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Optimal oversizing of utility-owned renewable DG inverter for voltage rise prevention in MV distribution systems

机译:用于防止中压配电系统中电压升高的公用事业可再生DG逆变器的最佳尺寸

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摘要

The penetration of renewable distributed generations (DG) is recently being increased in distribution systems. Due to the intermittent nature of these generation units, several technical problems are expected based on the environmental conditions and load profiles, such as voltage rise and increasing losses. A traditional way to alleviate these technical problems is to oversize their interfacing inverters for releasing their capacities to inject/absorb further reactive power. In the literature, the DG inverter is normally oversized by a certain percentage (e.g., 10%) for this purpose. In turn, an optimization-based method is proposed in this paper to calculate the optimal oversize of the interfaced inverter employed in various utility-owned DG types to regulate voltages and to reduce losses with minimum total costs. The proposed method considers the active power curtailment (APC) feature in the DG inverter and the transformer taps. Different control schemes of the interfaced inverter are considered and incorporated in the proposed optimization model. The simulation results demonstrate the effectiveness of the proposed method compared with existing methods.
机译:可再生分布式发电(DG)的普及最近在配电系统中得到了提高。由于这些发电机组的间歇性,基于环境条件和负载曲线,可能会遇到一些技术问题,例如电压上升和损耗增加。减轻这些技术问题的传统方法是加大其接口逆变器的尺寸,以释放其注入/吸收更多无功功率的能力。在文献中,为此目的,DG逆变器通常超尺寸一定百分比(例如10%)。反过来,本文提出了一种基于优化的方法,以计算在各种公用事业DG类型中使用的接口逆变器的最优超大尺寸,以调节电压并以最小的总成本降低损耗。所提出的方法考虑了DG逆变器和变压器抽头中的有功功率削减(APC)功能。考虑了接口逆变器的不同控制方案,并将其纳入所提出的优化模型。仿真结果证明了该方法与现有方法的有效性。

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