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A Linear Model for Dynamic Generation Expansion Planning Considering Loss of Load Probability

机译:考虑负荷概率损失的动态发电扩展计划线性模型

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摘要

Computation of Loss of Load Probability (LOLP) is a challenge in Generation Expansion Planning (GEP) problem. This paper presents a dynamic GEP model considering LOLP as a reliability criterion. The objective function of the proposed dynamic GEP model includes the discounted total costs of investment cost, operation cost, and maintenance cost. The proposed LOLP constrained GEP problem is formulated as a mixed integer nonlinear programming (MINLP) problem. The MINLP formulation of GEP problem is then converted to a mixed integer linear programming (MIP) problem by applying several approximations to LOLP constraint. The utilized approximations are divided into two clusters for low and high order outages. A test case containing 12 types of installed and 5 types of candidate plants with a 14-year planning horizon is used to validate the efficiency of the proposed dynamic GEP problem. The developed MIP-based GEP model is solved using CPLEX solver and the obtained results are compared with the conventional LOLP-constrained GEP model.
机译:负荷损失概率(LOLP)的计算是发电扩展计划(GEP)问题中的一个挑战。本文提出了一种以LOLP为可靠性准则的动态GEP模型。所提出的动态GEP模型的目标函数包括投资成本,运营成本和维护成本的折现总成本。提出的LOLP约束GEP问题被公式化为混合整数非线性规划(MINLP)问题。然后,通过对LOLP约束应用多个近似值,将GEP问题的MINLP公式转换为混合整数线性规划(MIP)问题。对于低阶和高阶中断,所利用的近似值分为两个簇。一个包含12种已安装类型和5种具有14年规划期的候选工厂的测试用例用于验证所提出的动态GEP问题的效率。使用CPLEX求解器对开发的基于MIP的GEP模型进行求解,并将获得的结果与常规的受LOLP约束的GEP模型进行比较。

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