DocumentCode :
1760322
Title :
Energy-Aware Broadcast Multiuser-MIMO Precoder Design with Imperfect Channel and Battery Knowledge
Author :
Rubio, Jesus ; Pascual-Iserte, Antonio
Author_Institution :
Dept. of Signal Theor. & Commun., Univ. Politec. de Catalunya, Barcelona, Spain
Volume :
13
Issue :
6
fYear :
2014
fDate :
41791
Firstpage :
3137
Lastpage :
3152
Abstract :
This paper addresses the problem of resource allocation and precoder design in a multiuser MIMO broadcast system where the terminals are battery-powered devices provided with energy harvesting capabilities. Energy harvesting is a promising technology based on which it is possible to recharge the battery of the terminals using energy collected from the environment. Models for the power consumption of the front-end and decoding stages are discussed and included in the design of the proposed scheme. In addition, the information concerning the battery level plays an explicit role and has an impact on the design of our proposed allocation strategy. Sum-rate maximization is considered as optimization policy and energy-related constraints are taken into account explicitly in the resource allocation in order to increase the lifetime of the batteries. In the first part of the paper, we consider the transmitter to have perfect channel state information (CSI) and battery knowledge, assuming an ideal feedback link. Then, a robust design based on imperfect channel information at the transmitter is studied and its effect on the energy consumed by the terminals is analyzed. Finally, an extended robust approach considering also imperfect battery knowledge (quantized battery status) at the transmitter is also addressed. Simulation results show that our proposed technique not only improves the usage of the batteries when compared with other traditional allocation policies, but also enhances the average data rate.
Keywords :
MIMO communication; decoding; energy harvesting; multiuser channels; optimisation; power consumption; precoding; radio transmitters; resource allocation; telecommunication power management; CSI; battery-powered devices; decoding; energy harvesting; energy-aware broadcast multiuser-MIMO precoder; energy-related constraints; feedback link; imperfect battery knowledge; imperfect channel; optimization policy; perfect channel state information; power consumption; quantized battery status; resource allocation; sum-rate maximization; transmitter; Batteries; Decoding; Energy harvesting; Power demand; Receivers; Resource management; Transmitters; Energy harvesting; MIMO system; battery information; battery quantization; channel estimation errors; power consumption; robust design;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2014.042414.130931
Filename :
6807567
Link To Document :
بازگشت