SHU Yongan, SHU Ziyu, LUO Bin, “An Energy Balancing Adaptive Routing Strategy Based on Interference Model in 6LoWPANs,” Chinese Journal of Electronics, vol. 22, no. 3, pp. 466-470, 2013,
Citation: SHU Yongan, SHU Ziyu, LUO Bin, “An Energy Balancing Adaptive Routing Strategy Based on Interference Model in 6LoWPANs,” Chinese Journal of Electronics, vol. 22, no. 3, pp. 466-470, 2013,

An Energy Balancing Adaptive Routing Strategy Based on Interference Model in 6LoWPANs

Funds:  This work is supported by the China Postdoctoral Science Foundation (No.20080440706).
  • Received Date: 2012-04-01
  • Rev Recd Date: 2012-05-01
  • Publish Date: 2013-06-15
  • IPv6-enabled low-power wireless personal area network (6LoWPAN) is an important part of the Internet of Things which will drastically transform the way our society functions. Designing an efficient routing strategy is crucial for optimizing traffic over 6LoWPAN resources and extending the network lifetime. This paper proposes an energy balancing adaptive routing strategy named EBAR. Considering the dynamic traffic and constrained energy in 6LoWPAN, EBAR adaptively updates paths between different source-destination pairs and balances the energy in 6LoWPAN. Simulation results indicate that EBAR can promote network performance and balance the energy in the network.
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  • N. Kushalnagar, G. Montenegro and C. Schumacher, IPv6 over low-power wireless personal area networks (6LoWPANs): overview, assumptions, problem statement, and goals, RFC 4919, Aug. 2007.
    Shu Yongan, Shu Ziyu and Luo Bin, “A multipath routing protocol in wireless mesh networks”, Chinese Journal of Electronics, Vol.21, No.1, pp.131-136, Jan. 2012.
    Shu Yongan, Shu Ziyu, Luo Bin, “Interference balancing routing in wireless mesh networks with multiple gateways”, Journal of Information and Computational Science, Vol.8, No.16, pp.3951-3959, 2011.
    T. Winter, P. Thubert et al., RPL: IPv6 routing protocol for low power and lossy networks, RFC 6550, March 2012.
    M. Goyal, E. Baccelli, A. Brandt, R. Cragie, J. Martocci, Reactive discovery of point-to-point routes in low power and lossy networks, IETF Internet Draft draft-ietf-roll-p2prpl-09, March 2012.
    Carles Gomez, Josep Paradells, “Wireless home automation networks: a survey of architectures and technologies”, IEEE Communication Magazine, Vol.48, No.6, pp.92-101, 2010.
    C. Perkins, E. Belding-Royer, S. Das., Ad hoc on-demand disdistance vector (AODV) routing, RFC3651, July 2003.
    Tehuang Liu, Wangjiun Liao, “Interference-aware QoS routing for multi-rate multi-radio multi-channel IEEE 802.11 wireless mesh networks”, IEEE Transactions on Wireless Communications, Vol.8, No.1, pp.166-175, 2009.
    K. Kim, S. Yoo, Hierarchical Routing over 6LoWPAN (HiLow) draft-daniel-6lowpan-hilowhierarchical-routing-01, Oct. 2007.
    K. Kim, S. Daniel, G. Montenegro, 6LoWPAN ad hoc ondemand distance vector routing (LOAD) draft-daniel-6lowpanloadadhocrouting-03, June 2007.
    Y.S. Kim, E.J. Lee, B.S. Kim, H.S. Kim, “Extended tree-based routing algorithm in IPv6-enabled wireless sensor networks”, International Conference on Convergence Information Technology 2007, pp.1269-1274, 2007.
    Shu Yongan, Hong Peilin, Qin Zhenquan, “Multi-channel allocation strategy based on interference model in wireless mesh networks”, Acta Electronica Sinica, Vol.36, No.7, pp.1256-1260, 2008. (in Chinese)
    J.P. Vasseur, A. Dunkels, Interconnecting Smart Objects with IP: The Next Internet, Morgan Kaufmann Publishers, pp.282, Jan. 2010.
    Jitendra Padhye, Richard Draves, Brian Zill, “Routing in multiradio, multi-hop wireless mesh networks”, Proceedings of ACM MobiCom Conference, Sept. 2004.
    Contiki2.5, [Online]. Available:http://www.contiki-os.org.
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