| 注册
首页|期刊导航|科技创新与应用|电动汽车有序充电智能管控装置设计

电动汽车有序充电智能管控装置设计

刘元彬 赵怡豪 范学忠 孔令鑫 岳仁峰 苏炎

科技创新与应用2024,Vol.14Issue(17):51-54,4.
科技创新与应用2024,Vol.14Issue(17):51-54,4.DOI:10.19981/j.CN23-1581/G3.2024.17.012

电动汽车有序充电智能管控装置设计

刘元彬 1赵怡豪 2范学忠 3孔令鑫 4岳仁峰 5苏炎6

作者信息

  • 1. 山东大学 控制科学与工程学院,济南 250061
  • 2. 齐鲁工业大学(山东省科学院),济南 250353
  • 3. 山东爱普电气设备有限公司,济南 250000
  • 4. 山东电工电气集团有限公司,济南 250000
  • 5. 山东爱普电气设备有限公司济南高新分公司,济南 250000||国网山东济南市历城区供电公司,济南 250100
  • 6. 国网山东济南市历城区供电公司,济南 250100
  • 折叠

摘要

Abstract

The charging infrastructure of new energy vehicles is an important part of the new energy vehicle industry and the most important supporting infrastructure of new energy vehicles.In order to solve the problem that the existing charging piles can not carry out remote management control and data acquisition,we have designed an intelligent control device for orderly charging of electric vehicles based on the existing charging piles and national standards.The device is mainly composed of a data transfer unit(DTU)and a charge management controller.DTU communicates with each charge management controller and the total watt-hour meter of the basic load of the community,and communicates with the server through the Ethernet interface to realize remote data transmission and transfer.At the same time,the connection problem between the charging pile and the server is solved.As the core component,the charge management controller has the function of controlling the on-off of the charging pile and collecting the charging status information.By receiving instructions from the server,it can realize the remote control of the charging pile.At the same time,the charging management controller can also collect the charging status information of the charging pile in real time,and transmit these information to the server for users and administrators to view and monitor.

关键词

充电桩/充电控制/数据转换单元(DTU)/远程控制/电动汽车

Key words

charging pile/charging control/data transfer unit(DTU)/remote control/electric vehicle

分类

交通工程

引用本文复制引用

刘元彬,赵怡豪,范学忠,孔令鑫,岳仁峰,苏炎..电动汽车有序充电智能管控装置设计[J].科技创新与应用,2024,14(17):51-54,4.

基金项目

济南市科技计划(后补助)项目社会民生专项(202131009) (后补助)

科技创新与应用

2095-2945

访问量0
|
下载量0
段落导航相关论文