Title :
On the Diversity Order of Spatial Multiplexing Systems With Transmit Antenna Selection: A Geometrical Approach
Author :
Zhang, Hongyuan ; Dai, Huaiyu ; Zhou, Quan ; Hughes, Brian L.
Author_Institution :
Marvell Semicond. Inc, Santa Clara, CA
Abstract :
In recent years, the remarkable ability of multiple-input-multiple-output (MIMO) wireless communication systems to provide spatial diversity or multiplexing gains has been clearly demonstrated. For MIMO diversity schemes, it is well known that antenna selection methods that optimize the postprocessing signal-to-noise ratio (SNR) can preserve the diversity order of the original full-size MIMO system. On the other hand, the diversity order achieved by antenna selection in spatial multiplexing systems, especially those exploiting practical coding and decoding schemes, has not thus far been rigorously analyzed. In this paper, a geometrical framework is proposed to theoretically analyze the diversity order achieved by transmit antenna selection for separately encoded spatial multiplexing systems with linear and decision-feedback receivers. When two antennas are selected from the transmitter, the exact achievable diversity order is rigorously derived, which previously only appears as conjectures based on numerical results in the literature. If more than two antennas are selected, we give lower and upper bounds on the achievable diversity order. Furthermore, the same geometrical approach is used to evaluate the diversity-multiplexing tradeoff in spatial multiplexing systems with transmit antenna selection
Keywords :
MIMO communication; antenna arrays; diversity reception; encoding; multiplexing; radio receivers; transmitting antennas; MIMO wireless communication system; decision-feedback receivers; diversity order; encoded spatial multiplexing system; geometrical approach; linear receivers; multiple-input-multiple-output; transmit antenna selection; Antenna theory; Decoding; MIMO; Optimization methods; Receiving antennas; Signal to noise ratio; Transmitters; Transmitting antennas; Upper bound; Wireless communication; Antenna selection; diversity and multiplexing tradeoff; diversity order; multiple-input–multiple-output (MIMO); spatial multiplexing;
Journal_Title :
Information Theory, IEEE Transactions on
DOI :
10.1109/TIT.2006.885531