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A novel digital phase-locked loop for distributed grid-connected power generation systems under unbalanced and distorted utility conditions

机译:在不平衡和失真的工况下用于分布式并网发电系统的新型数字锁相环

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The unitary power factor control for distributed grid-connected power generation systems is considered in this paper, i.e., the fundamental-frequency positive-sequence components are extracted from the utility voltages under unbalanced and distorted conditions and output currents of the grid-connected power inverter are always in phase with the corresponding positive-sequence voltages. The extracted method of α-axis fundamental-frequency positive-sequence component in α -βstationary frame based on the finite impulse response (FIR) filter is presented. The imaginative component with leading 90° phase shift based on an all-pass filter instead of the existing β-axis positive-sequence component is designed in order to reduce the calculating burden of DSP, therefore, the phase-locked loop (PLL) is carried out by the imaginative two-phase transformation. The experimental results verify the proposed method has the better performance such as good PLL control and unitary power factor.
机译:本文考虑了分布式发电系统的单位功率因数控制,即在不平衡和畸变的情况下,从市电电压中提取基频正序分量,并从逆变器的输出电流中提取出基频正序分量。总是与相应的正序电压同相。提出了基于有限冲激响应(FIR)滤波器的α-β平稳帧中α轴基频正序分量的提取方法。为了减轻DSP的计算负担,设计了一种基于全通滤波器的具有超前90°相移的想象分量,而不是现有的β轴正序分量,因此设计了锁相环(PLL)。通过富有想象力的两相转换进行。实验结果证明,该方法具有较好的PLL控制和单位功率因数等性能。

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