Measurement uncertainty impact on simplified load flow analysis in MV smart grids

A. Cataliotti, V. Cosentino, S. Guaiana, S. Nuccio, D. D. Cara, N. Panzavecchia, G. Tinè
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引用次数: 8

Abstract

This work is focused on the measurement uncertainty impact on load flow analysis in medium voltage (MV) distribution networks. In more detail, the paper presents the uncertainty evaluation of a simplified load flow algorithm, which is based on the load power measurements at each secondary substation and one voltage measurement at the slack bus (i.e. the voltage at the MV bus bars of the primary substation). To reduce the costs of the monitoring system, the load flow algorithm makes use of LV load power measurements for all the substations except those of MV users, where MV transducers are usually already installed. The uncertainties on the algorithm input quantities (load powers and slack bus voltage) are calculated, considering the actual values of the loads power factors and currents and the accuracy specifications of the measurement instruments installed in the distribution network. Starting from the input quantities uncertainties, the power flows uncertainties are obtained applying the Monte Carlo analysis. The analysis is carried out on a real test system, i.e. the distribution network of Favignana Island. The compatibility is also shown between the algorithm power flow estimations and the power measurements.
测量不确定度对中压智能电网简化潮流分析的影响
本文主要研究了测量不确定度对中压配电网潮流分析的影响。详细地介绍了一种简化的潮流算法的不确定性评估,该算法基于每个二次变电站的负载功率测量和一次空闲母线电压测量(即一次变电站中压母线电压)。为了降低监测系统的成本,潮流算法对除中压用户外的所有变电站使用低压负载功率测量,中压用户通常已经安装了中压换能器。考虑负载功率因数和电流的实际值以及配电网中安装的测量仪器的精度要求,计算算法输入量(负载功率和空闲母线电压)的不确定度。从输入量的不确定性出发,应用蒙特卡罗分析得到潮流的不确定性。分析是在一个真实的测试系统上进行的,即Favignana岛的配电网。该算法的潮流估计结果与实测结果具有良好的兼容性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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