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Relay movement control for maintaining connectivity in aeronautical ad hoc networks 被引量:2

Relay movement control for maintaining connectivity in aeronautical ad hoc networks
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摘要 As a new sort of mobile ad hoc network(MANET), aeronautical ad hoc network(AANET) has fleet-moving airborne nodes(ANs) and suffers from frequent network partitioning due to the rapid-changing topology. In this work, the additional relay nodes(RNs) is employed to repair the network and maintain connectivity in AANET. As ANs move, RNs need to move as well in order to re-establish the topology as quickly as possible. The network model and problem definition are firstly given, and then an online approach for RNs' movement control is presented to make ANs achieve certain connectivity requirement during run time. By defining the minimum cost feasible moving matrix(MCFM), a fast algorithm is proposed for RNs' movement control problem. Simulations demonstrate that the proposed algorithm outperforms other control approaches in the highly-dynamic environment and is of great potential to be applied in AANET. As a new sort of mobile ad hoc network (MANET), aeronautical ad hoc network (AANET) has fleet-moving airborne nodes (ANs) and suffers from frequent network partitioning due to the rapid-changing topology. In this work, the additional relay nodes (RNs) is employed to repair the network and maintain connectivity in AANET. As ANs move, RNs need to move as well in order to re-establish the topology as quickly as possible. The network model and problem definition are firstly given, and then an online approach for RNs' movement control is presented to make ANs achieve certain connectivity requirement during run time. By defining the minimum cost feasible moving matrix (MCFM), a fast algorithm is proposed for RNs' movement control problem. Simulations demonstrate that the proposed algorithm outperforms other control approaches in the highly-dynamic environment and is of great potential to be applied in AANET.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第4期850-858,共9页 中南大学学报(英文版)
关键词 aeronautical ad hoc network (AANET) mobile ad hoc networks topology control network connectivity movement control 运动控制方法 无线自组网 航空 中继 连通性 移动节点 移动Ad 拓扑结构
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  • 1SAKHAEE E, JAMALIPOUR A. The global in-flight internet [J]. IEEE Journal on Selected Areas in Communications, 2006, 24(9): 1748-1757. 被引量:1
  • 2SAKHAEE E, JAMALIPOUR A, KATO N. Aeronautical ad hoc networks [C]// Proceedings of the Wireless Communications and Networking Conference. Las Vegas, USA: IEEE, 2006:246-251. 被引量:1
  • 3KARRAS K, KYRITSIS T, AMIRFEIZ M. Aeronautical mobile ad hoc networks [C]// Proceedings of the 14th European Wireless Conference. tfong Kong: 1EEE, 2008:1 6. 被引量:1
  • 4SCHNELL M, SCALISE S. NEWSKY---A concept for networking the sky for civil aeronautical communications [J]. Space Communications, 2008, 21(3): 157-166. 被引量:1
  • 5KWAK K J, SAGDUYU Y, DENG J, YACKOSKI J, LI J. Airborne network evaluation: Challenges and high fidelity emulation solution [C]// Proceedings of The First ACM MobiHoc Workshop on Airborne Networks and Communications. Hilton Head, South Carolina, USA: ACM, 2012:49 54. 被引量:1
  • 6FALL K. A delay-tolerant network architecture for challenged intemets [C]// Proceedings of ACM International Conference on the Applications, Technologies, Architectures, and Protocols for Computer Communication. Karlsruhe, Germany: ACM, 2003: 27-34. 被引量:1
  • 7AZIZ A A, SEKERCIOGLU Y A, FITZPATRICK P, IVANOVICH M A survey on distributed topology control techniques for extending the lifetime of battery powered wireless sensor networks [J]. 1EEE Communications Surveys & Tutorials, 2013, 15(1): 121-144. 被引量:1
  • 8N1SI-tlYAMA H, NGO T, ANSARI N, KATO N. On minimizing the impact of mobility on topology control in mobile ad hoc networks [J] IEEE Transactions on Wireless Communications, 2012, 11(3): 1158 1166. 被引量:1
  • 9DAS S, LIU H, NAYAK A, STOJMENOVIC 1. A localized algorithm for bi-connectivity of connected mobile robots [J]. Telecommunication Systems, 2009,40(3): 129 140. 被引量:1
  • 10NIGAM A, AGARWAL Y K. Optimal relay node placement in delay constrained wireless sensor network design [J]. European Journal of Operational Research, 2014, 233(1): 220 233. 被引量:1

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