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Tuning of Phase-Locked Loops for Power Converters Under Distorted Utility Conditions

机译:在失真的工况下调整功率转换器的锁相环

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摘要

This paper presents a novel approach in the tuning of phase-locked loops (PLLs) for power electronic converters. PLLs are implemented inside a higher level controller to estimate the grid-voltage phase angle and then control the energy transfer between the power converter and the ac mains. The tuning of the PLL is not a trivial task, particularly when considering power-quality phenomena. In a general way, PLLs with a low bandwidth (low-gain PLLs) are required when handling distorted voltages. It is analytically demonstrated in this paper that low-gain PLLs have more tradeoffs than high-gain PLLs (e.g., PLLs for communications); it is not possible to optimize the settling time for a phase jump without making slower the PLL response to frequency variations. Existing tuning methods do not take into account low-gain features, which may result in nonoptimum designs. The proposed PLL tuning methodology is based on inspection of frequency-domain diagrams and, contrary to the other existing tuning methods, takes into account “low-gain” dynamics. It assures an optimized performance in the presence of any kind of disturbances in the grid. From a practical point of view, the proposed tuning procedure is very intuitive for controller designs. Some significant design examples and experimental results, obtained from a discrete implementation (dSpace platform), are provided in order to validate the theoretical approaches.
机译:本文提出了一种用于电力电子转换器的锁相环(PLL)调谐的新颖方法。 PLL在更高级别的控制器内部实现,以估算电网电压相角,然后控制功率转换器和交流电源之间的能量传输。 PLL的调谐并不是一件容易的事,特别是在考虑电源质量现象时。通常,处理失真电压时需要低带宽的PLL(低增益PLL)。本文通过分析证明,低增益PLL比高增益PLL(例如,用于通信的PLL)具有更多的权衡;在不降低PLL对频率变化的响应速度的情况下,不可能优化相位跳变的建立时间。现有的调谐方法没有考虑低增益特性,这可能会导致设计不理想。所提出的PLL调谐方法基于频域图的检查,并且与其他现有的调谐方法相反,它考虑了“低增益”动态。在电网中存在任何类型的干扰时,它都能确保优化的性能。从实际的角度来看,所提出的调整过程对于控制器设计非常直观。从离散实现(dSpace平台)获得了一些重要的设计实例和实验结果,以验证理论方法。

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