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Low Voltage Ride-Through of Two-Stage Grid-Connected Photovoltaic Systems Through the Inherent Linear Power-Voltage Characteristic

机译:通过固有线性电源电压特性实现两级并网光伏系统的低电压穿越

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摘要

In this paper, a cost-effective control scheme for two-stage grid-connected PhotoVoltaic (PV) systems in Low Voltage Ride-Through (LVRT) operation is proposed. In the case of LVRT, the active power injection by PV panels should be limited to prevent from inverter over-current and also energy aggregation at the dc-link, which will challenge the dc-link capacitor lifetime if remains uncontrolled. At the same time, reactive currents should be injected upon any demand imposed by the system operators. In the proposed scheme, the two objectives can be feasibly achieved. The active power is regulated automatically through a proportional controller according to the voltage sag level and PV inherent characteristics (i.e., the voltage and power droop). Compared to prior-art LVRT schemes, the proposed method is cost-effective, as it is achieved by simply plugging the proportional controller into a maximum power point tracking controller without significant hardware or software modifications. In this way, the PV system will not operate at the maximum power point, whereas the inverter will not face any over-current challenge but can provide reactive power support in response to the grid voltage fault. Simulations have been performed on a 3-kW two-stage grid-connected single-phase PV system in the case of LVRT operation, where the results have verified the proposed control scheme in terms of fast dynamics and seamless operation mode transitions.
机译:在本文中,提出了一种在低电压穿越(LVRT)运行中的两阶段并网光伏(PV)系统的经济有效的控制方案。在LVRT的情况下,应限制PV面板的有功功率注入,以防止逆变器过电流以及直流母线处的能量聚集,如果保持不受控制,这将挑战直流母线电容器的寿命。同时,应根据系统操作员的要求注入无功电流。在提出的方案中,可以实现两个目标。根据电压骤降水平和PV固有特性(即电压和功率下降),通过比例控制器自动调节有功功率。与现有技术的LVRT方案相比,该方法具有成本效益,因为它是通过简单地将比例控制器插入最大功率点跟踪控制器而无需进行大量硬件或软件修改即可实现的。这样,光伏系统将不会在最大功率点运行,而逆变器将不会面临任何过电流挑战,但可以响应电网电压故障而提供无功功率支持。在LVRT运行的情况下,已经对3kW两级并网单相光伏系统进行了仿真,结果在快速动态和无缝运行模式转换方面验证了所提出的控制方案。

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