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核辐射环境下佩戴生理监测计算机系统研究    

Research on the Computer System to Monitor the Physiological Parameter under Nuclear Radiation Environment

文献类型:期刊文献

中文题名:核辐射环境下佩戴生理监测计算机系统研究

英文题名:Research on the Computer System to Monitor the Physiological Parameter under Nuclear Radiation Environment

作者:王骥[1];沈玉利[2];谢仕义[1];任肖丽[1]

机构:[1]广东海洋大学信息学院,湛江524088;[2]仲恺农业技术学院,广州510225

年份:2009

卷号:29

期号:3

起止页码:584

中文期刊名:核电子学与探测技术

外文期刊名:Nuclear Electronics & Detection Technology

收录:Scopus、CSCD2011_2012、北大核心2008、北大核心、CSCD

基金:广东省自然基金资助(07010116);广东省粤港关键领域重点突破项目(2006B23004006)

语种:中文

中文关键词:核辐射;生理参数监测;无线传感器网络;全球定位系统+通用分组无线业务

外文关键词:Nuclear Radiation, physiological parameter monitoring, wireless sensor network, GPS+GPRS

中文摘要:针对目前特种监护设备接线复杂以及难以检查潜在健康危险的情况,提出了基于无线传感器网络的动态可佩戴生理监测平台,节点包括呼吸、心电、体位、体动、体温等多生理参数类型智能传感器。网关节点采用GPRS通信方式完成数据远程准确传送。所研制仿真系统,由GPS+GPRS模块XT5开发网关,节点采用Crossbow公司的MICA2和MICA2 DOT的等类型点状系列传感器。由志愿者佩戴后,将采取的生理和位置信息准确传到500公里外的监测点,终端计算机直观地查看到了受试者传送的信息。系统稳定地工作在2.4GHz频段,发射功率-5dB,数据速率最大40kbps。初步实验结果表明,系统原型可由特种监护者工作时佩戴于身体相应部位实时动态生理定位监测。系统通讯距离远、覆盖范围大,适合于核辐射环境下应用。

外文摘要:In view of special monitoring equipment wiring complexity and not checking potential health risks currently. Methods To propose monitoring platform of automatic wearing physiology based on wireless sensor network (WSN), and nodes include multi-physiological parameter intelligent sensors such as respiration,ECG and position, movement, temperature of body. Network gateway completed the data remote transmission accurately by using GPRS communication mode. Researched simulation system developed network gateway by XT5 and nodes used punctate series sensors such as MICA2 and MICA2DOT of Crossbow Company. when experimenter wore the special monitoring the collected information of physiology and location was accurately transmitted to the monitoring point that was 500 kilometers away, thereafter terminal computer visually supervised the transmitted information of volunteers. The system stably operates at operating frequcency 2. 4GHz bands, transmit power-5dB, data rate 40Kbps or so. The principial result shows. The located monitoring of real-time dynamic physiology was carried out for the system prototype worn on the supervisor' s physical corresponding parts. The system is suitable for application in Nuclear Radiation Environment.

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