Intimacy and Influence Based Scheduling Algorithm for Vehicle-to-Grid Network

Jianyu Hu, Jing Zhang, Hongrui Nian
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Abstract

The increasing number of Electric Vehicles (EVs) makes vehicle communication and vehicle charging linked together to form a part of the intelligent transportation system, which promotes the development of Vehicle-to-Grid (V2G) and Vehicular Ad Hoc Network (VANET). At the same time, the charging behavior of electric vehicles affects the energy distribution and storage of each charging pile. Scheduling technology plays an important role in the field of power and communication. The charging behavior is closely related to vehicle communication and will eventually affect vehicle scheduling. Therefore, analyzing the relationship between user charging and user communication is the basis of vehicle scheduling. In order to solve the problem, Intimacy and Influence based Connected Dominating Set Scheduling Algorithm (IICDSA) is proposed in this paper to adjust the charging behavior of users to realize vehicle scheduling: Firstly, V2G network model is constructed to describe the vehicle communication network, and then, Intimacy Measurement algorithm based on Relationship of Attribute (IMRA) is designed to analyze the relationship between users; secondly, Influence Walk algorithm based on the Intimacy between Users (IWIU) is designed to measure the user influence; at last, Connected Dominated Set Scheduling algorithm based on user Influence and user Location (CDSSIL) is designed to schedule users in groups. Furthermore, the simulation results show that the algorithm reduces the system scheduling cost and improves the utilization of charging pile.
基于亲密度和影响的车网调度算法
随着电动汽车(ev)数量的不断增加,车辆通信和车辆充电连接在一起,成为智能交通系统的一部分,推动了车对网(V2G)和车辆自组织网络(VANET)的发展。同时,电动汽车的充电行为影响着各个充电桩的能量分配和储能。调度技术在电力和通信领域发挥着重要的作用。充电行为与车辆通信密切相关,最终影响车辆调度。因此,分析用户计费与用户通信之间的关系是车辆调度的基础。为了解决这一问题,本文提出了基于亲密度和影响的连接支配集调度算法(IICDSA)来调整用户的充电行为以实现车辆调度:首先,构建V2G网络模型来描述车辆通信网络,然后设计基于属性关系的亲密度度量算法(IMRA)来分析用户之间的关系;其次,设计了基于用户亲密度(IWIU)的影响行走算法来衡量用户的影响力;最后,设计了基于用户影响和用户位置的连接支配集调度算法(CDSSIL),对用户进行分组调度。仿真结果表明,该算法降低了系统调度成本,提高了充电桩利用率。
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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