DocumentCode :
2295731
Title :
Robust MMSE transceiver design in amplify-and-forward MIMO relay system with Tomlinson-Harashima source precoding
Author :
Tseng, Fan-Shuo ; Chang, Min-Yao ; Wu, Wen-Rong
Author_Institution :
Inst. of Commun. Eng., Nat. Sun Yat-sen Univ., Kaohsiung, Taiwan
fYear :
2012
fDate :
1-4 April 2012
Firstpage :
748
Lastpage :
752
Abstract :
Most nonlinear transceiver designs in amplify-and-forward (AF) multiple-input-multiple-output (MIMO) relay systems assume that instantaneous perfect channel state informations (CSIs) are available. Transceiver design with imperfect CSIs have rarely been addressed. In this paper, we consider an AF MIMO system in which a Tomlinson-Harashima precoder (THP) is used at the source, a linear precoder at the relay, and a minimum-mean-squared-error (MMSE) receiver at the destination. With the imperfect CSIs, we propose a new robust transceiver design method. It is shown that the optimization problem for the design is difficult due to the fact that the objective function is a nonlinear function of the source and relay precoders and yet the constraints are coupled. To overcome the problem, we adopt the primal decomposition technique, decomposing the original optimization into a subproblem and a master problem. To facilitate the derivation of the solution, we propose cascading THP with a unitary precoder and using a lower bound of the objective function. In this way, we can translate the original matrix-valued optimization into the scalar-valued concave optimization. Using the Karush-Kuhn-Tucker (KKT) conditions, we can finally obtain the closed-form solutions for the relay and source precoders. Simulations show that the proposed design is effective against the imperfect CSIs.
Keywords :
MIMO communication; amplify and forward communication; least mean squares methods; optimisation; precoding; radio transceivers; source coding; Karush-Kuhn-Tucker conditions; MMSE transceiver design; Tomlinson Harashima source precoding; amplify and forward MIMO relay system; minimum mean squared error receiver; multiple-input-multiple-output relay system; nonlinear function; nonlinear transceiver designs; objective function; optimization problem; original matrix valued optimization; perfect channel state informations; primal decomposition technique; relay precoders; scalar valued concave optimization; unitary precoder; Joints; MIMO; Optimization; Relays; Robustness; Strontium; Transceivers; Amplify-and-forward (AF); Karush-Kuhn-Tucker (KKT); Tomlinson-Harashima precoding (THP); cooperative communication; minimum-mean-squared-error (MMSE); multiple-input multiple-output (MIMO); primal decomposition; robust transceiver design;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Wireless Communications and Networking Conference (WCNC), 2012 IEEE
Conference_Location :
Shanghai
ISSN :
1525-3511
Print_ISBN :
978-1-4673-0436-8
Type :
conf
DOI :
10.1109/WCNC.2012.6214470
Filename :
6214470
Link To Document :
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