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Enhancing the Frequency Adaptability of Periodic Current Controllers With a Fixed Sampling Rate for Grid-Connected Power Converters

机译:以固定采样率提高并网功率转换器的周期电流控制器的频率适应性

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摘要

Grid-connected power converters should employ advanced current controllers, e.g., proportional resonant (PR) and repetitive controllers (RC), in order to produce high-quality feed-in currents that are required to be synchronized with the grid voltage. The synchronization is actually to detect the instantaneous grid information (e.g., frequency and phase of the grid voltage) for the current control, which is commonly performed by a phase-locked loop (PLL) system. Hence, harmonics and deviations in the estimated frequency by the PLL could lead to current tracking performance degradation, especially for the periodic signal controllers (e.g., PR and RC) with a fixed sampling rate. In this paper, the impacts of frequency deviations induced by the PLL and/or the grid disturbances on the selected current controllers are investigated by analyzing the frequency adaptability of these current controllers. Subsequently, strategies to enhance the frequency adaptability of the current controllers are proposed for the power converters to produce high-quality feed-in currents even in the presence of grid frequency deviations. Specifically, by feeding back the PLL estimated frequency to update the center frequencies of the resonant controllers and by approximating the fractional delay using a Lagrange interpolating polynomial for the RC, respectively, the frequency-variation-immunity of these periodic current controllers with a fixed sampling rate is improved. Experiments on a single-phase grid-connected system are presented, which have verified the discussions and the effectiveness of the frequency adaptive current controllers.
机译:并网电源转换器应采用先进的电流控制器,例如比例谐振(PR)和重复控制器(RC),以产生需要与电网电压同步的高质量馈电电流。同步实际上是为了检测用于电流控制的瞬时电网信息(例如电网电压的频率和相位),这通常由锁相环(PLL)系统执行。因此,PLL所估计的频率中的谐波和偏差可能导致电流跟踪性能下降,特别是对于具有固定采样率的周期性信号控制器(例如,PR和RC)。在本文中,通过分析这些电流控制器的频率适应性,研究了由PLL引起的频率偏差和/或电网干扰对所选电流控制器的影响。随后,提出了增强电流控制器的频率适应性的策略,以使功率转换器即使在存在电网频率偏差的情况下也能产生高质量的馈入电流。具体而言,通过反馈PLL估计频率以更新谐振控制器的中心频率,并分别使用RC的Lagrange插值多项式来近似分数延迟,这些周期电流控制器的频率变化抗扰度将固定不变。率提高了。提出了单相并网系统的实验,验证了频率自适应电流控制器的讨论和有效性。

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