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Performance Analysis of Adaptive Filters based on Robust Second Order Generalized Integrator under Adverse Grid Condition

机译:逆网格条件下基于鲁棒二阶广义积分器的自适应滤波器性能分析

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With increase in penetration of the distributed power generation systems into the grid, the grid voltage becomes highly distorted and unbalanced. In this situation designing a phase lock loop (PLL) is a challenge to estimate the phase, frequency and amplitude of the utility voltage. This paper presents a filtering technique based on adaptive filter called second order generalized integrator (SOGI). Under transient fault condition when the three phase grid signal is highly polluted with harmonics and sudden frequency change or voltage dip occurs, it is a critical task to extract the fundamental component of the grid signal. In this paper, for extraction of the fundamental component from the polluted grid signal, two adaptive filters using SOGI are implemented in the stationary reference frame. To analyse the disturbance rejection capability of the SOGI filter different short period disturbances has been introduced in the three phase grid signal and the robustness is evaluated on the basis of its transient response and harmonic analysis. The simulation result validates the excellent performance of the filter.
机译:随着分布式发电系统渗透到电网中的增加,电网电压变得高度失真且不平衡。在这种情况下,设计锁相环(PLL)是估算市电电压的相位,频率和幅度的挑战。本文提出了一种基于自适应滤波器的滤波技术,称为二阶广义积分器(SOGI)。在瞬态故障条件下,当三相电网信号被谐波严重污染并且出现突然的频率变化或电压骤降时,提取电网信号的基本成分是一项至关重要的任务。在本文中,为了从污染的网格信号中提取基本成分,在固定参考系中实现了两个使用SOGI的自适应滤波器。为了分析SOGI滤波器的抗干扰能力,在三相电网信号中引入了不同的短周期干扰,并基于其瞬态响应和谐波分析对鲁棒性进行了评估。仿真结果验证了滤波器的出色性能。

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