期刊文献+

基于蚁群算法的能量均衡传感网地理信息路由 被引量:3

Geographic Routing of Energy Balance Sensor Network based on Ant Colony Algorithm
下载PDF
导出
摘要 提出了一种基于蚁群算法的能量均衡传感网地理信息路由算法,用来保证具有生存周期的无线传感器网络能够在不损失其传感能力的情况下,生存更长的时间.实验证明,此算法能够均衡网络中的能量消耗,延长网络生存时间,并能有效提高报文发送成功率,避免拥塞. Ant-colony-based Geographic and Energy Balance Routing (AGEBR) were utilized to establish wireless sensor networks which had survival cycles. As a result, the sensor networks could last a longer period without losing their sensing ability. Experimental results demonstrated that the proposed approach can keep balance of the network energy consumption, prolong the network lifetime, and enhance the successful rate of sending packets without congestion.
作者 孙颖
出处 《沈阳大学学报(自然科学版)》 CAS 2012年第2期57-61,共5页 Journal of Shenyang University:Natural Science
基金 辽宁省科学技术厅科技攻关项目(2011216004)
关键词 蚁群算法 地理信息路由 能量均衡路由 无线传感器网络 ant colony algorithm geographic routing energy balance routing wireless sensor network
  • 相关文献

参考文献12

  • 1Singh S, Woo M, Raghavendra C S. Power-aware routing in mobile ad hoc networks [C]// MobiCom '98 Proceedings of the 4th annual ACM/IEEE international conference on Mobile computing and networking. New York: ACM New York, 1998:181-190.
  • 2Chang J H, Tassiulas L. Energy conserving routing in wireless ad-hoc networks [ C ] // INFOCOM 2000. Nineteenth Annual Joint Conference of the IEEE Computer and Communications Societies. Tel Aviv, Israel: IEEE, 2000(1) .. 22-31.
  • 3Li Q, Aslam J A, Rus D. Online power-aware routing in wireless ad-hoc networks[C]// MobiCom'01 Proceedings of the 7th annual international conference on Mobile computing and networking. New York: ACM New York, 2001:97-107.
  • 4Finn G G. Routing and addressing problems in large metropolitan-scale internetworks [ R ]. ISI/RR87180, University of Southern California.. Information Sciences Institute, 1987.
  • 5Takagi H, Kleinrock L. Optimal transmission ranges for randomly distributed packet radio terminals [J]. IEEE Transactions on Communications, 1984,32(3) :246-257.
  • 6Zhao J, Govindan R. Understanding packet delivery performance in dense wireless sensor networks [C] // SenSys'03 Proceedings of the 1st international conference on Embedded networked sensor systems. New York: ACM New York, 2003:1-13.
  • 7Zuniga M, Krishnamachari B. Analyzing the transitional region in low power wireless Iinks[C]//IEEE Secon 2004, 2004:517-526.
  • 8Seada K, Zuniga M, Helmy A, et al. Energy efficient forwarding strategies for geographic routing in wireless sensor networks[C]// SenSys'04 Proceedings of the 2nd international conference on Embedded networked sensor systems. New York: ACM New York, 2004:108-121.
  • 9Zorzi M, Armaroli A. Advancement optimization in multihop wireless networks [C]// 2003 IEEE 58th Vehicular Technology Conference, 2003(5)..2891-2894.
  • 10Yu Y, Estrin D, Govindan R Geographical and energy-- aware routing: A recursive data dissemination protocol for wireless sensor networks [ R ]. TR-01-0023, UCLA.. Computer Science Department, 2001.

二级参考文献7

共引文献4

同被引文献37

  • 1Xu Y X, Gao X, Sun Z Y. WSN Node Localization Algorithm Design Based on RSSI Technology [ C ] // International Conference on Intelligent Computation Technology and Automation ( ICICTA ), 2012. Zhangjiajie: I-Unknown] 556 - 559.
  • 2Zhu S H, Ding Z G. Joint Synchronization and Localization Using TOAs: A Linearization Based WLS Solution [J ]. IEEE Journal on Selected Areas in Communications, 2010,28(7) : 1017 - 1025.
  • 3Shi H Y, Gao J Z. A New Hybrid Algorithm on TDOA Localization in Wireless Sensor Network [C] /// IEEE International Conference on Information and Automation (ICIA), 2011. Shenzhen:[Unknown], 606 - 610.
  • 4Chan F K, Wen C Y. Adaptive AOA/TOA Localization Using Fuzzy Particle Filter for Mobile WSNs[C]//IEEE Vehicular Technology Conference, 2011. Budapest: [Unknown], 1 - 5.
  • 5Bulusu N, Heidemann J, Estrin D. GPS-less Low Cost Outdoor Localization for Very Small Devices[J]. IEEE Personal Communications Magazine, 2000,7(5)..28 - 34.
  • 6Wang J, Urriza P, Han Y X. Weighted Centroid Localization Algorithm: Theoretical Analysis and Distributed Implementation [J ]. IEEE Transactions on Wireless Communications, 2011,10(10)~3403 - 3413.
  • 7He T, Huang C, Blum B M. Range-free LocalizationSchemes for Large Scale Sensor Networks [C] // Proceedings in MobiCom'03, San Diego, CA, USA. New York: ACM, 81- 95.
  • 8Meertens L, Fitzpatrick S. The Distributed Construction of a Global Coordinate System in a Network of Static Computational Nodes from Inter-Node Distances[R]. Palo Alto, CA, USA.. Kestrel Institute, 2004.
  • 9Tran D A, Nguyen T. Localization in Wireless Sensor Networks Based on Support Vector Maehines[J]. IEEE Transaction on Parallel and Distributed Systems, 2008,19 (7) :981 - 994.
  • 10Qiu J F, Zhang H tL A Dictionary Classification Approach For Wireless Sensor Network Loealization[C] ffProeeedings of IEEE Youth Conference Information, Computing and Telecommunication, 2009. Beijing: [Unknown], 23 - 26.

引证文献3

二级引证文献6

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