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首页> 外文期刊>International journal of electrical power and energy systems >A stochastic mixed-integer convex programming model for long-term distribution system expansion planning considering greenhouse gas emission mitigation
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A stochastic mixed-integer convex programming model for long-term distribution system expansion planning considering greenhouse gas emission mitigation

机译:考虑温室气体减排的长期分配系统扩展规划的随机混合整数凸规划模型

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摘要

This paper proposes a multistage convex distribution system planning model to find the best reinforcement plan over a specified horizon. This strategy determines planning actions such as reinforcement of existing substations, conductor replacement of overloaded feeders, and siting and sizing of renewable and dispatchable distributed generation units. Besides, the proposed approach aims at mitigating the greenhouse gas emissions of electric power distribution systems via a monetary form. Inherently, this problem is a non-convex optimization model that can be an obstacle to finding the optimal global solution. To remedy this issue, convex envelopes are used to recast the original problem into a mixed integer conic programming (MICP) model. The MICP model guarantees convergence to optimal global solution by using existing commercial solvers. Moreover, to address the prediction errors in wind output power and electricity demands, a two-stage stochastic MICP model is developed. To validate the proposed model, detail analysis is carried out over various case studies of a 34-node distribution system under different conditions, while to show its potential and effectiveness a 135-node system with two substations is used. Numerical results confirm the effectiveness of the proposed planning scheme in obtaining an economic investment plan at the presence of several planning alternatives and to promote an environmentally committed electric power distribution network.
机译:本文提出了一个多阶段凸分布系统计划模型,以在指定的水平范围内找到最佳的加固计划。该策略确定了计划行动,例如加固现有变电站,更换超负荷馈线的导体,以及对可再生和可调度分布式发电单元的选址和选型。此外,所提出的方法旨在通过货币形式减轻配电系统的温室气体排放。本质上,此问题是一个非凸优化模型,可能会成为寻找最佳全局解的障碍。为了解决此问题,凸包络用于将原始问题重铸为混合整数圆锥编程(MICP)模型。 MICP模型可确保通过使用现有的商业求解器来收敛到最佳全局解决方案。此外,为了解决风力输出功率和电力需求中的预测误差,建立了两阶段随机MICP模型。为了验证所提出的模型,在不同条件下对34节点配电系统的各种案例进行了详细分析,同时为了显示其潜力和有效性,使用了带有两个变电站的135节点系统。数值结果证实了所提出的计划方案在存在多种计划替代方案的情况下获得经济投资计划并促进建立环境承诺的配电网络的有效性。

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