DocumentCode :
30601
Title :
Dynamic Partial Cooperative MIMO System for Delay-Sensitive Applications with Limited Backhaul Capacity
Author :
Cui, Ying ; Lau, Vincent K.N. ; Huang, Huang
Author_Institution :
Department of ECE, Northeastern University, Boston, MA, USA, and the Department of EECS, MIT, Cambridge, MA, USA
Volume :
12
Issue :
11
fYear :
2013
fDate :
Nov-13
Firstpage :
5889
Lastpage :
5895
Abstract :
Considering backhaul consumption, it may not be the best choice to engage all the time in full cooperative MIMO for interference mitigation. In this paper, we propose a novel downlink partial cooperative MIMO (Pco-MIMO) physical layer (PHY) scheme, which allows flexible tradeoff between the partial data cooperation level and the backhaul consumption. Based on this Pco-MIMO scheme, we consider dynamic transmit power and rate allocation according to the imperfect channel state information at transmitters (CSIT) and the queue state information (QSI) to minimize the average delay cost subject to average backhaul consumption constraints and average power constraints. The delay-optimal control problem is formulated as an infinite horizon average cost constrained partially observed Markov decision process (CPOMDP). By exploiting the special structure in our problem, we derive an equivalent Bellman Equation to solve the CPOMDP. To reduce computational complexity and facilitate distributed implementation, we propose a distributed online learning algorithm to estimate the per-flow potential functions and Lagrange multipliers (LMs) and a distributed online stochastic partial gradient algorithm to obtain the power and rate control policy. We prove the convergence and asymptotic optimality of the proposed solution.
Keywords :
Decorrelation; Delays; Equations; Interference; MIMO; Resource management; Transmitters; Partial cooperative MIMO; delay-sensitive; imperfect CSIT; limited backhaul capacity;
fLanguage :
English
Journal_Title :
Wireless Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-1276
Type :
jour
DOI :
10.1109/TWC.2013.092013.130422
Filename :
6613626
Link To Document :
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