基于故障关联矩阵的配电网分段开关及并线优化设计

Fengzhang Luo, Tianyu Zhang, Chengshan Wang, Peng Li, L. Yao
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摘要

考虑系统可靠性和经济性的权衡,提出了配电网分段开关和并线的优化规划模型。首先,建立配电网的故障关联矩阵,通过对故障关联矩阵和故障参数向量进行代数运算,实现系统可靠性指标的显式解析表达式;在此基础上,建立了考虑线路容量约束的分段开关构型0-1整数二次约束优化模型。最后,对分段开关和联络线进行联合优化,以保证经济投资,最大限度地提高系统可靠性。以台湾电力公司配电网为例,验证了所提优化方法的适用性。与智能优化算法相比,本文的数学规划方法总能快速找到全局最优的开关配置。此外,还考虑了联络线容量约束对分段开关配置的影响,可为配电网规划者在配电网优化设计时提供实用参考。
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Optimal Design of the Sectional Switch and Tie Line for the Distribution Network based on the Fault Incidence Matrix
An optimal planning model of the sectional switch and tie line for the distribution network is proposed considering the trade-off between the system reliability and economy. Firstly, the fault incidence matrixes are established for the distribution network, and the explicit analytical expression of the system reliability index is realized by the algebraic operation of the fault incidence matrixes and fault parameter vectors. Then, the 0-1 integer quadratically constrained optimization model is established for the sectional switch configuration considering the capacity constraint of the tie line. Finally, the sectional switches and tie lines are optimized jointly to ensure the economic investment and maximize the system reliability. The distribution network in Taiwan Power Company (TPC) is used to verify the applicability of the proposed optimization method. Compared with the intelligent optimization algorithm, the mathematical programming method in this paper can always find the global optimal switch configuration quickly. In addition, the influence of the tie line capacity constraints on the sectional switch configuration is also considered, which can provide practical reference for the power network planners in the optimization design of the distribution network.
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