发电容量扩展决策的多智能体仿真

A. Botterud, M. Mahalik, G. Conzelmann, R. Figueiredo Silva, S. Vilela, R. Pereira
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引用次数: 6

摘要

本文采用多智能体仿真模型EMCAS对伊比利亚电力市场的发电扩张进行了分析。扩展模型模拟了分散发电公司(GenCos)在复杂的多维环境中相互作用的发电投资决策。概率调度算法计算系统未来不同状态下新候选机组的价格和利润。未来负荷、水电条件和竞争对手行动的不确定性在情景树中表示,并使用决策分析来确定每个发电公司的最佳扩展决策。我们使用伊比利亚市场的详细数据运行该模型。在情景分析中,我们考察了市场设计变量的影响,如能源价格上限和碳排放价格。我们还分析了市场集中度和GenCospsila风险偏好如何影响新发电容量的时机和选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-agent simulation of generation capacity expansion decisions
In this paper, we use a multi-agent simulation model, EMCAS, to analyze generation expansion in the Iberian electricity market. The expansion model simulates generation investment decisions of decentralized generating companies (GenCos) interacting in a complex, multidimensional environment. A probabilistic dispatch algorithm calculates prices and profits for new candidate units in different future states of the system. Uncertainties in future load, hydropower conditions, and competitorspsila actions are represented in a scenario tree, and decision analysis is used to identify the optimal expansion decision for each individual GenCo. We run the model using detailed data for the Iberian market. In a scenario analysis, we look at the impact of market design variables, such as the energy price cap and carbon emission prices. We also analyze how market concentration and GenCospsila risk preferences influence the timing and choice of new generating capacity.
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