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A real-time optimal coordination scheme for the voltage regulation of a distribution network including an OLTC, capacitor banks, and multiple distributed energy resources

机译:用于包括OLTC,电容器组和多种分布式能源的配电网络调压的实时最佳协调方案

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摘要

The progression towards smarter grids, incorporating clean energy resources, has increased the integration of distributed generators (DGs) into power distribution networks. The DGs often cause a rise in voltage at their points of common coupling. Ordinary voltage regulation devices such as on-load tap changers (OLTCs) are not capable of addressing these issues adequately without careful coordination with DGs. In this paper, a new supervisory control and data acquisition-based two-stage voltage control scheme for the coordination of an. OLTC transformer, capacitor banks (CBs) and the DGs is presented. The proposed scheme sets forth a new criterion for the selection of tap positions of an OLTC. In the first stage, tap positions of the OLTC are changed optimally using the micro genetic algorithm, whereas in the second stage, a recursive genetic algorithm is run to minimise the power losses in order to find the optimal reactive powers for the distribution network. Stochastic modelling of wind speed and solar irradiance data is also performed. The scheme is verified by studying it under four different test cases. An OLTC, CBs, photovoltaic panels, wind power DGs and dispatchable DGs are installed in the distribution network, and an IEEE 37 node test feeder is used for the verification of the proposed scheme. The simulation results show that the scheme achieves the objective' of voltage regulation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:向更智能的电网发展,并结合了清洁能源,已将分布式发电机(DG)集成到配电网络中。 DG通常会在其公共耦合点处引起电压升高。诸如有载分接开关(OLTC)之类的普通调压设备如果不与DG仔细协调,将无法充分解决这些问题。本文提出了一种新的基于监督控制和数据采集的两级电压控制方案。介绍了OLTC变压器,电容器组(CB)和DG。提出的方案提出了用于选择OLTC的抽头位置的新标准。在第一阶段,使用微遗传算法优化OLTC的抽头位置,而在第二阶段,运行递归遗传算法以最小化功率损耗,以便找到配电网络的最佳无功功率。还对风速和太阳辐照度数据进行了随机建模。通过在四个不同的测试案例下对其进行研究来验证该方案。在配电网中安装了OLTC,CB,光伏板,风电DG和可调度DG,并且使用IEEE 37节点测试馈线来验证所提出的方案。仿真结果表明,该方案达到了稳压的目的。 (C)2017 Elsevier Ltd.保留所有权利。

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