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Simulation of low voltage ride through scheme for inverters connected to distribution system with high R/X ratio

机译:连接到具有高R / X比的配电系统的逆变器的低压穿越方案的仿真

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Solar Photovoltaic (PV) inverters are used to feed power to the grid. These PV inverters are equipped with anti islanding protection technique. As the PV penetration in the grid increases, this feature would affect the operation and reliability of grid during fault conditions. Thus, Low Voltage Ride Through (LVRT) capability is suggested for PV inverters connected to High Voltage (HV) and Medium Voltage (MV) lines. During voltage sag condition, LVRT prevents the inverters from being disconnected and supports the grid voltage through reactive power injection. Low Voltage (LV) systems, unlike HV and MV systems, have resisitive characteristics of the line, thereby making the LVRT techniques based on reactive power injection ineffective in case of LV system. To address this issue, sensitivity matrices are derived in this paper. These matrices determine the effect of active and reactive power on voltage magnitude in case of HV and LV systems. A voltage support scheme for LV system is proposed in this paper. Detailed simulation studies are carried out and results are included in this paper. Performance of the the proposed scheme is compared with a conventional LVRT scheme.
机译:太阳能光伏(PV)逆变器用于向电网供电。这些光伏逆变器配备了防孤岛保护技术。随着光伏在电网中的渗透增加,此功能将在故障情况下影响电网的运行和可靠性。因此,对于连接到高压(HV)和中压(MV)线路的PV逆变器,建议使用低压穿越(LVRT)功能。在电压骤降情况下,LVRT可以防止逆变器断开连接,并通过无功功率注入来支持电网电压。与HV和MV系统不同,低压(LV)系统具有线路的电阻特性,因此,在LV系统的情况下,基于无功功率注入的LVRT技术无效。为了解决这个问题,本文推导了灵敏度矩阵。在HV和LV系统的情况下,这些矩阵确定有功功率和无功功率对电压幅值的影响。提出了一种低压系统的电压支持方案。进行了详细的仿真研究,结果包括在本文中。将所提出的方案的性能与常规的LVRT方案进行比较。

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