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Prevention of distribution network overvoltage by adaptive droop-based active and reactive power control of PV systems

机译:通过基于自适应下垂的光伏系统有功和无功控制来防止配电网过电压

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摘要

Proliferation of grid-connected photovoltaic systems (PVSs) causes technical problems due to their variable and non-dispatchable generated power. High penetration of PVS in distribution networks can result in overvoltage in some operating conditions. Although this situation occurs rarely, it limits the installed capacity of PVS. In this paper, adaptive droop-based control algorithms are presented to regulate active and reactive power of PVS, with the objectives of loss minimization and increasing the PVS capacity installation without unallowable overvoltage. Operating voltage range of the PVS is divided into several intervals, and a specific control algorithm is presented for each of them. Reactive power control of PVS is used as the first action, and active power curtailment as the final remedy for voltage rise prevention. The proposed adaptive droop-based algorithms make the system operation smooth and highly stable. The required active power curtailment is shared equally between all PVSs, so that they have equal opportunity to sell their extra generation. Decentralized control with only local measurements is the other feature of the proposed methods. Efficiency of the proposed methods is demonstrated through simulation of different scenarios on the IEEE 33-bus distribution network. (C) 2015 Elsevier B.V. All rights reserved.
机译:并网光伏系统(PVS)的扩散由于其可变且不可分配的发电功率而引起技术问题。 PVS在配电网络中的高度渗透会在某些运行条件下导致过压。尽管这种情况很少发生,但它限制了PVS的安装容量。本文提出了一种基于自适应下垂的控制算法来调节PVS的有功功率和无功功率,目的是使损耗最小化并增加PVS容量安装而不会出现不允许的过电压。 PVS的工作电压范围分为几个区间,并针对每个区间给出了特定的控制算法。 PVS的无功功率控制是第一个措施,而减少有功功率是防止电压上升的最终方法。所提出的基于自适应下垂的算法使系统运行平稳且高度稳定。所需的有功功率削减在所有PVS之间平均分配,因此它们有平等的机会出售自己的额外发电量。仅局部测量的分散控制是所提出方法的另一个特征。通过对IEEE 33总线配电网络上不同场景的仿真,证明了所提出方法的效率。 (C)2015 Elsevier B.V.保留所有权利。

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