基于改进阻抗矩阵算法的弱网格分布式配电网潮流分析

Dejan R. Ivic, Drazenko Macanovic, D. Šošić, P. Stefanov
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引用次数: 6

摘要

从新兴的智能电网概念来看,配电网将需要快速的潮流解决方案,必须尽可能高效地解决。在现代中低压配电网中,分布式发电机和基于电力电子的补偿装置的存在,进一步扩大了潮流计算算法的性能要求,潮流计算算法是有效的智能配电系统分析工具的重要组成部分。本文提出了一种能够满足大多数已定义需求的解决方案。提出了一种具有分布式发电和补偿装置的径向弱网格配电网潮流计算的改进算法。该算法基于经典的隐式阻抗矩阵(Zbus)高斯方法。本文提出的算法适用于任何单侧供电网络拓扑结构,能够计算可再生能源分布式发电对电力损耗和电压幅值的影响。将该算法应用到ieee33总线测试配电网中,通过增加联络线对其进行修改,得到网状网络。通过对不同切换场景的计算,验证了算法的有效性,并对系统能力进行了分析,以满足分布式发电机在定义的系统节点中的集成要求。对两个系统进行了描述分析,包括补偿装置和不包括补偿装置。
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Weakly meshed distribution networks with distributed generation — power flow analysis using improved impedance matrix based algorithm
From the viewpoint of the emerging concept of smart grid, distribution network will require fast power flow solution that must be resolved as efficiently as possible. Presence of distributed generators and power electronic based compensating devices, in modern medium and low voltage distribution networks, additionaly expands requirements for performances of algorithms for power flow calculations which are an essential part of effective smart distribution system analysis tools. The solution which can respond to most of defined requirements is proposed in this paper. This paper presents improved algorithm for power flow calculations for radial and weakly meshed distribution network with distributed generation and compensating devices. Proposed algorithm is based on the classical implicit impedance matrix (Zbus) Gauss method. Algorithm, presented in this paper, is enforceable to any one-sided supplied distribution network topology and can calculate the impact of distributed generation from renewable energy sources on electrical power losses and voltage magnitudes. Algorithm is applied to IEEE 33 bus test distribution network, modified by adding tie lines to get meshed network. Efficiency of proposed algorithm is confirmed by calculations for different switching scenarios within analysis of system abilities made to meet requirements for integration of distributed generators in defined system nodes. Described analysis were carried out for both systems, with and without compensation devices included.
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