|本期目录/Table of Contents|

[1]黄 涛,周 能,胡 凯,等.一种充电桩安全充电状态监测系统设计与实现[J].工业仪表与自动化装置,2024,(06):3-8.[doi:10.19950/j.cnki.CN61-1121/TH.2024.06.001]
 HUANG Tao,ZHOU Neng,HU Kai,et al.Design and implementation of an charging station safety charging state monitoring system[J].Industrial Instrumentation & Automation,2024,(06):3-8.[doi:10.19950/j.cnki.CN61-1121/TH.2024.06.001]
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一种充电桩安全充电状态监测系统设计与实现(PDF)

《工业仪表与自动化装置》[ISSN:1000-0682/CN:61-1121/TH]

卷:
期数:
2024年06期
页码:
3-8
栏目:
出版日期:
2024-12-15

文章信息/Info

Title:
Design and implementation of an charging station safety charging state monitoring system
文章编号:
1000-0682(2024)06-0003-06
作者:
黄 涛周 能胡 凯
(1.国网湖北省电力有限公司恩施供电公司,湖北 恩施,445000;2.湖北央中巨石信息技术有限公司,湖北 武汉,430061;3.南昌蛋讯电子科技有限公司,江西 南昌,330006)
Author(s):
HUANG Tao ZHOU Neng HU Kai et al
(1.State Grid Hubei Electric Power Co., Ltd. Enshi Power Supply Company, Hubei Enshi 445000,China;2.Hubei Yangzhong Jushi Information Technology Co., Ltd., Hubei Enshi 430061,China;3. Nanchang Danxun Electronic Technology Co., Ltd., Jiangxi Nanchang 330006, China)
关键词:
物联网充电桩安全充电监测系统
Keywords:
Internet of Things charging station safe charging control system
分类号:
TN06
DOI:
10.19950/j.cnki.CN61-1121/TH.2024.06.001
文献标志码:
A
摘要:
为解决现有成片电动车充电桩充电过程中电压不稳定,并且得不到及时监管,从而造成电动车损坏的情况。设计了一种基于物联网的充电桩安全充电状态监测系统。该系统工作时,首先通过输入缺相检测电路、输出电压采样电路以及温度检测电路检测充电桩输入的三相电压、输出的直流电压以及工作时温度情况,在经过降噪和压缩处理之后,通过RoLa无线传感网络上传至后台的数据服务器进行存储。后台监控终端则可以自动调取数据服务器的数据,来进行判断是否充电桩是否处于安全状态从而是否充电。实验表明,该系统能够精确、实时检测当前环境下的环境和电量参数,同时具有传输距离远、通信可靠性与稳定性更强、自组网以及低功耗等,能够为电动车安全充电提供良好决策。
Abstract:
To solve the problem of voltage instability during the charging process of existing bulk electric vehicle charging stations, which cannot be monitored in a timely manner, resulting in damage to electric vehicles. A secure charging status monitoring system for charging stations based on the Internet of Things has been designed. When the system is working, it first detects the three-phase voltage input, DC voltage output, and operating temperature of the charging station through a voltage circuit. After noise reduction and compression processing, it is uploaded to the back-end data server for storage through RoLa wireless sensor network. The back-end monitoring terminal can automatically retrieve data from the data server to determine whether the charging station is in a safe state and whether it can be charged. The experiment shows that the system can accurately and real-time detect the environmental and electrical parameters in the current environment, and has the advantages of long transmission distance, stronger communication reliability and stability, self-organized network, and low power consumption. It can provide good decision-making for safe charging of electric vehicles.

参考文献/References:

[1] 胡路,乐诗彤,朱娟秀.考虑多充电桩排队和时间窗的电动货车路径规划[J].西南交通大学学报:1-9.

[2] 陈卓,刘佳,朱洋洋.基于正交试验法的直流充电桩功率自动优化控制系统[J].自动化与仪器仪表,2023(04):309-314.?div>[3] 卢新强.120kW电动汽车直流充电桩设计研究[J].电工材料,2023(02):23-26.
[4] 章庆科,张文谦.电动汽车直流充电桩通信协议测试系统探索与设计[J].计量与测试技术,2023,50(06):31-33.
[5] 高纯斌.基于stm32f407的直流快速充电桩控制系统的研发[J].吉林工程技术师范学院学报,2023,39(06):92-96.
[6] 陈帅雨,海旭强.一种大电流超充的液冷充电桩线缆[J].电线电缆,2023(03):33-35.
[7] 俞晓吉,袁晟,黄善南,等.基于拓扑理论与异常算法的交流充电桩布局选址方法[J].电子设计工程,2023,31(12):155-159.
[8] 吴国坚,范俊杰,童俊,等.海量充电桩计量智慧监管体系研究[J].中国计量,2023(06):94-97.
[9] 章家辉,吴钟鸣,赵文博,等.可移动式电动汽车充电桩的外形结构设计研究[J].机械工程师,2023(06):40-43+46.
[10] 唐义山,苏志从,王子睿,等.基于STM32F103的7kW单相交流充电桩的系统设计与实现[J].电气开关,2023,61(02):8-13+17.
?11] 袁亦凡.电动汽车智能充电桩控制系统的研究[J].现代工业经济和信息化,2023,13(05):124-126.
[12] 周文斌,刘士峰,靳阳,等.充电桩实验室计量校准分析平台及关键技术[J].信息技术,2023(05):170-174.
[13] 肖应伟.“双碳”理念下的新能源汽车充电产品造型设计研究[J].艺术与设计(理论),2023,2(05):112-114.
[14] 苓树奇,安建珍,康学福,等.电动汽车用非车载充电桩后级DC模块设计与实现[J].电子产品世界,2023,30(05):82-84.
[15] 徐达成,谢鑫,朱涵,等.各国电动汽车交流充电桩应用标准解读及技术发展趋势[J].汽车与新动力,2023,6(02):5-10.

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备注/Memo

备注/Memo:
收稿日期:2024-04-15基金项目:江西省教育厅科学技术研究项目(GJJ2202718)第一作者:黄涛(1969—),男,汉族,湖北恩施人,专科,副高,研究方向为数字化?通信作者:周能(1984—),男,汉族,湖北天门人,硕士,中级工程师,研究方向为数字化?
更新日期/Last Update: 1900-01-01