计算机科学 ›› 2014, Vol. 41 ›› Issue (7): 176-180.doi: 10.11896/j.issn.1002-137X.2014.07.036

• 网络与通信 • 上一篇    下一篇

6LoWPAN适配层分片与重组算法性能分析

刘乔寿,张伟,王汝言,吴大鹏   

  1. 重庆邮电大学宽带泛在接入技术研究所 重庆400065;重庆邮电大学宽带泛在接入技术研究所 重庆400065;重庆邮电大学宽带泛在接入技术研究所 重庆400065;重庆邮电大学宽带泛在接入技术研究所 重庆400065
  • 出版日期:2018-11-14 发布日期:2018-11-14
  • 基金资助:
    本文受国家自然科学基金(61371097),重庆邮电大学青年基金项目(A2012-93)资助

Performance Analysis for Fragmentation and Assembly Algorithm of 6LoWPAN Adaptation Layer

LIU Qiao-shou,ZHANG-Wei,WANG Ru-yan and WU Da-peng   

  • Online:2018-11-14 Published:2018-11-14

摘要: 将IPv6协议引入物联网感知层是物联网感知层的重点研究方向。由于IPv6协议与IEEE802.15.4协议数据载荷长度之间的不匹配,其上层协议数据包无法直接与底层协议进行数据交换,因此采用适配层中的分片与重组算法协议解决两种协议载荷长度的不兼容问题。为了具体分析算法性能,对6LoWPAN分片重组算法、改进算法及另一种带有每跳ARQ算法的改进算法进行数学建模及数据仿真,一方面对分片与重组算法的性能进行分析比较,通过仿真实验分析误码率、跳数等主要性能指标对网络能耗、时延性能的影响;另一方面提出一种新的自适应算法框架,使得适配层可以在变化的网络环境下选择不同的分片重组算法,来达到在物联网感知层中进一步优化网络性能、节省网络资源的目的。

关键词: IPv6适配层,6LoWPAN,分片与重组算法 中图法分类号TP393文献标识码A

Abstract: In the perceptual layer of the Internet of Things,introducing IPv6protocol is the key research direction.The length of the data load between IPv6protocol and IEEE802.15.4protocol does not match that the upper level data packets can’t directly exchange data with the underlying protocol.The fragmentation and restructuration algorithm through adaptation layer protocol was used to solve the problem of payload length incompatibilities between the above two kinds of protocols.In order to analyse algorithm performance,fragmentation and assembly algorithm of 6LoWPAN,the improved fragmentation and assembly algorithm of 6LoWPAN and another improved fragmentation and assembly algorithm of 6LoWPAN combining each-hop ARQ algorithm were mathematically modeled and simulated.Firstly,fragmentation and assembly algorithms were simulated and analyzed through the network energy consumption and delay effects of the main performance indexes which contain bit error rate and the number of hop.Secondly,a novel adaptive algorithm framework which aims at optimizing network performance and saving network resources was proposed,so that the adaptation layer can choose different fragmentation and assembly algorithms under the changed network environment.

Key words: IPv6adaptation layer,6LoWPAN,Fragmentation and assembly algorithm

[1] Amardeo C,Sarma J G.Identities in the Future Internet ofThings [J].Wireless Pers Commun,2009,9:353-363
[2] Kushalnagar N,Montenegro G,Schumacher C.IPv6over Low-Power Wireless Personal Area Networks(6LoWPANs)[C]∥Overview,Assumptions,Problem Statement,and Goals.RFC 4919,IETF,2007
[3] IEEE Computer Society.IEEE Standard for Information tech-nology-Local and metropolitan area networks-Specific requirements-Part 15.4:Wireless Medium Access Control(MAC) and Physical Layer(PHY) Specifications for Low Rate Wireless Personal Area Networks(WPANs)[S].IEEE Std 802.15.4-2006,October 2006:1-320
[4] Montenegro G,Kushalnagar N,Hui J,et al.Transmission ofIPv6Packets over IEEE 802.15.4Networks[S].RFC 4944,IETF,September 2007:6-13
[5] Hui J,Corporation A R,Thubert P,et al.Compression Format for IPv6Datagrams over IEEE 802.15.4-Based Networks[S].RFC6282,IETF,September 2011:5-20
[6] Thubert P,Cisco E,Hui C J,et al.LoWPAN fragment Forwarding and Recovery,Internet Draft draft-thubert-6lowpan-simple-fragment-recovery-07[S].IETF draft,Dec 2010:1-17
[7] Thubert P,Hui J.LLN Fragment Forwarding and Recovery,Internet Draft draft-thubert-roll-forwarding-frags-01[S].IETF draft,February 25,2013:1-16
[8] Ayadi A,Maille P,Ros D,et al.Energy-Effcient Fragment Recovery Techniques for Low-Power and Lossy Networks[C]∥Wireless Communications and Mobile Computing Conference(IWCMC),2011,7th International,IEEE.July 2011:601-606
[9] 黄仁,郜辉,任军华.非时隙CSMA/CA性能分析与研究[J].计算机工程与应用,2009,45(7):108-110,118
[10] Shuaib A H,Mahmoodi T,Aghvami A H.A Timed Petri Net Model For The IEEE 802.15.4CSMA-CA Process[C]∥PIMRC.Sept.2009:1204-1210

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