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A novel synchronization scheme for grid-connected converters by using adaptive linear optimal filter based PLL (ALOF-PLL)

机译:通过使用基于自适应线性最优滤波器的PLL(ALOF-PLL)的并网转换器的新型同步方案

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摘要

This paper proposes a novel grid synchronization scheme using a new phase-locked loop (PLL) scheme based on the adaptive linear optimal filtering (ALOF) technique. The problem formulation of the proposed ALOF is based on decomposing grid voltage signal into inner product of two vectors, namely, the vector of trigonometric functions and the vector of coefficients, corresponding to the input vector and the weight vector of the closed-loop adaptation algorithm by using least-mean-square (LMS) optimization algorithm. The coefficient of the fundamental component of the grid voltage is used as input signal for the PLL and the phase angles of the trigonometric functions are obtained from the output of the PLL recursively. The mathematical derivation of the weights updating law and the stability analysis of the ALOF-PLL are presented. Besides, the parameter selection for optimal performance is also discussed in terms of continuous domain (s-domain) analysis, discrete domain (z-domain) analysis and time domain simulations. The proposed ALOF-PLL shows the characteristic of band-pass filter at fundamental frequency and a notch filter at the harmonic frequencies. Finally, a detailed comparison with the existing single-phase and three-phase grid synchronization methods is also presented, and the proposed ALOF-PLL is found to have overwhelming advantages over the existing grid synchronization methods in terms of tracking accuracy, dynamic response and immunity to grid voltage disturbances, such as voltage sag/swell, phase-angle jump, harmonics, unbalance, random noises and frequency jump, etc. The validity and effectiveness of the ALOF-PLL is substantially confirmed by the extensive simulation results obtained from Matlab/Simulink.
机译:本文基于自适应线性最优滤波(ALOF)技术,提出了一种使用新型锁相环(PLL)方案的电网同步方案。提出的ALOF的问题公式是基于将电网电压信号分解为两个向量的内积,即三角函数向量和系数向量,分别对应于闭环自适应算法的输入向量和权重向量。通过使用最小均方(LMS)优化算法。电网电压的基本分量的系数用作PLL的输入信号,并且从PLL的输出递归获得三角函数的相角。给出了权重更新规律的数学推导和ALOF-PLL的稳定性分析。此外,还从连续域(s域)分析,离散域(z域)分析和时域仿真方面讨论了用于优化性能的参数选择。提出的ALOF-PLL在基频处显示带通滤波器的特性,在谐波频率处显示陷波滤波器的特性。最后,与现有的单相和三相电网同步方法进行了详细的比较,发现所提出的ALOF-PLL在跟踪精度,动态响应和抗扰性方面比现有的电网同步方法具有压倒性的优势。对电网电压的干扰,例如电压骤降/骤升,相角跳变,谐波,不平衡,随机噪声和频率跳变等。ALOF-PLL的有效性和有效性在Matlab / Simulink。

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