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Frequency tracking of digital resonant filters for control of power converters connected to public distribution systems

机译:数字谐振滤波器的频率跟踪,用于控制连接到公共配电系统的功率转换器

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摘要

Resonant filters implemented in the control of grid-connected power converters should adapt their coefficients in real time using a grid frequency estimation, for example, obtained by a phase-locked loop (PLL). Otherwise, perfect reference tracking and total disturbance rejection of ac signals are not achieved. An optimised implementation of resonant filters, which avoids shortcomings such as inaccurate pole placement and excessive resource consumption, is provided in this study. Normal grid frequency ranges of operation according to the Standard EN 50160 have been taken into account to optimise the trade-off between accuracy and resources. A shunt active power filter prototype (1 kVA rated) with frequency adaptive proportional + resonant current controller has been built to obtain the key figures. Main experimental tests prove that zero error in steady-state tracking of ac current references is achieved, even in the presence of significant frequency deviations (up to u000b1;2 Hz). The influence of PLL estimations quality on the current controller is also experimentally verified (in practice, grid frequency estimations are not constant, so adaptive resonant filters are non-linear). More specifically, the sensitivity to ripple in estimations has been tested and its acceptable level is established. Finally, robustness in the presence of transients such as load changes, frequency steps and grid faults is proved.
机译:在并网功率转换器的控制中实现的谐振滤波器应使用电网频率估计实时调整其系数,例如,通过锁相环(PLL)获得。否则,将无法实现完美的参考跟踪和交流信号的总干扰抑制。这项研究提供了一种谐振滤波器的优化实现方案,可以避免诸如不正确的极点放置和过多的资源消耗之类的缺点。已经考虑了根据标准EN 50160的正常电网频率范围,以优化精度和资源之间的权衡。已构建具有频率自适应比例+谐振电流控制器的并联有源功率滤波器原型(额定1 kVA),以获取关键指标。主要的实验测试证明,即使在存在明显的频率偏差(高达u000b1; 2 Hz)的情况下,在交流电流基准的稳态跟踪中也可实现零误差。 PLL估计质量对电流控制器的影响也已通过实验验证(实际上,电网频率估计不是恒定的,因此自适应谐振滤波器是非线性的)。更具体地说,已经对估计中的纹波敏感性进行了测试,并确定了可接受的水平。最后,证明了在瞬变(例如负载变化,频率阶跃和电网故障)存在下的鲁棒性。

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