DocumentCode :
3253268
Title :
Transmission capacity of wireless ad hoc networks with energy harvesting nodes
Author :
Vaze, Rahul
Author_Institution :
Mumbai Sch. of Technol. & Comput. Sci., Tata Inst. of Fundamental Res., Mumbai, India
fYear :
2013
fDate :
3-5 Dec. 2013
Firstpage :
353
Lastpage :
358
Abstract :
Transmission capacity of an ad hoc wireless network is analyzed when each node of the network harvests energy from nature, e.g. solar, wind, vibration etc. Energy arrival at each node is assumed to be i.i.d. fixed rate arrival process, and each node stores energy using a battery. With infinite battery capacity, for ALOHA medium access protocol (MAP), optimal transmission probability that maximizes the transmission capacity is derived. For CSMA MAP, back-off probability and outage probability are derived in terms of input energy distribution, thereby characterizing the transmission capacity. Analysis for the realistic case of finite battery capacity is also presented for a special case of Bernoulli distributed energy arrivals. Game theoretic analysis is also presented for ALOHA MAP, where each transmitter tries to maximize its own throughput, by deriving the Nash equilibrium.
Keywords :
access protocols; ad hoc networks; energy harvesting; game theory; probability; radio transmitters; ALOHA medium access protocol; Bernoulli distributed energy arrival; CSMA MAP; MAP; Nash equilibrium; back-off probability; energy harvesting node; finite battery capacity; game theoretic analysis; i.i.d. fixed rate arrival process; infinite battery capacity; input energy distribution; optimal transmission probability; outage probability; radio transmitter; transmission capacity; wireless ad hoc network; Ad hoc networks; Batteries; Capacity planning; Energy harvesting; Lead; Multiaccess communication; Transmitters;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Global Conference on Signal and Information Processing (GlobalSIP), 2013 IEEE
Conference_Location :
Austin, TX
Type :
conf
DOI :
10.1109/GlobalSIP.2013.6736888
Filename :
6736888
Link To Document :
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