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Coordinated voltage control of a decoupled three-phase on-load tap changer transformer and photovoltaic inverters for managing unbalanced networks

机译:解耦的三相有载分接开关变压器和光伏逆变器的协调电压控制,用于管理不平衡网络

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The increasing penetration of fluctuating photovoltaic (PV) generation brings operational challenges for distribution system operators, such as introducing the voltage rise problem. The situation is made worse in the presence of single-phase generation being unevenly connected to the different phases. To address this problem, distribution transformers with single-phase tapping capability, together with reactive power provision of PV systems, are under investigation. This paper presents modeling and analysis of the benefits of coordinated voltage control of a decoupled three-phase on-load tap changer (OLTC) and photovoltaic inverters in a distribution system, for accommodating a greater number of photovoltaic generators in the grid. A 24 h root-mean-square simulation study is performed in the DigSilent Power-Factory with a Is time step using 10 min resolution consumption and production profiles on a real Danish distribution grid, as well as the developed dynamic photovoltaic generation and load models. The simulations show that the joint action of the power distribution transformer with OLTC control on each phase, and the reactive power provision of photovoltaic inverters, significantly improves the PV hosting capacity in the analyzed unbalanced scenarios without side effects, such as additional power losses, or significant neutral voltage rises. (C) 2015 Elsevier B.V. All rights reserved.
机译:波动光伏(PV)发电的渗透率不断提高,给配电系统运营商带来了运营挑战,例如引入了电压上升问题。在单相发电不均匀地连接到不同相的情况下,情况变得更糟。为了解决这个问题,正在研究具有单相抽头能力的配电变压器以及光伏系统的无功功率提供。本文介绍了对配电系统中解耦的三相有载分接开关(OLTC)和光伏逆变器进行协调电压控制的好处的建模和分析,用于在电网中容纳更多的光伏发电机。在DigSilent Power-Factory中进行了24小时均方根仿真研究,以Is为时间步长,在真实的丹麦配电网上使用10分钟的分辨率消耗和生产曲线,以及已开发的动态光伏发电和负荷模型。仿真表明,配电变压器与OLTC控制在每相上的共同作用以及光伏逆变器的无功功率提供,可以在分析的不平衡情况下显着提高PV承载能力,而不会产生副作用,例如额外的功率损耗或中性线电压明显升高。 (C)2015 Elsevier B.V.保留所有权利。

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