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A Phase-Angle Estimation Method for Synchronization of Grid-Connected Power-Electronic Converters

机译:并网功率电子变换器同步的相角估计方法

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摘要

This paper proposes a positive-sequence phase-angle estimation method based on discrete Fourier transform for the synchronization of three-phase power-electronic converters under distorted and variable-frequency conditions. The proposed method is designed based on a fixed sampling rate and, thus, it can simply be employed for control applications. First, analytical analysis is presented to determine the errors associated with the phasor estimation using standard discrete Fourier transform in a variable-frequency environment. Then, a robust phase-angle estimation technique is proposed, which is based on a combination of estimated positive and negative sequences, tracked frequency, and two proposed compensation coefficients. The proposed method has one cycle transient response and is immune to harmonics, noises, voltage imbalances, and grid frequency variations. An effective approximation technique is proposed to simplify the computation of the compensation coefficients. The effectiveness of the proposed method is verified through a comprehensive set of simulations in Matlab software. Simulation results show the robust and accurate performance of the proposed method in various abnormal operating conditions.
机译:本文提出了一种基于离散傅里叶变换的正序相角估计方法,用于三相电力电子变换器在畸变和变频条件下的同步。所提出的方法是基于固定采样率设计的,因此可以简单地用于控制应用。首先,提出了分析分析,以确定在可变频率环境中使用标准离散傅里叶变换来确定与相量估计有关的误差。然后,提出了一种鲁棒的相位角估计技术,该技术基于估计的正负序列,跟踪频率和两个建议的补偿系数的组合。所提出的方法具有一个周期的瞬态响应,并且不受谐波,噪声,电压不平衡和电网频率变化的影响。为了简化补偿系数的计算,提出了一种有效的近似技术。通过在Matlab软件中进行的一组全面的仿真,验证了该方法的有效性。仿真结果表明,该方法在各种异常工况下均具有鲁棒性和精确性。

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