By Zayneb Trabelsi Ayoub, Sofiane Ouni (auth.), Mostafa Hashem Sherif, Abdelhamid Mellouk, Jun Li, Paolo Bellavista (eds.)
This ebook constitutes the completely refereed court cases of the fifth overseas convention on advert Hoc Networks, ADHOCNETS 2013, held in Barcelona, Spain, in October 2013. The 14 revised complete papers provided have been conscientiously chosen and reviewed from a number of submissions and canopy quite a lot of functions, advertisement and army corresponding to cellular advert hoc networks, sensor networks, vehicular networks, underwater networks, underground networks, own region networks, domestic networks and large-scale metropolitan networks for shrewdpermanent towns. they're equipped in topical sections on instant sensor networks, routing, purposes and security.
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Additional info for Ad Hoc Networks: 5th International ICST Conference, ADHOCNETS 2013, Barcelona, Spain, October 2013, Revised Selected Papers
3 Objectives • To develop and analyze an energy efficient clustering mechanism for sensor nodes in a wireless sensor network. • To explore processing capability of sensor nodes in order to improve the network lifetime of wireless sensor network by analyzing energy consumption of the network. • To estimate the boundary of a cluster-head and track changes without physically covering the boundary. 4 Assumptions and System Environment • All the sensor nodes are homogeneous and placed in 2D space. • The uniformly placed cluster-head nodes are better configured than sensor nodes and act as a relay for data received from sensor nodes.
Networks 42(1), 48–64 (2003) 9. : Relay sensor placement in wireless sensor networks. Wirel. Netw. 14(3), 347–355 (2008) 10. : Fault-tolerant relay node placement in wireless sensor networks: problems and algorithms. In: INFOCOM 2007, 26th IEEE International Conference on Computer Communications, pp. 1649–1657. IEEE, May 2007 11. : Approximation algorithms for some routing problems. In: Proceedings of the 17th Annual Symposium on Foundations of Computer Science, pp. 216–227. IEEE Computer Society, Washington (1976) 12.
End-to-end delay of sensors for varying partition count. Node count: 100, MDC count: 2 (a). End-to-end delay of sensors for varying node count. Partition count:6, MDC count: 2 (b). Figure 5a portrays the results for varying number of partitions when the number of nodes and available MDC count is ﬁxed. It can be observed from Fig. 5a that delay is increasing for all of the approaches when the number of partitions is increased. This can be explained as follows: For a partitioned network with a single sink, only the sensors within the same partition with the sink can deliver their data without using an MDC.