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首页> 外文期刊>IEEE Transactions on Power Electronics >Dynamic Voltage Support for Low-Voltage Ride-Through Operation in Single-Phase Grid-Connected Photovoltaic Systems
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Dynamic Voltage Support for Low-Voltage Ride-Through Operation in Single-Phase Grid-Connected Photovoltaic Systems

机译:通过单相网连接光伏系统中的低电压骑行动态电压支撑

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摘要

This article presents a dynamic voltage support (DVS) scheme for achieving low-voltage ride-through (LVRT) with a grid-connected photovoltaic (PV) inverter during the voltage sag fault. The DVS scheme is achieved by formulating an additional reactive active current control mode which is developed from a conventional reactive current control approach. This provides stable operation of the system and achieves higher effectiveness due to the lower X/R ratio at the point of common coupling in low-voltage networks. Further, the performance of the proposed controller is assessed by simulating a 4 kW system for voltage sag faults. Further, the proposed controller tested with the real-time simulations and experimental setup for voltage sag conditions. The results presented demonstrate that the active and reactive power is regulated in concordance with grid code requirements. The controller achieves LVRT within the time limits of grid standard during symmetrical faults, which makes it appropriate for fast transient events. This operates the PV system under its nominal capacity, avoiding unwanted grid disconnection events.
机译:本文介绍了动态电压支撑(DVS)方案,用于在电压下滑故障期间实现具有网格连接的光伏(PV)逆变器的低压乘坐(LVRT)。通过使用传统的无功电流控制方法开发的额外的无功有源电流控制模式来实现DVS方案。这提供了系统的稳定运行,并且由于低压网络中的公共耦合点的较低X / R比而实现更高的效率。此外,通过模拟用于电压凹槽故障的4 kW系统来评估所提出的控制器的性能。此外,所提出的控制器用实时仿真测试和用于电压下垂条件的实验设置。提出的结果表明,主动和无功功率以电网代码要求在一起调节。控制器在对称断层期间在网格标准的时间限制内实现LVRT,这使得适合快速的瞬态事件。这在其标称容量下运行了PV系统,避免了不需要的网格断开事件。

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