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Flexible Voltage Support Control for Three-Phase Distributed Generation Inverters Under Grid Fault

机译:电网故障下三相分布式发电逆变器的柔性电压支持控制

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Ancillary services for distributed generation (DG) systems become a challenging issue to smartly integrate renewable-energy sources into the grid. Voltage control is one of these ancillary services which can ride through and support the voltage under grid faults. Grid codes from the transmission system operators describe the behavior of the energy source, regulating voltage limits and reactive power injection to remain connected and support the grid under fault. On the basis that different kinds of voltage sags require different voltage support strategies, a flexible control scheme for three-phase grid-connected inverters is proposed. In three-phase balanced voltage sags, the inverter should inject reactive power in order to raise the voltage in all phases. In one- or two-phase faults, the main concern of the DG inverter is to equalize voltages by reducing the negative symmetric sequence and clear the phase jump. Due to system limitations, a balance between these two extreme policies is mandatory. Thus, over- and undervoltage can be avoided, and the proposed control scheme prevents disconnection while achieving the desired voltage support service. The main contribution of this work is the introduction of a control algorithm for reference current generation that provides flexible voltage support under grid faults. Two different voltage sags have been experimentally tested to illustrate the behavior of the proposed voltage support control scheme.
机译:分布式发电(DG)系统的辅助服务已成为将可再生能源智能地集成到电网中的具有挑战性的问题。电压控制是这些辅助服务之一,可以在电网故障下通过并支持电压。输电系统运营商的电网代码描述了能源的行为,调节电压限制和无功功率注入以保持连接并在发生故障时支持电网。基于不同种类的电压骤降需要不同的电压支持策略,提出了一种三相并网逆变器的灵活控制方案。在三相平衡电压骤降中,逆变器应注入无功功率以提高所有相的电压。在一相或两相故障中,DG逆变器的主要考虑是通过减少负对称序列并消除相位跳变来均衡电压。由于系统限制,这两个极端策略之间的平衡是强制性的。因此,可以避免过压和欠压,并且所提出的控制方案可在实现所需的电压支持服务的同时防止断开连接。这项工作的主要贡献是引入了一种用于参考电流生成的控制算法,该算法可在电网故障下提供灵活的电压支持。已经对两个不同的电压骤降进行了实验测试,以说明所提出的电压支持控制方案的行为。

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