An e-tag used on the freeway is a kind of passive sensors composed of sensors and radio- frequency identification (RFID) tags. The principle of the electronic toll collection system is that the sensor emits radio wa...An e-tag used on the freeway is a kind of passive sensors composed of sensors and radio- frequency identification (RFID) tags. The principle of the electronic toll collection system is that the sensor emits radio waves touching the e-tag within a certain range, the e-tag will respond to the radio waves by induction, and the sensor will read and write information of the vehicles. Although the RFID technology is popularly used in campus management systems, there is no e-tag technology application used in a campus parking system. In this paper, we use the e-tag technology on a campus parking management system based on the cloud-based construction. By this, it helps to achieve automated and standardized management of the campus parking system, enhance management efficiency, reduce the residence time of the vehicles at the entrances and exits, and improve the efficiency of vehicles parked at the same time.展开更多
Deploying and Implementing RFID Systems for tracking and controlling products in supply chain management is not affordable for small and midsized companies due to its complexity, cost, and difficulties pertaining data...Deploying and Implementing RFID Systems for tracking and controlling products in supply chain management is not affordable for small and midsized companies due to its complexity, cost, and difficulties pertaining data management and maintenance. Cloud computing can be used to mitigate the risks associated with the implementation and deployment of RFID based on system in supply chain management because the complex system for data filtering, management and maintenance can be implemented on the cloud that otherwise requires the purchase of new hardware, staff and professional services.展开更多
目的实现从献血者血管到患者血管的全程冷链监控。方法通过采集终端[射频识别(Radio Frequency Identification,RFID)技术标签、温度检测探头、GPS]、数据管理平台和云平台实时监控温度信息,实现数据共享并对异常温度信息及时干预。比...目的实现从献血者血管到患者血管的全程冷链监控。方法通过采集终端[射频识别(Radio Frequency Identification,RFID)技术标签、温度检测探头、GPS]、数据管理平台和云平台实时监控温度信息,实现数据共享并对异常温度信息及时干预。比较血液冷链监控系统升级前后的血液采集、运输、制备、储存和发放等环节温度的变化并自动记录,分析关键指标、监测项目、工作效率、错误率和异常情况的报警情况。结果从10个关键指标分析冷链监控系统升级前后的变化,系统升级后满意度综合评分优于原系统;监测数量和项目均有大幅度提升;比较手工录入和RFID扫描输入发现,录入用时和错误率方面的差异均具有统计学意义(P<0.001)。结论5G云平台引入血液冷链监控系统,不断完善的功能和实时连续的监测系统,可有效保障血液采集到输注等各环节的安全供应。展开更多
文摘An e-tag used on the freeway is a kind of passive sensors composed of sensors and radio- frequency identification (RFID) tags. The principle of the electronic toll collection system is that the sensor emits radio waves touching the e-tag within a certain range, the e-tag will respond to the radio waves by induction, and the sensor will read and write information of the vehicles. Although the RFID technology is popularly used in campus management systems, there is no e-tag technology application used in a campus parking system. In this paper, we use the e-tag technology on a campus parking management system based on the cloud-based construction. By this, it helps to achieve automated and standardized management of the campus parking system, enhance management efficiency, reduce the residence time of the vehicles at the entrances and exits, and improve the efficiency of vehicles parked at the same time.
文摘Deploying and Implementing RFID Systems for tracking and controlling products in supply chain management is not affordable for small and midsized companies due to its complexity, cost, and difficulties pertaining data management and maintenance. Cloud computing can be used to mitigate the risks associated with the implementation and deployment of RFID based on system in supply chain management because the complex system for data filtering, management and maintenance can be implemented on the cloud that otherwise requires the purchase of new hardware, staff and professional services.
文摘目的实现从献血者血管到患者血管的全程冷链监控。方法通过采集终端[射频识别(Radio Frequency Identification,RFID)技术标签、温度检测探头、GPS]、数据管理平台和云平台实时监控温度信息,实现数据共享并对异常温度信息及时干预。比较血液冷链监控系统升级前后的血液采集、运输、制备、储存和发放等环节温度的变化并自动记录,分析关键指标、监测项目、工作效率、错误率和异常情况的报警情况。结果从10个关键指标分析冷链监控系统升级前后的变化,系统升级后满意度综合评分优于原系统;监测数量和项目均有大幅度提升;比较手工录入和RFID扫描输入发现,录入用时和错误率方面的差异均具有统计学意义(P<0.001)。结论5G云平台引入血液冷链监控系统,不断完善的功能和实时连续的监测系统,可有效保障血液采集到输注等各环节的安全供应。