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A Novel Repetitive Controller Assisted Phase-Locked Loop with Self-Learning Disturbance Rejection Capability for Three-Phase Grids

机译:一种新型重复控制器辅助锁相环,具有三相网格的自学习扰动能力

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摘要

The synchronization between the power grid and distributed power sources is a crucial issue in the concept of smart grids. For tracking the real-time frequency and phase of three-phase grids, phase-locked loop (PLL) technology is commonly used. Many existing PLLs with enhanced disturbance/harmonic rejection capabilities, either fail to maintain fast response or are not adaptive to grid frequency variations or have high computational complexity. This article, therefore, proposes a low computational burden repetitive controller (RC) assisted PLL (RCA-PLL) that is not only effective on harmonic rejection but also has remarkable steady-state performance while maintaining fast dynamic. Moreover, the proposed PLL is adaptive to variable frequency conditions and can self-learn the harmonics to be canceled. The disturbance/harmonic rejection capabilities together with dynamic and steady-state performances of the RCA-PLL have been highlighted in this article. The proposed approach is also experimentally compared to the synchronous rotation frame PLL (SRF-PLL) and the steady-state linear Kalman filter PLL (SSLKF-PLL), considering the effect of harmonics from the grid-connected converters, unbalances, sensor scaling errors, dc offsets, grid frequency variations, and phase jumps. The computational burden of the RCA-PLL is also minimized, achieving an experimental execution time of only 12 mu s.
机译:电网和分布式电源之间的同步是智能电网概念中的一个至关重要的问题。为了跟踪三相网格的实时频率和相位,常用锁相环(PLL)技术。许多具有增强障碍/谐波抑制能力的现有PLL,无论是不保持快速响应还是没有适应网格频率变化或具有高计算复杂性。因此,本文提出了低计算负担重复控制器(RC)辅助PLL(RCA-PLL),该辅助PLL(RCA-PLL)不仅有效地对谐波抑制有效,而且在保持快速动态的同时具有显着的稳态性能。此外,所提出的PLL适用于可变频率条件,可以自学习被取消的谐波。本文突出了干扰/谐波抑制能力以及RCA-PLL的动态和稳态性能。所提出的方法也与同步旋转框架PLL(SRF-PLL)和稳态线性Kalman滤波器PLL(SSLKF-PLL)进行了实验,考虑到谐波从网格连接的转换器,不平衡,传感器缩放误差效果,DC偏移,电网频率变化和相位跳跃。 RCA-PLL的计算负担也被最小化,实现了仅12亩的实验执行时间。

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