Integrated optimal power flow for distribution networks in local and urban scales

Xiandong Xu, Kang Li, Yang Liu, H. Jia
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引用次数: 3

Abstract

This paper develops an integrated optimal power flow (OPF) tool for distribution networks in two spatial scales. In the local scale, the distribution network, the natural gas network, and the heat system are coordinated as a microgrid. In the urban scale, the impact of natural gas network is considered as constraints for the distribution network operation. The proposed approach incorporates unbalance three-phase electrical systems, natural gas systems, and combined cooling, heating, and power systems. The interactions among the above three energy systems are described by energy hub model combined with components capacity constraints. In order to efficiently accommodate the nonlinear constraint optimization problem, particle swarm optimization algorithm is employed to set the control variables in the OPF problem. Numerical studies indicate that by using the OPF method, the distribution network can be economically operated. Also, the tie-line power can be effectively managed.
地方和城市配电网的综合最优潮流
本文开发了一种用于两个空间尺度配电网的集成最优潮流(OPF)工具。在局部尺度上,配电网、天然气网络和供热系统协同构成微电网。在城市规模下,天然气网络的影响被认为是配电网运行的制约因素。所提出的方法包括不平衡三相电力系统、天然气系统和联合冷却、加热和电力系统。通过结合组件容量约束的能量枢纽模型描述了上述三个能源系统之间的相互作用。为了有效地适应非线性约束优化问题,采用粒子群优化算法对OPF问题中的控制变量进行设置。数值研究表明,采用OPF方法可以使配电网经济运行。此外,还可以有效地管理联络线功率。
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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