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Optimal planning of PV inverter in the presence of capacitor bank in medium-voltage distribution networks

机译:中压配电网中存在电容器组的光伏逆变器的优化规划

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As the penetration level of the photovoltaic (PV) system increases over the coming decades, reverse power flows on the distribution feeder will happen and the associated voltage rise might lead to violations of voltage limits. The severity of the voltage regulation problem depends on the relative size and location of PV system, loads, and the distribution feeder topology. This paper proposes an approach to solve the voltage rise problem associated with PV system and to improve the total voltage deviation by optimally increasing the capacity of the PV inverter over the capacity of the PV modules in the presence of capacitor banks. An optimization model is constructed to calculate the optimal inverter capacity with minimizing the cost of PV inverter as well as the total voltage deviation on the distribution network. The overall system constraints are considered in the optimization model. The proposed approach is tested using the IEEE 119-node distribution network. The effectiveness of the proposed approach is demonstrated by calculating the optimal capacity of the PV inverter for mitigating the voltage rise problem and reducing the total voltage deviation.
机译:随着光伏(PV)系统的渗透水平在未来几十年内增加,配电馈线上将发生反向功率流,并且相关的电压上升可能会导致违反电压限制。电压调节问题的严重性取决于光伏系统,负载和配电馈线拓扑的相对大小和位置。本文提出了一种解决与光伏系统相关的电压上升问题的方法,通过在存在电容器组的情况下,通过最佳地增加光伏逆变器的容量(超过光伏模块的容量)来改善总电压偏差。构建一个优化模型,以最小化光伏逆变器的成本以及配电网络上的总电压偏差来计算最佳逆变器容量。在优化模型中考虑了整个系统的约束。使用IEEE 119节点分发网络对提出的方法进行了测试。通过计算光伏逆变器的最佳容量来缓解电压上升问题并减小总电压偏差,可以证明该方法的有效性。

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