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Voltage control in MV distribution networks through coordinated control of tap changers and renewable energy sources

机译:通过分接开关和可再生能源的协调控制,实现中压配电网中的电压控制

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The significant penetration of renewable energy sources (RES), like wind and solar power plants, into distribution networks has changed their operation considerably and brought new challenges for distributed system operators (DSOs). One of the main problems associated with high penetration of variable RES into distribution networks is voltage rise problem along the radial distribution feeders, with high production variability causing frequent operations of the onload tap changers (OLTC), thereby causing significant deterioration of their operation life expectancy. This paper proposes new method for the Volt Var control in the MV distribution network with the high share of RES relative to the distribution system load. The problem is casted as the mixedinteger nonlinear programming (MINLP) problem associated with the voltage control in the distribution network with the objective to maximize daily RES production and through reactive power control to minimize the daily distribution system losses using the Benders' decomposition method. In order to reduce the number of OLTC switching operations, the time instances in which the change is possible are set a priori. The effectiveness of the proposed method is tested on well-known IEEE 69-bus system.
机译:风力和太阳能发电厂等可再生能源(RES)大量渗透到配电网络中,极大地改变了其运行方式,并给分布式系统运营商(DSO)带来了新的挑战。与可变RES高度渗透到配电网络相关的主要问题之一是沿径向配电馈线的电压上升问题,其高生产波动性导致有载分接开关(OLTC)频繁运行,从而导致其预期使用寿命显着降低。本文提出了一种新的中压配电网中Volt Var控制的方法,相对于配电系统负荷,RES具有较高的份额。该问题被归结为与配电网络中的电压控制相关的混合整数非线性规划(MINLP)问题,其目标是使用Benders分解方法最大化每日的RES产量,并通过无功功率控制来最小化每日的配电系统损耗。为了减少OLTC交换操作的数量,事先设置了可能进行更改的时间实例。该方法的有效性在著名的IEEE 69总线系统上进行了测试。

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