Dynamic TOU Tariff for the Hierarchical Coordination of PEV Charging

IF 3.7 2区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Power Delivery Pub Date : 2025-01-01 DOI:10.1109/TPWRD.2024.3523744
Angel M. Sanchez;Andrés A. Romero
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Abstract

This paper presents a three-stage methodology for the charging coordination of Plug-in Electric Vehicles (PEVs), incorporating the calculation of Time-of-Use (TOU) daily rates to mitigate the increase of energy cost of the aggregators caused by the coordination. Our previous work has been taken as a basis, where a PEV coordination methodology is proposed to minimize the Loss of Life (LOL) of Primary Distribution Transformers (PDTs) in the network supplying the charging of a set of PEVs. In the first stage, the charging power profiles of PEV aggregators, which are favorable for the Distribution System Operator (DSO), are calculated. Then, in the second stage, time-bands of TOU tariffs are computed for each aggregator to incentivize PEV charging in accordance with the result of the first stage. Such time-bands mitigate the increase in aggregator energy costs due to PEV charging coordination. Finally, in the third stage, the obtained TOU tariffs are applied to the PEV coordination methodology. The proposed methodology has been applied to a case study involving 32 aggregators. Results indicate that the increase in aggregator costs due to PDT power limitation is relatively small, while the reduction in LOL of PDT is significant.
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面向电动汽车分级收费协调的动态分时电价
本文提出了插电式电动汽车(pev)充电协调的三阶段方法,并引入了分时电价(TOU)日费率的计算,以减轻充电协调给集成商带来的能源成本增加。我们以之前的工作为基础,提出了一种PEV协调方法,以尽量减少一组PEV充电网络中主配电变压器(pdt)的寿命损失(LOL)。在第一阶段,计算了有利于配电系统运营商(DSO)的PEV聚合器的充电功率分布;然后,在第二阶段,根据第一阶段的结果,计算各聚合商的分时电价时间段,以激励PEV收费。这样的时间段减轻了由于PEV充电协调而增加的聚合器能量成本。最后,在第三阶段,将获得的分时电价应用于PEV协调方法。提议的方法已应用于涉及32个聚合器的案例研究。结果表明,由于PDT功率限制,聚合器成本的增加相对较小,而PDT的LOL降低幅度较大。
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来源期刊
IEEE Transactions on Power Delivery
IEEE Transactions on Power Delivery 工程技术-工程:电子与电气
CiteScore
9.00
自引率
13.60%
发文量
513
审稿时长
6 months
期刊介绍: The scope of the Society embraces planning, research, development, design, application, construction, installation and operation of apparatus, equipment, structures, materials and systems for the safe, reliable and economic generation, transmission, distribution, conversion, measurement and control of electric energy. It includes the developing of engineering standards, the providing of information and instruction to the public and to legislators, as well as technical scientific, literary, educational and other activities that contribute to the electric power discipline or utilize the techniques or products within this discipline.
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