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Performance improvement of a three-phase phase-locked-loop algorithm under utility voltage disturbances using non-autonomous adaptive filters

机译:非自治自适应滤波器在市电电压干扰下三相锁相环算法的性能改进

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摘要

This study proposes phase-locked-loop (PLL) algorithms, which are employed to improve the performance related to the estimation of the phase angle, as well as the frequency, in three-phase systems under utility voltage disturbances. The proposed PLL schemes are based on the three-phase instantaneous active power (3pPLL), which is composed of non-autonomous adaptive filters (AFs) operating in conjunction with a positive-sequence detectors (PSDs), yielding the AF-PSD-3pPLL algorithms operating in both three-phase (-axis) and two-phase (-axis) stationary reference frames. The AFs are used to extract the fundamental components of the utility voltages, allowing an adequate rejection of harmonic disturbances, whereas the PSDs at fundamental utility frequency are employed for rejecting the power quality problem related to the utility unbalances. A complete stability analysis of the PLL systems is carried out. In addition, to validate the theoretical development, the dynamic response and the robustness of the proposed AF-PSD-3pPLL schemes are evaluated by means of simulation and experimental tests, taking into account utility disturbances, such as voltage harmonics and unbalances, voltage sags, phase-angle jumps and frequency variations. The effectiveness of the proposed PLL schemes are emphasised by means of a comparative analysis with the conventional 3pPLL algorithm.
机译:这项研究提出了一种锁相环(PLL)算法,该算法用于改善在公用事业电压扰动下的三相系统中与相角以及频率估计相关的性能。所提出的PLL方案基于三相瞬时有功功率(3pPLL),该三相瞬时有功功率由与正序检测器(PSD)结合运行的非自治自适应滤波器(AF)组成,从而产生AF-PSD-3pPLL在三相(轴)和两相(轴)固定参考系中运行的算法。 AF用于提取公用电压的基本分量,从而可以充分抑制谐波干扰,而在基本公用频率上的PSD用于排除与公用电源不平衡相关的电能质量问题。对PLL系统进行了完整的稳定性分析。此外,为了验证理论上的发展,通过模拟和实验测试对拟议的AF-PSD-3pPLL方案的动态响应和鲁棒性进行了评估,并考虑了实用干扰,例如电压谐波和不平衡,电压骤降,相位角跳变和频率变化。通过与常规3pPLL算法的比较分析,强调了所提出的PLL方案的有效性。

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