DocumentCode :
2304411
Title :
Energy Efficiency in Large Scale Interference Limited wireless ad hoc networks
Author :
Zaidi, Syed Ali Raza ; Ghogho, Mounir ; McLernon, Desmond C. ; Swami, Ananthram
Author_Institution :
Univ. of Leeds, Leeds, UK
fYear :
2012
fDate :
1-1 April 2012
Firstpage :
24
Lastpage :
29
Abstract :
This paper presents an analytical approach to quantify energy efficiency (EE), i.e., the bits per Joule performance of a large scale interference limited random wireless ad hoc network. Energy consumption is investigated at physical, medium access control (MAC) and routing layers. Communication between a user and its destination is facilitated by multihop relaying and Slotted ALOHA based MAC protocol. Energy consumption of user´s communication hardware platform is analyzed considering the transceiver architecture. Geometry of the forwarding areas resulting from two different long hop routing protocols is explicitly considered in the analysis. The link model is formulated to cater for user´s desired QoS while considering the network interference and the spatial/channel uncertainties. EE performance of the network is quantified from single-hop forward progress, node isolation and hop statistics. Optimal MAP which maximizes the network EE is also investigated. Analytical results are supported by Monte Carlo simulations. It is shown that several hypothesis established in existing literature which ignores network interference and fading do not hold in large scale interference limited ad hoc network.
Keywords :
Monte Carlo methods; access protocols; ad hoc networks; maximum likelihood estimation; quality of service; radiofrequency interference; routing protocols; EE performance; MAC layer; Monte Carlo simulation; QoS; bit-per-Joule performance; energy consumption; energy efficiency; large-scale interference limited random wireless ad hoc network; long-hop routing protocols; medium access control layer; multihop relaying; network interference; node isolation-hop statistics; optimal MAP; physical layer; routing layer; single-hop forward progress; slotted ALOHA-based MAC protocol; spatial-channel uncertainties; transceiver architecture; user communication hardware platform; Ad hoc networks; Interference; Quality of service; Receivers; Relays; Transceivers; Transmitters; Poisson point process; ad hoc networks; energy efficient; multihop; stochastic geometry;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications and Networking Conference Workshops (WCNCW), 2012 IEEE
Conference_Location :
Paris
Print_ISBN :
978-1-4673-0681-2
Type :
conf
DOI :
10.1109/WCNCW.2012.6215500
Filename :
6215500
Link To Document :
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