Title :
An arbitrary mobility model of Mini-Sinks using controlled data collection for reducing congestion appearance in wireless sensor networks
Author :
Fotue, D. ; Labiod, Houda ; Engel, Thomas
Author_Institution :
Univ. of Luxembourg, Kirchberg, Luxembourg
Abstract :
This paper addresses the appearance of congestion in Wireless Sensor Networks (WSNs) using mobile Mini-Sinks (MSs). Several mobile MSs are moving according to an arbitrary mobility model inside the sensor field for collecting data within their coverage areas based on the controlled Energy Conserving Routing Protocol (ECRP) and forwarding it towards the single main sink. ECRP, based on route diversity, is implemented in MSs and sensors. Thus, a set of multiple paths between MSs and sensors is generated to distribute the global traffic, so as to partially reduce the appearance of congestion over the entire network. Simulations were performed in order to validate the performance of our model. We compare the results obtained with those for a single static sink and mobile sink, and show that our approach achieves better network performances in terms of packet delivery ratio, throughput, end-to-end delay, network lifetime, residual energy, energy and multiple paths overhead.
Keywords :
diversity reception; energy conservation; mobility management (mobile radio); routing protocols; telecommunication traffic; wireless sensor networks; arbitrary mobility model; congestion appearance reduction; coverage area; data collection; end-to-end delay; energy conserving routing protocol; global traffic; mobile minisink; multiple paths overhead; network lifetime; packet delivery ratio; residual energy; route diversity; sensor field; wireless sensor network; Data models; Mobile communication; Mobile computing; Network topology; Routing; Topology; Wireless sensor networks;
Conference_Titel :
Performance Computing and Communications Conference (IPCCC), 2012 IEEE 31st International
Conference_Location :
Austin, TX
Print_ISBN :
978-1-4673-4881-2
DOI :
10.1109/PCCC.2012.6407743