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An integrated controller to perform LVRT operation in PV systems connected to a LV grid during balanced and unbalanced faults

机译:在平衡和不平衡故障期间,用于在连接到LV电网的光伏系统中执行LVRT操作的集成控制器

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For high PV penetration, grid ancillary services such as dynamic voltage support and low-voltage ride-through (LVRT) operation are recommended by network operators. This paper proposes an integrated controller for LVRT capability of a three-phase grid-tied PV system connected to a LV grid. Generally X/R ratio is low for LV grids, therefore the active power injection is given higher priority than the reactive power injection during grid faults. The proposed controller includes a) reactive power support with active power curtailment (RPS-APC) controller for dynamic grid support, b) decoupled double synchronous reference frame (DDSRF) based positive and negative sequence extractor, c) dual synchronous reference frame (DSRF) based current controller for unbalanced current injection, d) peak current limiter to regulate the current within inverter rating, and e) modified protections based on LVRT curve. The performance of the integrated controller under different symmetrical and unsymmetrical grid faults is evaluated and simulation results are provided.
机译:对于高PV渗透,网络运营商建议使用电网辅助服务,例如动态电压支持和低压穿越(LVRT)操作。本文针对连接到LV电网的三相并网光伏系统的LVRT功能提出了一种集成控制器。通常,低压电网的X / R比较低,因此在电网故障期间,有功功率注入的优先级要高于无功功率注入的优先级。拟议的控制器包括:a)具有无功功率削减功能的无功功率支持(RPS-APC)控制器,用于动态电网支持; b)基于解耦双同步参考帧(DDSRF)的正负序提取器; c)双同步参考帧(DSRF)基于不平衡电流注入的电流控制器,d)峰值电流限制器,以在逆变器额定值范围内调节电流,e)基于LVRT曲线的改进保护。评估了集成控制器在不同对称和非对称电网故障下的性能,并提供了仿真结果。

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