期刊文献+

基于ZigBee和RFID的消防员定位系统设计 被引量:16

Design of positioning system for firemen based on ZigBee and RFID
在线阅读 下载PDF
导出
摘要 针对火灾现场遇险消防员定位不准的问题,设计了一种基于ZigBee和RFID技术的消防员定位系统。该系统中将ZigBee模块与RFID模块相结合构成智能阅读器,利用ZigBee模块自组网能力扩展了RFID标签定位距离,利用RFID模块的信息采集功能扩展了ZigBee节点信息识别能力。在系统算法设计中提出了一种改进的四边测距定位算法,该算法首先利用高斯模型分布函数及单传感器分批估计融合理论对测得的RSSI数据进行融合优化,然后采用四边加权质心定位与梯度下降法相结合的算法对待测目标进行定位。通过仿真实验表明,该改进的算法定位精度较高,适合于室内火灾现场对遇险消防员的定位。 Aiming at the problem that the firemen in distress can't be well positioned in the fire scene,a positioning system for firemen is designed on the basis of ZigBee and RFID technology.In this system the ZigBee module and RFID module are combined to be an intelligent reader.By using the self networking capability of the ZigBee module,the RFID tag positioning distance is extended,and by using information collection function of the RFID module,the ZigBee node information recognition is expanded.In the design of system algorithm,the improved quadrilateral ranging algorithm is proposed,which optimizes the measured RSSI data by using the Gauss model distribution function and the single sensor batch estimation fusion theory,and locates the target by using the algorithm of combining the weighted centroid positioning with the gradient descent method.The simulation experiment shows that the improved algorithm has high positioning accuracy,which is suitable for positioning firemen in distress at indoor fire scene.
作者 张开生 王静
出处 《实验技术与管理》 CAS 北大核心 2017年第7期122-126,140,共6页 Experimental Technology and Management
基金 陕西省西安未央科技区项目"基于物联网的信息监控平台研究"(2012-03) 陕西校地合作项目(2011K-29)
关键词 智能阅读器 定位系统 RFID ZIGBEE intelligent reader positioning system RFID ZigBee
  • 相关文献

参考文献7

二级参考文献49

  • 1苏志雄,郝选明.心率监测在运动训练中的作用及影响因素[J].成都体育学院学报,2002,28(2):89-91. 被引量:70
  • 2王福豹,史龙,任丰原.无线传感器网络中的自身定位系统和算法[J].软件学报,2005,16(5):857-868. 被引量:673
  • 3陈维克,李文锋,首珩,袁兵.基于RSSI的无线传感器网络加权质心定位算法[J].武汉理工大学学报(交通科学与工程版),2006,30(2):265-268. 被引量:207
  • 4周天,斯彩英,陈伟.城市地下空间火灾早期探测及定位技术[J].消防科学与技术,2007,26(5):544-546. 被引量:3
  • 5Bahl P, Padmanabhan V N. RADAR: An in-building RF-based user location and tracking system [ C ]//Proc of the IEEE INFCOM 2000. Vol. 2, Tel Aviv: IEEE Computer and Communications Societies,2000:775 -784.
  • 6Halter A, Hopper A, Steggles P, et al. The anatomy of a context-aware Application[ C ]//Proc of the 5th Annual ACM/IEEE Int'1 Conf on Mobile Computing and networking. Seattle : ACM Press, 1999:59 -68.
  • 7Girod L, Estrin D. Robust range estimation using acoustic and multimodal sensing[ C]//Proc of the IEEE/RSJ Int' 1 Conf on Intelligent Robots and System. Vol. 3, Maui : IEEE Robotics and Automation Society,2001:1312 -1320.
  • 8Niculeseu D, Nath B. Ad Hoc positioning system (APS) using AOA [ C ]//Proc of the IEEE INFCOM 2003. Vol. 3, SanFrancisco: IEEE Computer and Communications Societies, 2003: 1734 -1743.
  • 9Nicolescu D,Nath B. DV based positoning in Ad Hoc networks[J]. Journal of Telecommunication Systems ,2003,22 (1/4) :267 -280.
  • 10Doherty L,Pister K S l, Ghaoui L E. convex position estimation in wireless sensor networks [ C ]//Proc of the IEEE INFOCOM 2001. Vol. 3, Anchorage: IEEE Computer and Communications Societies,2001:1655 -1663.

共引文献89

同被引文献170

引证文献16

二级引证文献42

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部