DocumentCode
69386
Title
Distributed Sum-Rate Optimization for Full-Duplex MIMO System Under Limited Dynamic Range
Author
Tae Min Kim ; Hyun Jong Yang ; Paulraj, A.J.
Author_Institution
Dept. of Electr. Eng., Stanford Univ., Stanford, CA, USA
Volume
20
Issue
6
fYear
2013
fDate
Jun-13
Firstpage
555
Lastpage
558
Abstract
Distributed sum-rate-maximizing covariance matrices design for full-duplex multi-input multi-output communication is considered, where the information of the loopback interference channels cannot be exchanged reliably due to their large dynamic ranges. We propose a structured covariance matrices design which finds the optimal balance between the two solutions in the extremes of the weak and strong self-interference through a single-parameter optimization. We further propose a low-complexity null projection matrix design algorithm, in which the solution in the strong self-interference regime is designed in the sense to maximize the received channel gain. Exploiting the well-posed structure, the proposed scheme nearly achieves the sum-rate of the previous scheme based on the gradient projection with significantly less amount of inter-node iterations, yielding an increased effective sum-rate and reduced overall complexity for the practial channel block lengths.
Keywords
MIMO communication; covariance matrices; interference; iterative methods; optimisation; distributed sum-rate optimization; distributed sum-rate-maximizing covariance matrices design; full-duplex MIMO system; full-duplex multi-input multi-output communication; inter-node iterations; limited dynamic range; loopback interference channels; low-complexity null projection matrix design algorithm; practial channel block lengths; self-interference regime; single-parameter optimization; structured covariance matrices design; Complexity theory; Covariance matrix; Dynamic range; Interference; MIMO; Optimization; Silicon; Covariance matrix design; MIMO; distributed optimization; full-duplex; limited dynamic range;
fLanguage
English
Journal_Title
Signal Processing Letters, IEEE
Publisher
ieee
ISSN
1070-9908
Type
jour
DOI
10.1109/LSP.2013.2248360
Filename
6470648
Link To Document