DocumentCode
2361736
Title
Low complexity precoding for large millimeter wave MIMO systems
Author
Ayach, O.E. ; Heath, Robert W., Jr. ; Abu-Surra, Shadi ; Rajagopal, Sridhar ; Pi, Zhouyue
Author_Institution
Wireless Networking & Commun. Group, Univ. of Texas at Austin, Austin, TX, USA
fYear
2012
fDate
10-15 June 2012
Firstpage
3724
Lastpage
3729
Abstract
Millimeter wave (mmWave) systems must overcome heavy signal attenuation to support high-throughput wireless communication links. The small wavelength in mmWave systems enables beamforming using large antenna arrays to combat path loss with directional transmission. Beamforming with multiple data streams, known as precoding, can be used to achieve even higher performance. Both beamforming and precoding are done at baseband in traditional microwave systems. In mmWave systems, however, the high cost of mixed-signal and radio frequency chains (RF) makes operating in the passband and analog domains attractive. This hardware limitation places additional constraints on precoder design. In this paper, we consider single user beamforming and precoding in mmWave systems with large arrays. We exploit the structure of mmWave channels to formulate the precoder design problem as a sparsity constrained least squares problem. Using the principle of basis pursuit, we develop a precoding algorithm that approximates the optimal unconstrained precoder using a low dimensional basis representation that can be efficiently implemented in RF hardware. We present numerical results on the performance of the proposed algorithm and show that it allows mmWave systems to approach waterfilling capacity.
Keywords
MIMO communication; array signal processing; channel coding; least squares approximations; millimetre wave antenna arrays; precoding; radio links; RF hardware; high-throughput wireless communication links; large antenna arrays; large millimeter wave MIMO systems; low complexity precoding; low dimensional basis representation; microwave systems; mmWave channel structure; mmWave systems; multiple data streams; optimal unconstrained precoder; path loss; precoder design problem; radio frequency chains; signal attenuation; single user beamforming; sparsity constrained least squares problem; waterfilling capacity approach; Antenna arrays; Approximation algorithms; Array signal processing; Baseband; Radio frequency; Receivers; Vectors;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications (ICC), 2012 IEEE International Conference on
Conference_Location
Ottawa, ON
ISSN
1550-3607
Print_ISBN
978-1-4577-2052-9
Electronic_ISBN
1550-3607
Type
conf
DOI
10.1109/ICC.2012.6363634
Filename
6363634
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