期刊文献+

Scalable and Identifier/Locator-Splitting Routing Protocol for Mobile Ad Hoc Networks 被引量:3

Scalable and Identifier/Locator-Splitting Routing Protocol for Mobile Ad Hoc Networks
下载PDF
导出
摘要 In the traditional Internet Protocol (IP) architecture, there is an overload of IP semantic problems. Existing solutions focused mainly on the infrastructure for the fixed network, and there is a lack of support for Mobile Ad Hoc Networks (MANETs). To improve scalability. a routing protocol for MANETs is presented based on a locator named Tree-structure Locator Distance Vector (TLDV). The hard core of this routing method is the identifier/locator split by the Distributed Hash Table (DHT) method, which provides a scalable routing service. The node locator indicates its relative location in the network and should be updated whenever topology changes. Locator space is organized as a tree-structure, and the basic routing operation of the TLDV protocol is presented. TLDV protocol is compared to some classical routing protocols for MANETs on the NS2 platform. Results show that TLDV has better scalability. In the traditional Intemet Protocol (IP) architecture, there is an overload of IP sermntic problems. Existing solutions focused mainly on the infrastructure for the fixed network, and there is a lack of support for Mobile Ad Hoc Networks (MANETs). To improve scalability, a routing protocol for MANETs is presented based on a locator named Tree-structure Locator Distance Vector (TLDV). The hard core of this routing method is the identifier/locator split by the Distributed Hash Table (DHT) method, which provides a scalable routing service. The node locator indicates its relative location in the network and should be updated whenever topology changes, kocator space ks organized as a tree-structure, and the basic routing operation of the TLDV protocol is presented. TLDV protocol is compared to some classical routing protocols for MANETs on the NS2 platform Results show that TLDV has better scalability. Key words:
出处 《China Communications》 SCIE CSCD 2012年第1期102-110,共9页 中国通信(英文版)
基金 Acknowledgements This work was supported by the Hi-Tech Research and Development Program of China under Grant No.2007AA01Z407 the Co-Funding Project of Beijing Municipal education Commission under Grant No.JD100060630 National Foundation Research Project the National Natural Science Foundation Project under Grant No. 61170295 the Project of Aeronautical Science Foundation of China under Caant No.2011ZC51024 and the Fundamental Research Funds for the Central Universities.
关键词 网络基础设施 路由协议 可扩展性 移动AD 定位器 无线自组网 分裂 识别 MANETs multi-hop routing identifi- er/locator split distributed hash tables
  • 相关文献

参考文献26

  • 1BAlAKRISHNAN H, lAKSHMINARAYANAN K, RAT?NASAMY S, et al. A Layered Naming Architecture for the Intemet[J]. ACM SIGCDMM Computer Corrnnunication Re?view, 2004, 34(4): 343-352.
  • 2李秀芹,兰巨龙.基于标识的名字空间及对移动通信的支持研究[J].计算机工程与应用,2008,44(23):123-126. 被引量:1
  • 3STEW ART R., XIE Q, MORNEAULT K, et al. Stream Con?trol Transmission Protocol[S]. RFC 2960, 2000.
  • 4JOHNSON D, PERKINS C, ARKKO J, et al. Mobility Sup?port in IPv6[S]. RFC 3775, 2004.
  • 5PERKINS C. Ad Hoc Networking [M]. London: Addison?Wesley, 2001: 10-12.
  • 6SU B, PEl C, TANG J. Improved Capacity Scaling of Wire?less Ad Hoc Networks [J]. China Corrrnmications, 2010, 7 (5): 183-188.
  • 7FRIKSSON J, FALOUTSOS M, KRISHNAMURTHY S. Scal?able Ad Hoc Routing: the Case for Dynamic Addressing[C]// Proceedings of the 23rd Annual Joint Conference of the IEEE Corrputer and Cormunications Societies: March 7-11, 2004, Hong Kong, China. Piscataway: IEEE, 2004: 1108-1119.
  • 8PERKINS C, ROYER E M, DAS S. Ad Hoc On-Demand Distance Vector Routing (AODV)[OB/OL]. http://www.ietf. org/internet-drafts/draft-ietf-manet-aodv-13 .txt, 2010-12-09.
  • 9PERKINS C, BHAGW AT P. Highly Dynamic Destination?sequenced Distance-Vector Routing (DSDV) for Mobile Computers [C]II Proceedings of the ACM SIGCOMM '94 Conference on Communications Architectures, Protocols and Applications: August 3l-September 2, 1994, London, UK. London: ACM Press, 1994: 234-244.
  • 10JOHNSON D, MALTZ D. Dynamic Source Routing in Ad Hoc Wireless Networks [C]II Proceedings of Imielinski, Korth. Mobile Computing, New York: Kluwer Academic Publishers, USA, 1996: 153-181.

二级参考文献7

  • 1Stewart R,Xie Q.Strearn control transmission protocol IETF RFC 2960[S].2000.
  • 2Johnson D,Perkins C,Arkko J.Mobility support in IPv6[EB/OL]. ( 2004-05 ) .http://www.ieff.org/rfc/rfc3775.
  • 3Moskowitz R,Nikander P.Host identity protocol architecture[EB/ OL]. ( 2004-01 ).http ://www.ietf.org/internet-drafts/draft-ietf-hip - arch-02.txt.
  • 4Nikander P,Arkko J, Henderson T.End-host mobility and multihoming with the host identity protocol[EB/OL]. (2005-02).http :// www.ietf.org/internet-drafts/draft-ietf-hip-mm-01 .txt.
  • 5Eriksson J.PeerNet:pushing peer-to-peer down the stack:2003[C]// Proc of the Intel Workshop on Peer-To-Peer Systems(IPTPS2003), 2003 : 268-277.
  • 6Balakrishnan H,Lakshminarayanan K,Ratnasamy S.A layered naming architecture for the Tnternet:2004[C]//Proc of the ACM STGCOMM, 2004 : 343-352.
  • 7Rosenberg J,Schtdzrinne I-I.RFC3263:Session Initiation Protocol (SIP) : Locating SIP Servers [S/OL]. ( 2006-04-15 ).http ://rfc.sunsite. dk/rfc/rfc3263.html.

同被引文献34

  • 1吴恒奎,杨冬,高德云,张宏科.标识分离映射网络的可扩展性和安全性研究(英文)[J].China Communications,2011,8(7):34-45. 被引量:1
  • 2刘徐迅,曹阳,邹学玉,张晋.无线传感器网络多目标路由的改进蚁群算法[J].华中科技大学学报(自然科学版),2007,35(10):24-27. 被引量:10
  • 3MEYER D, ZHANG Lixia, FALL K. Reporting from the lAB Workshop on Routing and Ad- dressing, IETF, RFC 4984[R]. 2007.
  • 4LI T. Design Goals for Scalable Internet Rout- ing, IRTF, RFC 6227[R]. 2011.
  • 5VOGT C. Six/One Router: A Scalable and Back- wards Compatible Solution for Provider-Ind- ependent Addressing[c]// Proceedings of the 3rd ACM International Workshop on Mobility in the Evolving Internet Architecture (Mo- biArch'08): August 17-22, 2008. Seattle, USA, 2008: 13-18.
  • 6FELDMANN A, CITTADINI L, MUHLBAUER W, et al. HAIR: Hierarchical Architecture for Int- ernet Routing[C]// Proceedings of the 2009 Workshop on Re-Architecting the Internet (Re- Arch'09): December 1-4, 2009. Rome, italy, 2009: 43-48.
  • 7MENTH M, HARTMANN M, KLEIN D. Global Locator, Local Locator, and Identifier Split[J]. Future Internet, 2013, 5(1): 67 -94.
  • 8XU X. Routing Architecture for the Next Gen- eration Internet (RANGI)[EB/OL]. [2009-7]. http: Iltools.ietf.org/html/draft-xu-rangi-04.
  • 9FARINACCI D, FULLER V, ORAN D, et al. Loca- tor/lD Separation Protocol, IETF, RFC 6830 (L1SP)[R]. 2009.
  • 10STOICA I, MORRIS R, KARGER D, et al. Chord: A Scalable Peer-to-Peer Lookup Protocol for Internet Applications[J]. IEEE/ACM Transac- tions on Networking, 2003, 11(1): 17-32.

引证文献3

二级引证文献10

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