传感器世界2024,Vol.30Issue(7) :18-23.DOI:10.16204/j.sw.issn.1006-883X.2024.07.004

油电混动小车智能控制系统设计

Design of Intelligent Control System of Hybrid Car

刘志强 江世明 刘易菲 陈鑫宇
传感器世界2024,Vol.30Issue(7) :18-23.DOI:10.16204/j.sw.issn.1006-883X.2024.07.004

油电混动小车智能控制系统设计

Design of Intelligent Control System of Hybrid Car

刘志强 1江世明 1刘易菲 1陈鑫宇1
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作者信息

  • 1. 邵阳学院,湖南邵阳 422000
  • 折叠

摘要

油电混动汽车的智能控制系统在提升汽车性能与保护地球环境等方面发挥着重要作用.但目前调研发现,新能源汽车存在着电池馈电、电力显示不准、电池续航能力弱与油电模式切换速度不平稳等问题.文章针对以上问题提出了基于物联网和STM32的油电混动小车智能监测与控制方案,在EDA和MDK中,对电路和程序进行了设计,借助仪器仪表对系统进行了测试.系统实测结果表明,该系统可以实现对于电池容量的精准检测与显示,电池及时充电续航与油电模式切换速度平稳运行,能较好解决上述存在的问题,并且具有物联网远程监控等特点.

Abstract

The intelligent control system of petrol-electric hybrid vehicles plays an important role in improving vehicle performance and protecting the earth environment. However,the current investigation found that new energy vehicles have problems such as battery feeding,inaccurate power display,weak battery life and uneven switching speed of gas-electric mode. Aiming at the above problems,the paper puts forward an intelligent monitoring and control scheme of oil-electric hybrid car based on the Internet of Things and STM32. In EDA and MDK,the circuit and program are designed,and the system is tested by means of instruments. The measured results of the system show that the system can achieve accurate detection and display of battery capacity,battery timely charging endurance and smooth operation of gas-electric mode switching speed,which can better solve the above existing problems,and has the characteristics of remote monitoring of the Internet of things.

关键词

STM32/物联网/油电混动小车智能监控/电池容量检测/速度平稳切换

Key words

STM32/Internet of Things/intelligent monitoring of hybrid car/battery capacity detection/smooth speed switching

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基金项目

邵阳学院研究生创新项目(CX2023SY056)

出版年

2024
传感器世界
北京信息科技大学

传感器世界

影响因子:0.196
ISSN:1006-883X
参考文献量5
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