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Fixed-Reference-Frame Phase-Locked Loop for Grid Synchronization Under Unbalanced Operation

机译:不平衡操作下用于电网同步的固定参考帧锁相环

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摘要

This paper presents a grid synchronization scheme aimed to provide an estimation of the angular frequency and both the positive and negative sequences of the fundamental component of an unbalanced three-phase signal. These sequences are provided in fixed-reference-frame coordinates, and thus, the proposed algorithm is referred to as fixed-reference-frame phase-locked loop (PLL) (FRF-PLL). In fact, the FRF-PLL does not require transformation of variables into the synchronous frame coordinates as in most PLL schemes. Therefore, the proposed scheme is not based on the phase angle detection. Instead, the angular frequency is detected and used for synchronization purposes. The design of the FRF-PLL is based on a complete description of the source voltage involving both positive and negative sequences in stationary coordinates and considering the angular frequency as an uncertain parameter. Therefore, the FRF-PLL is intended to perform properly under severe unbalanced conditions and to be robust against angular frequency variations, sags, and swells in the three-phase utility voltage signal. Due to the selective nature of the scheme, it shows certain capability to alleviate the effect of harmonic distortion that is present in the utility voltage signal.
机译:本文提出了一种电网同步方案,旨在提供对不平衡三相信号的角频率以及基本分量的正序和负序的估计。这些序列以固定参考帧坐标提供,因此,所提出的算法称为固定参考帧锁相环(PLL)(FRF-PLL)。实际上,与大多数PLL方案一样,FRF-PLL不需要将变量转换为同步帧坐标。因此,所提出的方案不是基于相角检测的。而是检测角频率并将其用于同步目的。 FRF-PLL的设计基于对电源电压的完整描述,该电压涉及固定坐标中的正序和负序,并将角频率视为不确定参数。因此,FRF-PLL旨在在严重的不平衡条件下正常运行,并且对于三相公用电压信号中的角频率变化,骤​​降和骤升具有鲁棒性。由于该方案的选择性性质,它显示出一定的能力来缓解市电电压信号中存在的谐波失真的影响。

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