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Active Distribution Network Expansion Planning Integrating Practical Operation Constraints

机译:结合实际运营约束的主动配电网扩张规划

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摘要

This paper proposes a mathematics model of active distribution network expansion planning (DNEP) integrating the practical operation constraints, which are the OLTC (On-Load Tap Changer) tap adjusting frequency and substation voltage variation. Distributed Generation (DG) curtailment, load curtailment, OLTC tap adjustment, and reactive power compensation are considered as the active management schemes. The expansion model allows alternatives to be considered for new wiring, DG installation, new substation, and substation expansion. The DNEP problem is a mixed integer non-linear programming problem, active management, and uncertainties, especially with the DG integration make the DNEP problem much complex. In order to find the suitable algorithm, this paper converts the DNEP problem to a Second-Order Cone Programming (SOCP) model through clistflow equations and constraints relaxation. A modified 33-bus application example is used to verify the proposed model with different active management scenarios.
机译:本文提出了结合实际运行约束条件的有源配电网扩展规划(DNEP)数学模型,即OLTC(有载分接开关)分接调节频率和变电站电压变化。分布式发电(DG)缩减,负载缩减,OLTC分接调整和无功补偿被视为主动管理方案。扩展模型允许考虑新布线,DG安装,新变电站和变电站扩展的替代方案。 DNEP问题是混合整数非线性规划问题,主动管理和不确定性,尤其是与DG集成使DNEP问题变得更加复杂。为了找到合适的算法,本文通过clistflow方程和约束松弛将DNEP问题转换为二阶锥规划(SOCP)模型。修改后的33总线应用示例用于验证具有不同主动管理方案的建议模型。

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