Abstract
This paper addresses the problem of fault-tolerant many-to-one routing in static wireless networks with asymmetric links, which is important in both theoretical and practical aspects. The problem is to find a minimum energy subgraph for a given subset and a destination node such that there are k node-disjoint paths from each node in the subset to the destination node in the subgraph. We prove that the problem is NP-hard, and propose two efficient heuristic approaches, namely, the minimum weight k node-disjoint paths based (MWkNDPB) approach and the minimum energy k node-disjoint paths based (MEkNDPB) approach. Extensive simulations have been conducted to show that proposed algorithms are efficient.
Access this chapter
Tax calculation will be finalised at checkout
Purchases are for personal use only
Preview
Unable to display preview. Download preview PDF.
Similar content being viewed by others
References
Bahramgiri, M., Hajiaghayi, M., Mirrokni, V.: Fault-Tolerant and 3-Dimensional Distributed Topology Control Algorithms in Wireless Multi-Hop Networks. In: Proc. 11th IEEE Int’l Conf. Computer Comm. and Networks (2002)
Calinescu, G., Wan, P.: Range Assignment for High Connectivity in Wireless Ad Hoc Networks. In: Proc. Second Int’l Conf. Ad-Hoc Networks and Wireless (2003)
Hajiaghayi, M., Immorlica, N., Mirrokni, V.: Power Optimization in Fault-Tolerant Topology Control Algorithms for Wireless Multi-Hop Networks. In: Proc. ACM MobiCom (2003)
Jia, X., Kim, D., Wan, P., Yi, C.: Power Assignment for k-connectivity in Wireless Ad Hoc Networks. In: Proc. IEEE INFOCOM (2005)
Khuller, S., Raghavachari, B.: Improved Approximation Algorithms for Uniform Connectivity Problems. In: Proc. 27th Ann. ACM Symp. Theory of Computing (1995)
Li, L., Halpern, J., Bahl, P., Wang, Y., Wattenhofer, R.: Analysis of a Cone-Based Distributed Topology Control Algorithm for Wireless Multi-Hop Networks. In: Proc. 20th Ann. ACM Symp. Principles of Distributed Computing (2001)
Li, N., Hou, J.C.: FLSS: A Fault-Tolerant Topology Control Algorithm for Wireless Networks. In: Proc. ACM MobiCom (2004)
Li, D., Jia, X., Liu, H.: Energy Efficient Broadcast Routing in Static Ad Hoc Wireless Networks. IEEE Transcations on Mobile Computing 3(2), 144–151 (2004)
Li, D., Liu, Q., Hu, X., Jia, X.: Energy efficient multicast routing in ad hoc wireless networks. Computer Communications 30(18), 3746–3756 (2007)
Lloyd, E.L., Liu, R., Marathe, M.V., Ramanathan, R., Ravi, S.: Algorithmic Aspects of Topology Control Problems for Ad Hoc Networks. In: Proc. ACM MobiHoc (2002)
Lloyd, E.L., Liu, R., Marathe, M.V., Ramanathan, R., Ravi, S.: Algorithmic Aspects of Topology Control Problems for Ad Hoc Networks. Mobile Network Application 1-2(10), 19–34 (2005)
Ramanathan, R., Hain, R.: Topology Control of Multihop Wireless Networks Using Transmit Power Adjustment. In: Proc. IEEE INFOCOM (2000)
Srinivas, A., Modiano, E.: Minimum Energy Disjoint Path Routing in Wireless Ad-Hoc Networks. In: Proc. ACM MobiCom (2003)
Suurballe, J.W.: Disjoint Paths in a Network. Networks 4(2), 125–145 (1974)
Wang, F., Hai, T., Li, Y., Cheng, X., Du, D.: Fault-Tolerance Topology Control for All-to-One and One-to-All Communication in Wireless Networks. IEEE Transaction on Mobile Computing 3(7), 322–331 (2008)
Wattenhofer, R., Li, L., Bahl, P., Wang, Y.: Distributed Topology Control for Wireless Multihop Ad-Hoc Networks. In: Proc. IEEE INFOCOM (2001)
Author information
Authors and Affiliations
Editor information
Editors and Affiliations
Rights and permissions
Copyright information
© 2009 Springer-Verlag Berlin Heidelberg
About this paper
Cite this paper
Li, D., Zhu, Q., Yang, H. (2009). Fault-Tolerant Routing: k-Inconnected Many-to-One Routing in Wireless Networks. In: Du, DZ., Hu, X., Pardalos, P.M. (eds) Combinatorial Optimization and Applications. COCOA 2009. Lecture Notes in Computer Science, vol 5573. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-02026-1_46
Download citation
DOI: https://doi.org/10.1007/978-3-642-02026-1_46
Publisher Name: Springer, Berlin, Heidelberg
Print ISBN: 978-3-642-02025-4
Online ISBN: 978-3-642-02026-1
eBook Packages: Computer ScienceComputer Science (R0)