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Voltage Control for Unbalanced Low Voltage Grids Using a Decoupled-Phase On-Load Tap-Changer Transformer and Photovoltaic Inverters

机译:使用去耦相载有载分接开关变压器和光伏逆变器对不平衡低压电网进行电压控制

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摘要

This paper presents modeling and analysis of the potential benefits of joint actions of a MV/LV three-phase power distribution transformer with independent on-load tap-changer control on each phase and photovoltaic inverters provided with reactive power control capability, in terms of accommodating more renewable generations in the LV grid. The potential benefits are investigated in terms of voltage unbalance reduction and local voltage regulation. 24-hours root-mean-square dynamics simulation studies have been carried out with timestep of 1 second using 10-mins resolution consumption and production profiles. A totally passive real Danish low voltage distribution network is used for the grid topology as well as for the characterization of loads profiles, while the production ones are empirically defined under assumptions in scenarios with different level of photovoltaic penetration and grade of unbalance.
机译:本文介绍了在相适应方面具有独立的有载分接开关控制的MV / LV三相配电变压器和具有无功控制功能的光伏逆变器的联合动作的潜在好处的建模和分析低压电网中有更多可再生能源的一代。从减少电压不平衡和本地电压调节方面研究了潜在的好处。使用10分钟的分辨率消耗和生产曲线以1秒的时间步长进行了24小时均方根动力学模拟研究。完全无源的丹麦真正的低压配电网络用于电网拓扑结构以及负荷分布的表征,而生产负荷则是根据假设在不同光伏渗透水平和不平衡等级的情况下根据经验定义的。

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