DocumentCode
1688443
Title
Information-theoretic analysis of an energy harvesting communication system
Author
Ozel, Omur ; Ulukus, Sennur
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Maryland, College Park, MD, USA
fYear
2010
Firstpage
330
Lastpage
335
Abstract
In energy harvesting communication systems, an exogenous recharge process supplies energy for the data transmission and arriving energy can be buffered in a battery before consumption. Transmission is interrupted if there is not sufficient energy. We address communication with such random energy arrivals in an information-theoretic setting. Based on the classical additive white Gaussian noise (AWGN) channel model, we study the coding problem with random energy arrivals at the transmitter. We show that the capacity of the AWGN channel with stochastic energy arrivals is equal to the capacity with an average power constraint equal to the average recharge rate. We provide two different capacity achieving schemes: save-and-transmit and best-effort-transmit. Next, we consider the case where energy arrivals have time-varying average in a larger time scale. We derive the optimal offline power allocation for maximum average throughput and provide an algorithm that finds the optimal power allocation.
Keywords
AWGN channels; channel capacity; energy harvesting; transmitters; additive white Gaussian noise channel model; best-effort-transmit; energy harvesting communication system; exogenous recharge; information-theoretic analysis; maximum average throughput; offline power allocation; random energy arrivals; save-and-transmit; stochastic energy arrivals; AWGN; AWGN channels; Batteries; Decoding; Energy harvesting; Random variables; Resource management;
fLanguage
English
Publisher
ieee
Conference_Titel
Personal, Indoor and Mobile Radio Communications Workshops (PIMRC Workshops), 2010 IEEE 21st International Symposium on
Conference_Location
Instanbul
Print_ISBN
978-1-4244-9117-9
Type
conf
DOI
10.1109/PIMRCW.2010.5670389
Filename
5670389
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