly derive the fundamental current reference without using any phase-locked loops (PLL). The proposed power control scheme effectively eliminates the impacts of steady-state fundamental current tracking errors in the DG units. Thus, an accurate power control is realized even when the harmonic compensation functions are activated. In addition, this paper also briefly discusses the performance of the proposed method when DG unit is connected to a grid with frequency deviation. Simulated and experimental results from a single-phase DG unit validate the correctness of the proposed methods.
机译:非线性负载的不断增加的应用可能会导致配电系统电能质量问题。为了利用分布式发电(DG)单元接口转换器来主动补偿谐波,本文提出了一种增强的电流控制方法,该方法将系统谐波抑制功能与主要DG发电功能无缝集成。由于所提出的电流控制器具有两个良好解耦的控制分支来独立控制基波和谐波DG电流,因此对于所提出的谐波补偿方法而言,不需要局部非线性负载谐波电流检测和配电系统谐波电压检测。此外,采用闭环功率控制方案可直接导出基本电流参考,而无需使用任何锁相环(PLL)。所提出的功率控制方案有效地消除了DG单元中稳态基本电流跟踪误差的影响。因此,即使当谐波补偿功能被激活时,也实现了精确的功率控制。此外,本文还简要讨论了将DG单元连接到具有频率偏差的电网时该方法的性能。单相DG装置的仿真和实验结果验证了所提出方法的正确性。

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