期刊文献+

一种RFID路由节点地址分配方法 被引量:2

A RFID Routing Node Address Assignment Method
下载PDF
导出
摘要 由于物联网RFID节点分布的非均匀性,采用分布式地址分配机制容易出现部分节点地址空间富裕、部分节点地址空间不足的情况.为此,提出一种RFID路由节点地址分配方法,其特点是引入节点权值来反映节点分布的非均匀性,节点地址块的大小根据节点权值的不同动态分配.具体实现包括邻接表建立、确定节点间父子关系和节点地址值分配3个阶段.该方法能较好地提高节点地址分配成功率、降低平均通信开销. Because of the distribution of the RFID node, adopting the distributed address distribution mech.anism is easy to be part of the node address space rich and part of the node address the space insufficient. Putting forward a RFID routing node address assignment method,it adopts the weights to reflect the distribution of the node, according to the different weights the size of node addresses block node dynamic allocate. Its implementation includes building adjacency list, ensuring the relationship between the nodes and node address distribution. This method can improve the success rate of node addresses distribution and reduce average communication overhead.
出处 《江西师范大学学报(自然科学版)》 CAS 北大核心 2014年第2期128-131,共4页 Journal of Jiangxi Normal University(Natural Science Edition)
基金 国家自然科学基金(61172156 61174123) 广东省战略性新兴产业发展专项资金(2011168012) 深圳市基础应用研究(JCYJ20130401095559824)资助项目
关键词 RFID路由 地址分配 节点权值 邻接表 RFID routing address assignment node weights adjacency list
  • 相关文献

参考文献8

  • 1Kohvakkam, Hannikainenm, Timo D. Wireless sensor pro- to-type platform [ C ]//Proc of the 29th Annual Confer- ence on the IEEE Industrial Electronics Society. Virginia:2003 : 1499-1504.
  • 2Alippic, Vanining. An application-level methodology to guide the design of intelligent processing, power-aware passive RFIDs [ C ]///Proc of IEEE ISCAS. Kobe : IEEE Press, 2005:5509 -5512.
  • 3Mesar Nam, Lyong, Pradhan S, et al. Demo abstract: auto- mating server tracking for data centers [ C ]///Proc of the 2nd International Conference on Embedded Networked Sensor Systems. New York : ACM Press ,2004 : 307.
  • 4Giri D, Roy U K. Single level address reorganization in wireless personal area network [ C ]//Proceedings of the 2009 International Conference on Computers and Devices for Communication. Piscataway, N J: IEEE Press, 2009 : 1-4.
  • 5Pan M S, Tsai C H, Tseng Y C. The orphan problem in ZigBee wireless networks [ J ]. IEEE Transactions on Mo- bile Computing ,2009,8 ( 11 ) : 1573-1584.
  • 6Giri D, Roy U K. Address borrowing in wireless personal area network [ C] //IACC 2009:2009 IEEE International Advance Computing Conference. Piscataway, NJ- IEEE Press ,2009 : 181-186.
  • 7Fang Miaoqi, Wang Jian, Xu Xianghua. A preemptive dis- tributed address assignment mechanism for wireless sensor networks [ C ] //WICOM' 08 : Proceedings of the 4th Inter- national Conference on Wireless Communications, Networ- king and Mobile Computing. Piscataway, NJ : IEEE Press, 2008 : 1-5.
  • 8姚玉坤,李鹏翔,任智,顾缘.适用于ZigBee网络的借地址分配算法[J].计算机应用,2011,31(8):2044-2047. 被引量:9

二级参考文献11

  • 1PAN M-S, TSAI C-H, TSENG Y-C. The orphan problem in ZigBee wireless networks [ J]. IEEE Transactions on Mobile Computing, 2009, 8(11): 1573 -1584.
  • 2ZigBee Alliance. Document 053474r17 ZigBee specification [ S], 2008.
  • 3SCHURGERS C, KULKARNI G, SRIVASTAVA M B. Distributed on-demand address assignment in wireless sensor networks [ J]. IEEE Transactions on Parallel and Distributed Systems, 2002, 13 (10): 1056 - 1065.
  • 4THOPPIAN M R, PRAKASH R. A distributed protocol for dynamic address assignment in mobile Ad Hoe networks [ J]. IEEE Transac- tions on Mobile Computing, 2006, 5(1) : 4 - 19.
  • 5GIRI D, ROY U K. Address borrowing in wireless personal area network [ C]//IACC 2009:2009 IEEE International Advance Com- puting Conference. Piscataway, NJ: IEEE Press, 2009:181 -186.
  • 6FANG MIAOQI, WANG JIAN, XU XIANGHUA. A preemptive dis- tributed address assignment mechanism for wireless sensor networks [C]//WICOM'08: Proceedings of the 4th International Conference on Wireless Communications, Networking and Mobile Computing. Piscataway, NJ: IEEE Press, 2008:1-5.
  • 7GIRI D, ROY U K. Single level address reorganization in wireless personal area network [ C]// Proceedings of the 2009 International Conference on Computers and Devices for Communication. Piscat- away, NJ: IEEE Press, 2009:1-4.
  • 8LEE K K, KIM S H, CHOI Y S, et al. A mesh routing protocol u- sing cluster label in the ZigBee network [ C]// 2006 IEEE Interna- tional Conference on Mobile Ad Hoc and Sensor Systems. Piscat- away, NJ: IEEE Press, 2006:801-806.
  • 9HAMMOODI I S, STEWART B G, KOCIAN A, et al. A compre- hensive performance study of OPNET modeler for ZigBee wireless sensor networks [ C]// Proceedings of the Third International Con- ference on Next Generation Mobile Applications, Services and Tech- nologies. Washington, DC: IEEE Computer Society, 2009: 357- 362.
  • 10The LANMAN Standards Committee. IEEE Std 802.15.4TM-2003 Part 15.4: Wireless Medium Access Control (MAC) and Physical Layer (PHY) Specifications for Low-Rate Wireless Personal Area Networks (LR-WPANs) [S]. Piscataway, NJ: IEEE Press, 2003.

共引文献8

同被引文献28

  • 1Li, Gui-Sen, Wang, Wan-Liang, Yao, Xin-Wei.An Adaptive and Opportunistic Broadcast Protocol for Vehicular Ad Hoc Networks[J].International Journal of Automation and computing,2012,9(4):378-387. 被引量:6
  • 2World Bank Group. The world hank indicators [ EB/OL]. [2014- 06-06]. http://data, worldbank, org/indicator.
  • 3SUN J, ZHU X, ZHANG C, et al. ReseueMe: location-based se- cure and dependable VANETs for disaster rescue [ J]. IEEE Journal on Selected Areas in Communications, 2011, 29(3): 659 -669.
  • 4OLIVEIRA R, LUfS M, FURTADO A, et al. Improving path dura- tion in high mobility vehicular Ad Hoc networks [ J]. Ad Hoc Net- works, 2013, 11(1): 89-103.
  • 5FALL K. A delay-tolerant network architecture for challenged Inter- nets [ C]//SIGCOMM '03: Proceedings of the 2003 Conference on Applications, Technologies, Architectures, and Protocols for Com- puter Communications. New York: ACM, 2003:27 -34.
  • 6ZHU H, ZHU Y, LI M, et al. SEER: metropolitan-scale traffic perception based on lossy sensory data [ C]// INFOCOM 2009: Proceedings of 28th IEEE Conference on Computer Communica- tions. New York: IEEE Communications Society, 2009:217 - 255.
  • 7ALTIN A, FORTZ B, THORUP M. Intra-domain traffic engineer- ing with shortest path routing protocols [ J]. Annals of Operations Research, 2013, 204-(1): 65-95.
  • 8JAIN S, FALL K, PATRA R. Routing in a delay tolerant network [ C]// SIGCOMM 2004: Proceedings of the 2004 Conference on Applications, Technologies, Architectures, and Protocols for Com- puter Communications. New York: ACM, 2004:145-158.
  • 9VELLAMBI B N, SUBRAMANIAN R, FEKRI F. Reliable and ef- ficient message delivery in delay tolerant networks using rateless codes [ C]// MobiOpp '07: Proceedings of the 1st International MobiSys Workshop on Mobile Opportunistic Networking. NewYork: ACM, 2007:91-98.
  • 10ZHAO J, CAO G. VADD: Vehicle-Assisted data delivery in vehic- ular Ad Hoc networks[ C].//Proceedings of the INFOCOM 2006. New York: IEEE Communications Society, 2006. 1 - 12.

引证文献2

二级引证文献3

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