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MILP model for integrated expansion planning of multi-carrier active energy systems

机译:MILP模型,用于多载波有源能源系统的集成扩展规划

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In growing economic energy systems, the interdependency of various energy infrastructures has led to a change in countries' policies in their expansion planning of energy networks. In this study, a mixed-integer non-linear programming (MINLP) model is proposed for expansion planning of the multi-carrier systems including electricity and gas distribution networks. The optimal planning determines the best location, time, and alternative for network assets in order to minimise investment costs and reduce losses. Also, as another distinctive feature of this study, given the integration of electricity and gas distribution networks and the complexity of the problem, a new MILP model using linearisation methods is presented. In this planning model, several types of alternative plans and a set of candidates for the new placements or increase of the capacity of transformers, feeders, distributed generation, gas pipelines, and city gate stations are considered. The proposed MILP model provides the convergence of the problem to a global optimum response using the powerful commercial software. In addition, a solution based on Benders decomposition algorithm is finally proposed to reduce the solution time of the problem. Finally, the efficiency of the proposed model is evaluated by means of some simulation results.
机译:在不断发展的经济能源系统中,各种能源基础设施的相互依存关系导致各国改变其能源网络扩展计划的政策。在这项研究中,提出了一种混合整数非线性规划(MINLP)模型,用于包括电力和天然气分配网络在内的多载波系统的扩展规划。最佳计划确定网络资产的最佳位置,时间和替代方案,以最大程度地减少投资成本并减少损失。此外,作为这项研究的另一个显着特征,鉴于电力和天然气分配网络的集成以及问题的复杂性,提出了一种使用线性化方法的新MILP模型。在此计划模型中,考虑了几种类型的替代计划以及一组新放置的变压器或馈线,馈线,分布式发电,燃气管道和城市门站容量的增加的候选方案。拟议的MILP模型使用功能强大的商业软件将问题收敛到全局最优响应。此外,最终提出了一种基于Benders分解算法的解决方案,以减少问题的求解时间。最后,通过一些仿真结果评估了所提出模型的效率。

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