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Benchmarking of Phase Locked Loop based Synchronization Techniques for Grid-Connected Inverter Systems

机译:基于锁相环的并网逆变器系统同步技术基准

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摘要

Grid-connected renewables are increasingly developed in recent years, e.g. wind turbine systems and photovoltaic systems. Synchronization of the injected current with the grid is mandatory. However, grid disturbances like voltage sags, harmonics, and frequency deviations may occur during operation, becoming inevitable challenges to the synchronization of the grid-connected renewable energy systems. In order to ensure the quality of the power generation from the renewables, robust and reliable synchronization methods are in demand. Among the prior-art solutions, Phase Locked Loop (PLL) based synchronization methods have gained much popularity in grid-connected applications. However, an appropriate selection and thus a proper design of the selected PLL synchronization remain of interest in practice, especially for single-phase systems. Therefore, in this paper, a benchmarking of the main PLL synchronization methods for single-phase grid-connected inverter systems in terms of accuracy, dynamic response, harmonic immunity, etc., has been conducted. Experiments on a 1-kW single-phase grid-connected system, suffering from different grid disturbances, are performed for the benchmarking. The experimental results have verified the discussions.
机译:近年来,并网可再生能源得到了越来越多的发展。风力涡轮机系统和光伏系统。注入电流与电网的同步是强制性的。但是,在运行过程中可能会发生诸如电压骤降,谐波和频率偏差之类的电网干扰,这成为并网可再生能源系统同步的必然挑战。为了确保可再生能源发电的质量,需要鲁棒且可靠的同步方法。在现有技术的解决方案中,基于锁相环(PLL)的同步方法在并网应用中获得了很大的普及。然而,在实践中,尤其是对于单相系统,合适的选择以及所选择的PLL同步的正确设计仍然值得关注。因此,本文在准确性,动态响应,谐波抗扰度等方面对单相并网逆变器系统的主要PLL同步方法进行了基准测试。为进行基准测试,对遭受不同电网干扰的1kW单相并网系统进行了实验。实验结果验证了讨论。

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