Title :
Simplified robust design for nonregenerative ulticasting MIMO relay systems
Author :
Gopal, Lenin ; Yue Rong ; Zhuquan Zang
Author_Institution :
Dept. of Electr. & Comput. Eng., Curtin Univ., Miri, Malaysia
Abstract :
In this paper, we propose a robust transceiver design for nonregenerative multicasting multiple-input multiple-output (MIMO) relay systems where a transmitter broadcasts common message to multiple receivers with aid of a relay node and the transmitter, relay and receivers are all equipped with multiple antennas. In the proposed design, the actual channel state information (CSI) is assumed as a Gaussian random matrix with the estimated CSI as the mean value, and the channel estimation errors are derived from the well-known Kronecker model. In the proposed design scheme, the transmitter and relay precoding matrices are jointly optimized to minimize the maximal mean squared-error (MSE) of the estimated signal at all receivers. The optimization problem is highly nonconvex in nature. Hence, we propose a low complexity solution by exploiting the optimal structure of the relay precoding matrix. Numerical simulations demonstrate the improved robustness of the proposed transceiver design algorithm against the CSI mismatch.
Keywords :
Gaussian processes; MIMO communication; matrix algebra; mean square error methods; optimisation; relay networks (telecommunication); transceivers; CSI; Gaussian random matrix; Kronecker model; MSE; channel state information; maximal mean squared-error; nonregenerative multicasting MIMO relay systems; nonregenerative multicasting multiple-input multiple-output relay systems; numerical simulations; optimization problem; relay precoding matrices; robust transceiver design; simplified robust design; MIMO; Multicast communication; Niobium; Receivers; Relays; Robustness; Transmitters; Nonregenerative MIMO relay; minimum mean-squared error (MMSE); multicasting; robustness;
Conference_Titel :
Telecommunications (ICT), 2015 22nd International Conference on
Conference_Location :
Sydney, NSW
DOI :
10.1109/ICT.2015.7124698