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Tuning Software Phase-Locked Loop for Series-Connected Converters

机译:串联转换器的调谐软件锁相环

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Accurate phase information is crucial for most of the modern power-electronics apparatus such as the static series compensator (SSC). A software phase-locked loop (SPLL) has been proposed in literature to obtain phase and frequency information of the grid voltage. Either a lead/lag filter or a proportional-plus-integral (PI) controller is employed to control the performance of the SPLL. In this paper, a criterion to tune the SPLL is discussed and the gains of the Pi-controller are determined to obtain the desired performance. The proposed criterion is based on the fact that a phase shift of the grid voltage is sensed as a frequency deviation by the load. If the deviation of the grid frequency is kept within the range ±1 Hz, most of the loads function properly. Hence and by the SSC, the response of the phase angle of the load voltage is designed to follow the grid voltage angle while satisfying the frequency range at all times. Consequently, the gains of the Pl-regulator of the SPLL are dependent on the maximum phase shift of the grid voltage. Unbalanced grid voltages are separated into positive-and negative-sequence components and the SPLL is locked to the positive sequence. The response of the SPLL has been evaluated by using PSCAD/EMTDC simulation package.
机译:准确的相位信息对于大多数现代电力电子设备(例如静态串联补偿器(SSC))至关重要。在文献中已经提出了软件锁相环(SPLL),以获得电网电压的相位和频率信息。超前/滞后滤波器或比例积分(PI)控制器均可用于控制SPLL的性能。在本文中,讨论了调节SPLL的准则,并确定了Pi控制器的增益以获得所需的性能。所提出的标准基于以下事实:负载感测到电网电压的相移为频率偏差。如果电网频率的偏差保持在±1 Hz的范围内,则大多数负载将正常运行。因此,通过SSC,负载电压的相角响应被设计为跟随电网电压角,同时始终满足频率范围。因此,SPLL的Pl调节器的增益取决于电网电压的最大相移。不平衡的电网电压分为正序和负序分量,并且SPLL锁定为正序。通过使用PSCAD / EMTDC仿真包评估了SPLL的响应。

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