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Stochastic Programming Approach for Unit Availability Consideration in Multi-Area Generation Expansion Planning

机译:多区生成扩展规划中单位可用性考虑的随机编程方法

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This paper proposes a solution approach for the optimal capacity planning problem in multi-area power systems in the presence of randomness in the availability of additional units. The problem is formulated as a two-stage recourse model in the mixed-integer stochastic programming framework. The uncertainties in area generation, transmission lines, and load are incorporated in the model and characterized by their discrete probability distributions. Reliability index used in this analysis is expected unserved energy as this index integrates duration and magnitude of load loss. The objective function is to minimize expansion cost in the first stage and, at the same time, to minimize operation and expected unserved energy costs in the second stage. The first stage decision variables on the number of additional units are represented by binary variables to allow individual unit availability considerations. The solution algorithm utilizes the L-shaped method.
机译:本文提出了在附加单位可用性的随机性存在下多区电力系统中最佳容量规划问题的解决方法。该问题在混合整数随机编程框架中制定为两级追索模型。区域生成,传输线和负载中的不确定因素结合在模型中,其特征在于它们的离散概率分布。在该分析中使用的可靠性指数是预期的,因为该指数集成了负载损耗的持续时间和大小。目标函数是最小化第一阶段的扩展成本,同时在第二阶段最小化操作和预期的未使用能源成本。关于附加单元数量的第一阶段决策变量由二进制变量表示,以允许各个单元可用性考虑。解决方案算法利用L形方法。

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