Second order generalized integrator based synchronization technique for polluted grid conditions

B. Misra, B. Nayak
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引用次数: 11

Abstract

Grid synchronization algorithms are of great importance in the control of grid-connected power converters, as fast and accurate detection of the grid voltage parameters is crucial in order to implement stable control strategies under generic grid conditions. This paper presents a new grid synchronization method for three-phase three-wire networks, namely dual second-order generalized integrator (SOGI) frequency-locked loop. The method is based on two adaptive filters, implemented by using a SOGI on the stationary αβ reference frame, and it is able to perform an excellent estimation of the instantaneous symmetrical components of the grid voltage under unbalanced and distorted grid conditions. This paper analyzes the performance of the proposed synchronization method including different design issues. Moreover, the behavior of the method for synchronizing with highly unbalanced grid is proven by means of simulation and experimental results, demonstrating its excellent performance.
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基于二阶广义积分器的污染网格同步技术
电网同步算法在并网变流器的控制中具有重要意义,快速准确地检测电网电压参数对于实现一般电网条件下的稳定控制策略至关重要。提出了一种新的三相三线电网同步方法,即双二阶广义积分器锁频环。该方法基于两个自适应滤波器,在稳定的αβ参考框架上使用SOGI实现,能够在不平衡和扭曲的电网条件下对电网电压的瞬时对称分量进行很好的估计。本文分析了所提出的同步方法的性能,包括不同的设计问题。通过仿真和实验验证了该方法与高度不平衡电网同步的性能,证明了该方法的优良性能。
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