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Smart Transformer-Enabled Meshed Hybrid Distribution Grid

机译:启用智能变压器的网状混合分布网格

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Renewable energy sources (RES) induce problems such as voltage and current limit violations, absence of inertia and consequent stability problems, and poor power quality. Smart transformer (ST) is a promising solution for avoiding such a changing grid scenario leading to strong grid reinforcements. This article proposes an ST-enabled meshed hybrid distribution grid to achieve voltage and power flow control simultaneously with a centralized controller. In this configuration, a low-voltage dc (LVdc) line is proposed which connects the ST LVdc link with the dc bus of distributed generation (DG) converters. This introduces various active power flow paths to support the loads. The DG converters supply active power near the load points which ensures that line losses are reduced significantly while achieving improved voltage regulation as compared to conventional microgrid. Moreover, the DG converters can draw active power from ST LVdc link during absence of RES to support the load, resulting in improved utilization of these converters. The control complexity of the DG converters is reduced as the ST controls both the LVac and LVdc line voltages. Further, the newly developed power flow path allows reverse power flow from DG plants more efficiently. Performance of the proposed system is verified with simulation and experimental results.
机译:可再生能源(RES)诱导电压和电流限制违规,缺乏惯性和随之而来的稳定性问题等问题,并且功率质量差。智能变压器(ST)是一种有希望的解决方案,用于避免这种改变的电网场景,导致强大的电网增强件。本文提出了一种与集中控制器同时实现电压和功率流量控制的ST启用的网状混合动力电压。在该配置中,提出了一种低压DC(LVDC)线,其将ST LVDC链路与分布式发电(DG)转换器的DC总线连接。这引入了各种有源电流路径以支持负载。 DG转换器在负载点附近提供有功功率,这确保了与传统微电网相比,在实现改进的电压调节时显着降低了线路损耗。此外,DG转换器可以在不存在RES以支撑负载的情况下从ST LVDC链路汲取有效电力,从而提高了这些转换器的利用率。当ST控制LVAC和LVDC线电压时,DG转换器的控制复杂度降低。此外,新开发的功率流动路径允许更有效地从DG工厂反向电流。通过模拟和实验结果验证了所提出的系统的性能。

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