Title :
Receive Antenna Selection for Time-Varying Channels Using Discrete Prolate Spheroidal Sequences
Author :
Saleh, Hassan A Abou ; Molisch, Andreas F. ; Zemen, Thomas ; Blostein, Steven D. ; Mehta, Neelesh B.
Author_Institution :
Dept. of Electr. & Comput. Eng., Queen´´s Univ., Kingston, ON, Canada
fDate :
7/1/2012 12:00:00 AM
Abstract :
Receive antenna selection (AS) has been shown to maintain the diversity benefits of multiple antennas while potentially reducing hardware costs. However, the promised diversity gains of receive AS depend on the assumptions of perfect channel knowledge at the receiver and slowly time-varying fading. By explicitly accounting for practical constraints imposed by the next-generation wireless standards such as training, packetization and antenna switching time, we propose a single receive AS method for time-varying fading channels. The method exploits the low training overhead and accuracy possible from the use of discrete prolate spheroidal (DPS) sequences based reduced rank subspace projection techniques. It only requires knowledge of the Doppler bandwidth, and does not require detailed correlation knowledge. Closed-form expressions for the channel prediction and estimation error as well as symbol error probability (SEP) of M-ary phase-shift keying (MPSK) for symbol-by-symbol receive AS are also derived. It is shown that the proposed AS scheme, after accounting for the practical limitations mentioned above, outperforms the ideal conventional single-input single-output (SISO) system with perfect CSI and no AS at the receiver and AS with conventional estimation based on complex exponential basis functions.
Keywords :
error statistics; fading channels; phase shift keying; receiving antennas; time-varying channels; Doppler bandwidth; M-ary phase-shift keying; antenna switching time; channel prediction; discrete prolate spheroidal sequences; diversity benefits; estimation error; multiple antennas; next-generation wireless standards; packetization; perfect channel knowledge; receive antenna selection; subspace projection; symbol error probability; symbol-by-symbol receive; time-varying fading channels; Channel estimation; Data communication; Receiving antennas; Switches; Time-varying channels; Training; Vectors; Antenna selection; Slepian basis expansion; discrete prolate spheroidal sequences; time-varying fading;
Journal_Title :
Wireless Communications, IEEE Transactions on
DOI :
10.1109/TWC.2012.050112.111582