The article design a vehicle monitoring terminal system based on μ C/OS and introduces the hardware system design of STM32F407 as the control core. On the basis of transplant μ C/OS operating system, the system soft...The article design a vehicle monitoring terminal system based on μ C/OS and introduces the hardware system design of STM32F407 as the control core. On the basis of transplant μ C/OS operating system, the system software architecture, application-layer multi- task and the priority has been designed, focuses on the use GPRS tasks, preparation methods GPS tasks. After experimental tests, the system is stable and reliable, the realization of real-time vehicle monitoring. System design methodology for embedded system application development has a certain rcfcrence value.展开更多
目的基于现代化信息技术监控、调度车辆,实现对车辆的动态管理.防止和减少交通事故,提高交通运输管理能力。方法通过集成使用GIS(geographic information system,地理信息系统)、GPS(global positioning system,全球定位系统)、GSM(glob...目的基于现代化信息技术监控、调度车辆,实现对车辆的动态管理.防止和减少交通事故,提高交通运输管理能力。方法通过集成使用GIS(geographic information system,地理信息系统)、GPS(global positioning system,全球定位系统)、GSM(global system for mobile communications,全球移动通信系统)、GPRS(general packet radio service,通用无线分组业务)、中间件等技术,并按图属一体化、多尺度数据无缝集成的建库思想,完成了系统设计的数据建库、无线网络设置、道路匹配和信息显示等关键技术问题。结果实现了对多种车辆目标的实时跟踪和动态管理。结论综合使用GIS,GPS,GSM/GPRS等信息技术,建立车辆动态监控系统,是现代交通运输发展的必然趋势。展开更多
文摘The article design a vehicle monitoring terminal system based on μ C/OS and introduces the hardware system design of STM32F407 as the control core. On the basis of transplant μ C/OS operating system, the system software architecture, application-layer multi- task and the priority has been designed, focuses on the use GPRS tasks, preparation methods GPS tasks. After experimental tests, the system is stable and reliable, the realization of real-time vehicle monitoring. System design methodology for embedded system application development has a certain rcfcrence value.
文摘目的基于现代化信息技术监控、调度车辆,实现对车辆的动态管理.防止和减少交通事故,提高交通运输管理能力。方法通过集成使用GIS(geographic information system,地理信息系统)、GPS(global positioning system,全球定位系统)、GSM(global system for mobile communications,全球移动通信系统)、GPRS(general packet radio service,通用无线分组业务)、中间件等技术,并按图属一体化、多尺度数据无缝集成的建库思想,完成了系统设计的数据建库、无线网络设置、道路匹配和信息显示等关键技术问题。结果实现了对多种车辆目标的实时跟踪和动态管理。结论综合使用GIS,GPS,GSM/GPRS等信息技术,建立车辆动态监控系统,是现代交通运输发展的必然趋势。