返回
Enhanced EV charging algorithm considering data-driven workplace chargers categorization with multiple vehicle types
DOI:10.1016/j.etran.2024.100326.png)
摘要
En 中文
The increasing penetration of Electric Vehicles (EVs) presents significant challenges in integrating EV chargers. To address this, precise smart EV charging strategies are imperative to prevent a surge in peak power demand and ensure seamless charger integration. In this article, a smart EV charging pool algorithm employing optimal control is proposed. The main objective is to minimize the charge point operator's cost while maximizing its EV chargers' flexibility. The algorithm adeptly manages the charger pilot signal standard and accommodates the non -ideal behavior of EV batteries across various vehicle types. It ensures the fulfillment of vehicle owners' preferences regarding the departure state of charge. Additionally, we develop a data -driven characterization of EV workplace chargers, considering power levels and estimated battery capacities. A novel methodology for computing the EV battery's arrival state of charge is also introduced. The efficacy of the EV charging algorithm is evaluated through multiple simulation campaigns, ranging from individual charger responses to comprehensive charging pool analyses. Simulation results are compared with those of a typical minimum -time strategy, revealing cost reductions and significant power savings based on the flexibility of EV chargers. This novel algorithm emerges as a valuable tool for accurately managing the power demanded by an EV charging station, offering flexible services to the electrical grid.
Keyword:
Electric vehicle charger
Non-ideal battery
Flexibility
Model predictive control
Smart charger
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
IF:
17
论文数:
590
被引数:
4.4K
机构
引用论文
A systematic review and comparison of liquid-based cooling system for lithium-ion batteries基于液体的锂离子电池冷却系统的系统回顾和比较
ETRANSPORTATION
IF17
Local demand management of charging stations using vehicle-to-vehicle service: A welfare maximization-based soft actor-critic model使用车对车服务的充电站的本地需求管理: 基于福利最大化的软行动者-批评家模型
ETRANSPORTATION
IF17
The impact of plug-in behavior on the spatial-temporal flexibility of electric vehicle charging load插电行为对电动汽车充电负荷时空灵活性的影响
Remuneration Sensitivity Analysis in Prosumer and Aggregator Strategies by Controlling Electric Vehicle Chargers
ENERGIES
IF3.2

