电动汽车能量分配网络鲁棒性分析

Guangyu Lin, P. Yi, Liangqi Si, Ting Zhu, Xiuchen Jiang, Guojie Li, M. Begovic
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引用次数: 19

摘要

电动汽车(ev)可以通过V2G (Vehicle-to-Grid)作为存储在电动汽车中的电池能量与电网之间的媒介。结合车辆的移动性特点,电动汽车可以提供一种称为电动汽车能源网络的天然能量传输系统。本文分析了电动汽车能源网络中能源路线的特点,研究了交通拥堵对电动汽车能源分配网络的影响。针对城市交通拥堵的特点,提出了偶发拥堵算法和重复拥堵算法,并在电动汽车能源网络模型中进行了仿真。此外,定义了能量度(ED)和能源可利用率(ESAR)来反映电动汽车能源网络的当前状态。利用曼哈顿和先锋谷交通管理局(PVTA)的实际运输数据来分析所提出的电动汽车能源网络的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Robustness analysis on electric vehicle energy distribution networks
Electric Vehicles (EVs) can be used as a medium between the battery energy stored in EVs and the power grid through Vehicle-to-Grid (V2G). Combined with the characteristic that vehicles are mobile, EVs can provide a natural energy transmission system called EV energy network. This paper analyzes the features of energy routes in the EV energy network and studies the impact of traffic congestion on the EV energy distribution networks. Based on the characteristics of traffic congestion in the urban, sporadic congestion algorithm and recurring congestion algorithm are presented to simulate in a model of the EV energy network. Additionally, energy degree (ED) and energy source available rate (ESAR) are defined to reflect the current state of the EV energy network. The real-world transporting data in Manhattan and Pioneer Valley Transit Authority (PVTA) is utilized to analyze the robustness of the proposed EV energy network.
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