An MPEC for electricity retail alternatives of plug-in electric vehicle (PEV) aggregators

Ilan Momber, S. Wogrin, T. Gómez
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引用次数: 8

Abstract

Coordinated charging schedules of plug-in electric vehicles (PEVs) by an aggregator agent may lead to increased system efficiency in allocating resources in generation, transmission and distribution. To achieve optimal charging schedules, many studies have assumed that the PEV aggregator can exercise full direct load control. This paper proposes a mathematical program with equilibrium constraints for the PEV aggregator's decision making in different electricity markets, using indirect load control by determining optimal retail prices for the PEV. This permits the final customers to decide on their charging schedule by decentralized profit optimization. These decisions respect a potential discomfort that may arise when PEV users have to deviate from their preferred charging schedule as well as include the option of using alternative sources of energy. In a small case study of 3 vehicle clusters and 6 time periods the model's functionality is highlighted. Results indicate that under reasonable competition on the retail market, the PEV aggregator's profitability depends on providing the right price signals to the final customers, such that the most efficient charging schedule response is achieved.
插电式电动汽车(PEV)聚合器电力零售替代方案的MPEC
通过聚合代理对插电式电动汽车(pev)进行协调充电计划,可以提高系统在发电、输电和配电方面的资源分配效率。为了实现最优的充电计划,许多研究都假设PEV聚合器可以完全直接控制负载。针对不同电力市场下PEV集成商的决策问题,提出了一个具有均衡约束的数学方案,通过间接负荷控制确定PEV的最优零售价格。这允许最终用户通过分散的利润优化来决定他们的充电计划。这些决定考虑到当电动汽车用户不得不偏离他们的首选充电计划时可能出现的潜在不适,以及使用替代能源的选择。在对3个车辆集群和6个时间段的小型案例研究中,该模型的功能得到了突出显示。结果表明,在合理竞争的零售市场下,电动汽车聚合商的盈利能力取决于向最终用户提供正确的价格信号,从而实现最有效的充电计划响应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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