Title :
A Wireless ZigBee Router with P-H-T Sensing for Health Monitoring
Author :
Sun, F.M. ; Fang, Zhou ; Zhao, Zhen ; Xu, Z.H. ; Tan, Jason ; Chen, D.L. ; Du, L.D. ; Qian, Y.M. ; Hui, H.Y. ; Tian, L.L.
Author_Institution :
State Key Lab. of Transducer Technol., Inst. of Electron., Beijing, China
Abstract :
with the increase of the aging population, the health of the aging will become a global focus. Wireless body area network, which as a low-cost, convenient and easy to use health monitoring system is being widely researched and now it has gained very large advancement. In this paper, we introduced the design and development of a wireless router which also integrated atmospheric Pressure, Humidity and Temperature (P-H-T) sensing functions for the body area network to relay different kinds of physiological signals from a comparatively further place. The standout advantages of the wireless router we designed can be summarized as the following 4 points: 1. High network throughput rate: the network throughput rate could be as high as 73.6Kbytes/s when the data transmitted through three jumps; 2. Low packet loss rate: the packet loss rate is just 0.4% when date transmitted 50 meters through three jumps; 3. High transmission power: to enhance the wireless communication capability, wireless power amplifier is applied and the transmission power of the router can be up to 20dBm; 4. Multi-functions: besides the relay function, the router could also perform the P-H-T environment monitoring function. In this paper, we mainly introduced the design and implementation of the zigbee router, and then we described the experiments done on the network performance and the health and environment monitoring function. The designed zigbee router could also be used in other many applications such as elderly activity monitoring of the community, the forest fire detection, and so on.
Keywords :
body area networks; health care; humidity measurement; patient monitoring; power amplifiers; pressure measurement; telecommunication network routing; temperature measurement; P-H-T environment monitoring function; P-H-T sensing; aging population; elderly activity monitoring; forest fire detection; health monitoring; integrated atmospheric pressure-humidity-temperature sensing functions; physiological signals; relay function; transmission power; wireless ZigBee router; wireless body area network; wireless communication capability; wireless power amplifier; zigbee router; Monitoring; Temperature measurement; Temperature sensors; Throughput; Wireless communication; Wireless sensor networks; Zigbee; zigbee router; health monitoring; living environment monitoring; good network performance;
Conference_Titel :
Green Computing and Communications (GreenCom), 2013 IEEE and Internet of Things (iThings/CPSCom), IEEE International Conference on and IEEE Cyber, Physical and Social Computing
Conference_Location :
Beijing
DOI :
10.1109/GreenCom-iThings-CPSCom.2013.326