DocumentCode :
43429
Title :
Optimal Power Allocation for Outage Probability Minimization in Fading Channels with Energy Harvesting Constraints
Author :
Chuan Huang ; Rui Zhang ; Shuguang Cui
Author_Institution :
Sch. of Electr., Comput. & Energy Eng., Arizona State Univ., Tempe, AZ, USA
Volume :
13
Issue :
2
fYear :
2014
fDate :
Feb-14
Firstpage :
1074
Lastpage :
1087
Abstract :
This paper studies the optimal power allocation for outage probability minimization in point-to-point fading channels with the energy-harvesting constraints and channel distribution information (CDI) at the transmitter. Both the cases with non-causal and causal energy state information (ESI) are considered, which correspond to the energy-harvesting (EH) rates being known and unknown prior to the transmissions, respectively. For the non-causal ESI case, the average outage probability minimization problem over a finite horizon of N EH periods is shown to be non-convex for a large class of practical fading channels. However, the globally optimal "offline" power allocation is obtained by a forward search algorithm with at most N one-dimensional searches, and the optimal power profile is shown to be non-decreasing over time and have an interesting "save-then-transmit" structure. In particular, for the special case of N=1, our result revisits the classic outage capacity for fading channels with uniform power allocation. Moreover, for the case with causal ESI, we propose both the optimal and suboptimal "online" power allocation algorithms, by applying the technique of dynamic programming and exploring the structure of optimal offline solutions, respectively.
Keywords :
channel allocation; dynamic programming; energy harvesting; fading channels; minimisation; radio links; telecommunication power management; CDI; channel distribution information; dynamic programming technique; energy harvesting constraints; forward search algorithm; noncausal energy state information; offline power allocation; optimal online power allocation algorithms; optimal power allocation; optimal power profile; outage probability minimization; point-to-point fading channels; save-then-transmit structure; suboptimal online power allocation algorithms; transmitter; Batteries; Fading; Lead; Minimization; Resource management; Transmitters; Wireless communication; Energy harvesting; fading channel; outage probability; power control;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TW.2013.121813.130953
Filename :
6697931
Link To Document :
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