MDTN: Mobile Delay/Disruption Tolerant Network

被引:0
|
作者
Palazzi, C. E. [1 ]
Bujari, A. [1 ]
Bonetta, S. [1 ]
Marfia, G. [2 ]
Roccetti, M. [2 ]
Amoroso, A. [2 ]
机构
[1] Univ Padua, Dept Pure & Appl Math, Padua, Italy
[2] Univ Bologna, Dept Comp Sci, Bologna, Italy
关键词
component; mobile; opportunistic networking; DTN; multi-hop;
D O I
暂无
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Infrastructure networks like Internet have some coverage gaps (e.g. rural areas) where no service connectivity is provided. Cellular networks could be used in alternative but they usually associate their services with a usage cost. Nowadays, the growing number of mobile devices equipped with a wireless interface and the end-user trend to shift toward wireless technology has opened new possibilities for networking. Opportunistic networking seems a feasible solution in filling in these coverage gaps by providing service connectivity where it is not sustained by an infrastructure. In this context we provide a delay tolerant platform that ensures service connectivity where it is absent. Our approach follows the Delay/Disruption Tolerant Networking (DTN) paradigm by implementing a store-and-forward communication model between mobile users and carrier entities (e.g. buses), where a user delegates the carrier a task (bundle), the carrier stores it locally and whenever service connectivity is available (e.g. wi-fi at the bus station) tries to accomplish it, successively notifying the user of the task output next time they encounter again.
引用
收藏
页数:6
相关论文
共 50 条
  • [1] Delay/disruption-tolerant network study
    Li, Xiangqun
    Liu, Lixiang
    Hu, Xiaohui
    Zeng, Kaixiang
    Jisuanji Yanjiu yu Fazhan/Computer Research and Development, 2009, 46 (08): : 1270 - 1277
  • [2] Characterization of a delay and disruption tolerant network in the Amazon basin
    dos Santos, Alyson de Jesus
    Costa, Luis Henrique M. K.
    Braga, Marcus de Lima
    Velloso, Pedro Braconnot
    Ghamri-Doudane, Yacine
    VEHICULAR COMMUNICATIONS, 2016, 5 : 35 - 43
  • [3] Control of Message Transmission in Delay/Disruption Tolerant Network
    Wu, Yahui
    Deng, Su
    Huang, Hongbin
    IEEE TRANSACTIONS ON COMPUTATIONAL SOCIAL SYSTEMS, 2018, 5 (01): : 132 - 143
  • [4] Incentive Mechanisms in Mobile Delay Tolerant Network
    Zhai, Yanqing
    Bai, Xiangyu
    Liu, Qi
    PROCEEDINGS OF 2017 IEEE 7TH INTERNATIONAL CONFERENCE ON ELECTRONICS INFORMATION AND EMERGENCY COMMUNICATION (ICEIEC), 2017, : 184 - 188
  • [5] Caching Strategy in Mobile Delay Tolerant Network
    She, Junli
    Bai, Xiangyu
    PROCEEDINGS OF 2016 IEEE 7TH INTERNATIONAL CONFERENCE ON SOFTWARE ENGINEERING AND SERVICE SCIENCE (ICSESS 2016), 2016, : 497 - 500
  • [6] Delay/disruption tolerant mobile ad hoc networks:: latest developments
    Zhang, Zhensheng
    Zhang, Qian
    WIRELESS COMMUNICATIONS & MOBILE COMPUTING, 2007, 7 (10): : 1219 - 1232
  • [7] Deepwater Monitoring System in Underwater Delay/Disruption Tolerant Network
    Ribeiro, F. J. L.
    Pedroza, A. C. P.
    Costa, L. H. M. K.
    IEEE LATIN AMERICA TRANSACTIONS, 2012, 10 (01) : 1324 - 1331
  • [8] Performance Evaluation of FILS in a Vehicular Delay/Disruption Tolerant Network
    Kato, Arata
    Maeno, Taka
    Owada, Yasunori
    Sato, Goshi
    Temma, Katsuhiro
    Kuri, Toshiaki
    Takai, Mineo
    Ishihara, Susumu
    2020 IEEE 92ND VEHICULAR TECHNOLOGY CONFERENCE (VTC2020-FALL), 2020,
  • [9] On storage dynamics of space delay/disruption tolerant network node
    Zhihua Yang
    Qinyu Zhang
    Ruhai Wang
    Hongbing Li
    Athanasios V. Vasilakos
    Wireless Networks, 2014, 20 : 2529 - 2541
  • [10] On storage dynamics of space delay/disruption tolerant network node
    Yang, Zhihua
    Zhang, Qinyu
    Wang, Ruhai
    Li, Hongbing
    Vasilakos, Athanasios V.
    WIRELESS NETWORKS, 2014, 20 (08) : 2529 - 2541