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Low-Voltage Ride-Through Operation of Power Converters in Grid-Interactive Microgrids by Using Negative-Sequence Droop Control

机译:负序降控制在电网交互式微电网中功率变换器的低压穿越操作

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摘要

Due to the increasing penetration level of microgrids (MGs), it becomes a critical issue for MGs to help sustaining power system stability. Therefore, ancillary services, such as the low-voltage ride-through (LVRT) capability should be incorporated in MGs in order to guarantee stable operation of the utility grid during grid faults. In this paper, a LVRT control strategy based on positiveegative sequence droop control is proposed for grid-interactive MGs to ride-through voltage sags with not only inductive/resistive, but also complex line impedance. By using the proposed control strategy, MGs can support the grid voltage, make profits, and also ride-through the voltage dip during the whole fault period. A two-layer hierarchical control strategy is proposed in this paper. The primary controller consists of voltage and current inner loops, a conventional droop control and a virtual impedance loop, while the secondary controller is based on a positiveegative sequence droop scheme which is able to coordinate the power injection during voltage sags. Experimental results are obtained to verify the effectiveness of the proposed control strategy.
机译:由于微电网(MGs)的普及程度不断提高,因此,MGs帮助维持电力系统稳定性已成为一个关键问题。因此,应将诸如低压穿越(LVRT)能力之类的辅助服务纳入MG中,以确保电网故障期间公用电网的稳定运行。本文提出了一种基于正/负序下降控制的LVRT控制策略,用于电网互感MG穿越穿越电压骤降,不仅具有感性/电阻性,而且具有复杂的线路阻抗。通过使用所提出的控制策略,MG可以支持电网电压,获利并在整个故障期间穿越电压骤降。本文提出了一种两层的分层控制策略。主控制器由电压和电流内部环路,常规的下降控制和虚拟阻抗环路组成,而辅助控制器基于正/负序列下降方案,该方案能够在电压骤降期间协调功率注入。获得实验结果以验证所提出的控制策略的有效性。

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