Title :
Dynamic sink location update scope control mechanism for mobile sink Wireless Sensor Networks
Author :
Faheem, Yasir ; Boudjit, Saadi ; Chen, Ken
Author_Institution :
Lab. L2TI, Univ. Paris Nord, Paris, France
Abstract :
Several recent works propose mobile sink based data gathering approaches to distribute energy consumption in Wireless Sensor Networks. However, mobility based algorithms require the sink to periodically update its location to the network to ensure multi-hop connectivity. This additional information increases the control traffic overhead, and thus energy consumption also increases. In this paper, we propose a distributive energy efficient sink location update mechanism for mobile sink WSNs, along with a preemptive buffering data collection technique. This sink location update mechanism combines MPR based broadcast algorithm with a distributed local repair mechanism, whereby, sensor nodes dynamically control the scope of sink location update messages. In preemptive buffering mechanism, sink´s neighbor nodes act as temporary data collection points, referred as roots, to prevent data loss when sink moves out of their vicinity. We show by simulations that our proposal effectively reduces the energy consumption and data losses of the network.
Keywords :
mobility management (mobile radio); telecommunication congestion control; telecommunication traffic; wireless sensor networks; MPR based broadcast algorithm; control traffic overhead; data losses; distributed local repair mechanism; distributive energy efficient sink location update mechanism; dynamic sink location update scope control mechanism; energy consumption; mobile sink WSN; mobile sink based data gathering approaches; mobile sink wireless sensor networks; mobility based algorithms; multihop connectivity; preemptive buffering data collection technique; sensor nodes; sink neighbor nodes; Energy consumption; Maintenance engineering; Mobile communication; Mobile computing; Relays; Routing; Wireless sensor networks; Sensor networks; data dissemination mechanism; sink mobility;
Conference_Titel :
Wireless On-Demand Network Systems and Services (WONS), 2011 Eighth International Conference on
Conference_Location :
Bardonecchia
Print_ISBN :
978-1-61284-189-2
DOI :
10.1109/WONS.2011.5720189