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一种求解多相混合配电网潮流的扩展序分量法
引用本文:李佩杰,罗翠云,白晓清,林颂晨,韦化.一种求解多相混合配电网潮流的扩展序分量法[J].电力系统保护与控制,2016,44(3):15-23.
作者姓名:李佩杰  罗翠云  白晓清  林颂晨  韦化
作者单位:广西电力系统最优化与节能技术重点实验室(广西大学电气工程学院),广西 南宁 530004,广西电力系统最优化与节能技术重点实验室(广西大学电气工程学院),广西 南宁 530004,广西电力系统最优化与节能技术重点实验室(广西大学电气工程学院),广西 南宁 530004,广西电力系统最优化与节能技术重点实验室(广西大学电气工程学院),广西 南宁 530004,广西电力系统最优化与节能技术重点实验室(广西大学电气工程学院),广西 南宁 530004
基金项目:国家重点基础研究发展计划项目(973项目) (2013CB228205);国家自然基金项目(51367004,51407036)
摘    要:针对中低压配电网中单相、两相和三相混合供电的特点,扩展了传统的序分量法,提出了一种求解多相混合的配电网三相潮流计算方法。所提方法重新推导了单相、两相和三相网络中序分量间的转换关系,采用前推回代法进行求解,重点是在完全序分量坐标下解决了变压器部分组别的节点导纳矩阵奇异问题。4~8500节点的IEEE标准系统的计算表明:该方法收敛特性好、鲁棒性强,计算效率高,特别适用于大规模配电网的三相潮流计算。

关 键 词:配电网  不对称网络  三相潮流  序分量  节点导纳矩阵奇异
收稿时间:4/3/2015 12:00:00 AM
修稿时间:2015/12/20 0:00:00

An extended sequence components method for solving multiphase power flow in distribution networks
LI Peijie,LUO Cuiyun,BAI Xiaoqing,LIN Songchen and WEI Hua.An extended sequence components method for solving multiphase power flow in distribution networks[J].Power System Protection and Control,2016,44(3):15-23.
Authors:LI Peijie  LUO Cuiyun  BAI Xiaoqing  LIN Songchen and WEI Hua
Affiliation:Guangxi Key Laboratory of Power System Optimization and Energy Technology (School of Electrical Engineering of Guangxi University), Nanning 530004, China,Guangxi Key Laboratory of Power System Optimization and Energy Technology (School of Electrical Engineering of Guangxi University), Nanning 530004, China,Guangxi Key Laboratory of Power System Optimization and Energy Technology (School of Electrical Engineering of Guangxi University), Nanning 530004, China,Guangxi Key Laboratory of Power System Optimization and Energy Technology (School of Electrical Engineering of Guangxi University), Nanning 530004, China and Guangxi Key Laboratory of Power System Optimization and Energy Technology (School of Electrical Engineering of Guangxi University), Nanning 530004, China
Abstract:According to the feature of hybrid power supply with one phase, two phases and three phases in the medium and low voltage distribution system, this paper extends the traditional sequence components method and presents a multiphase power flow solution. In the approach, the transform relationship of sequence components among one-phase network, two-phase network and three-phase network is reformulated by using forward-backward sweeping algorithm (FBS). Furthermore, this paper uses complete sequence components model to solve out the singularity problem of admittance matrix appearing in particular transformer connections. IEEE 4~8500 nodes standard systems are tested. Simulation results verify that the proposed solution has good convergence characteristics, strong robustness and efficient calculation. It also shows the superior applicability in large-scale distribution system three-phase power flow.
Keywords:distribution system  asymmetric network  three-phase power flow  sequence components method  singularity of admittance matrix
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