用实验设计方法对配电网电压控制装置的优化配置过程和电压运行管理进行了研究

J. Toubeau, J. Lobry, F. Vallée, Z. De Grève
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引用次数: 2

摘要

本文提出了一种用实验设计方法控制中压网络电压的新方法。这种方法,也被称为实验设计(DOE),是建立和研究多个输入(因素)对期望输出(响应)的影响的有力工具。在这项工作中,输出将是网络中每个节点的电压与额定电压之间偏差的绝对值之和。因此,响应应最小化,以确保沿电网馈线的最佳电压分布。不同的研究因素有:变压器有载分接开关(OLTC)、分布式发电(DG)的限电和无功补偿装置。在本研究中,DOE被用于两个目的。首先,选取对输出影响最大的参数。其次,利用响应面法(RSM)对这些参数的值进行优化,以减小配电网中的电压变化。然后将这两步过程应用于28母线径向中压网络,以研究由DG机组增加的有功发电量引起的过电压问题。
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Optimal allocation process of voltage control devices and operational management of the voltage in distribution systems using the experimental design method
This paper presents a new approach to control the voltage in medium voltage (MV) networks by using the Experimental Design method. This method, also referred to as Design of Experiments (DOE), is a powerful tool to establish and study the effects of multiple inputs (factors) on a desired output (response). In this work, the output will be the sum of the absolute values of the deviations between the voltage at each node of the network and the rated voltage. The response should therefore be minimized to ensure the best possible voltage profile along the feeders of the grid. The different studied factors are: on-load tap changer (OLTC) of transformer, curtailment of distributed generation (DG) and reactive power compensation devices. In this study, the DOE is employed for two purposes. Firstly, the parameters which have the most significant impact on the output are selected. Secondly, the values of these parameters are optimised to reduce the voltage variation in the distribution network by using a response surface methodology (RSM) approach. This two-step process is then applied on a 28-bus radial MV network in order to study an overvoltage problem caused by an increased active power generation coming from DG units.
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