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Analysis of phase error effects between virtual two-phase voltages in SRF-PLL based on APF

机译:基于APF的SRF-PLL中虚拟两相电压之间的相位误差影响分析

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In single-phase grid-connected inverters, precise and fast detection of the phase angle is essential to guarantee the correct generation of the reference signals. In order to detect the phase angle, SRF-PLL system has been widely used in the grid-connected inverter. However, in contrast with three-phase grid-connected inverter system, single-phase grid-connected inverters are difficult to acquire the information of phase angle and frequency. Hence, using an all-pass filter can make a virtual grid voltage, which is shifted 90-degree from the grid voltage. However, the phase error can be generated due to the characteristics of all-pass filter when the grid frequency is varying. In this paper, the effects of output current and synchronous dq-axis voltages due to the phase error caused by non-ideal all-pass filter are analyzed in detail. The effectiveness of the proposed algorithm is verified through simulation and experiment results.
机译:在单相并网逆变器中,精确和快速检测相角对于确保正确生成参考信号至关重要。为了检测相角,SRF-PLL系统已广泛应用于并网逆变器中。但是,与三相并网逆变器系统相比,单相并网逆变器难以获取相角和频率信息。因此,使用全通滤波器可以使虚拟电网电压与电网电压相差90度。但是,当电网频率变化时,由于全通滤波器的特性会产生相位误差。本文详细分析了非理想全通滤波器引起的相位误差对输出电流和同步dq轴电压的影响。仿真和实验结果验证了所提算法的有效性。

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