Improvement of DSOGI PLL Synchronization Algorithm with Filter on Three-Phase Grid-connected Photovoltaic System

R. Izah, S. Subiyanto, D. Prastiyanto
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引用次数: 6

Abstract

Synchronous Reference Frame Phase Locked Loop (SRF PLL) has been widely used for synchronization three-phase grid-connected photovoltaic (PV) system. On the grid fault, SRF PLL distorted by negative sequence component and grid harmonic that caused an error in estimating parameter because of ripple and oscillation. This work combined SRF PLL with Dual Second Order Generalized Integrator (DSOGI) and filter to minimize ripple and minimize oscillation in the phase estimation and frequency estimation. DSOGI was used for filtering and obtaining the 90o shifted versions from the vαβ signals. These signals (vαβ) were generated from three phase grid voltage signal using Clarke transform. The vαβ signal was the inputs to the positive-sequence calculator (PSC). The positive-sequence vαβ was transformed to the dq synchronous reference frame and became an input to SRF-PLL to create the estimation frequency. This estimation frequency from SRF PLL was filtered by the low-pass filter to decrease grid harmonic. Moreover, the output of low-pass filter was a frequency adaptive. The performance of DSOGI PLL with filter is compared with DSOGI PLL, SRF PLL, and IEEE standard 1547(TM)-2003. The improvement of DSOGI PLL with filter gave better performances than DSOGI PLL and SRF PLLbecause it minimized ripples and oscillations in the phase and frequency estimations.
带滤波器的三相光伏并网系统DSOGI锁相环同步算法改进
同步参考框架锁相环(SRF-PLL)已广泛用于同步三相并网光伏系统。在电网故障中,SRF PLL由于负序分量和电网谐波的影响而失真,导致纹波和振荡导致参数估计误差。该工作将SRF PLL与双二阶广义积分器(DSOGI)和滤波器相结合,以最小化相位估计和频率估计中的纹波和振荡。DSOGI用于对vαβ信号进行滤波并获得90o偏移版本。这些信号(vαβ)是使用克拉克变换从三相电网电压信号生成的。vαβ信号是正序列计算器(PSC)的输入。正序列vαβ被转换为dq同步参考系,并成为SRF-PLL的输入,以创建估计频率。通过低通滤波器对来自SRF PLL的该估计频率进行滤波以降低电网谐波。此外,低通滤波器的输出是频率自适应的。将DSOGI带滤波器PLL的性能与DSOGI PLL、SRF PLL和IEEE标准1547(TM)-2003进行了比较。带滤波器的DSOGI PLL的改进比DSOGI和SRF PLL具有更好的性能,因为它最小化了相位和频率估计中的纹波和振荡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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