DocumentCode
152636
Title
Reconfigurable MIMO: Design and performance analysis
Author
Kurtulmaz, Ekim ; Bahceci, Israfil ; Cetiner, B.A.
Author_Institution
Elektrik ve Elektron. Muhendisligi Bolumu, TOBB Ekonomi ve Teknoloji Univ., Ankara, Turkey
fYear
2014
fDate
23-25 April 2014
Firstpage
1227
Lastpage
1230
Abstract
Reconfigurable multiple antenna systems (MR-MIMO) are MIMO systems that consist of smart antenna elements whose radiation pattern, frequency band and polarization properties can be changed. With an MR-MIMO antenna system, both element factor, F(φ, θ), and array factor, A(φ, θ)) of the antenna can be modified to achieve a desired antenna radiation pattern F(φ, θ) × A(φ, θ). In this paper, we investigate a pixelantenna based MR-MIMO system that can create a finite number of different antenna radiation patterns, and design transmit and receive algorithms that can perform precoding and antenna mode selection at the same time. Since each mode of an MR-MIMO antenna may result in a different matrix channel realization, we also study channel estimation methods and look into to the impact of channel estimation overhead on the performance gains of MR-MIMO system. Methods that can jointly design antenna mod selection and precoder matrix is also introduced and their performance is analyzed via simulations. Results indicate that significant SNR gains can be achieved with MR-MIMO antennas compared to the traditional MIMO antennas.
Keywords
MIMO communication; adaptive antenna arrays; antenna radiation patterns; channel estimation; matrix algebra; precoding; MR-MIMO system; antenna mode selection; antenna radiation pattern; array factor; channel estimation overhead; element factor; frequency band; matrix channel realization; performance analysis; performance gains; polarization properties; precoder matrix; precoding; receive algorithms; reconfigurable multiple antenna systems; smart antenna elements; transmit algorithms; Antenna radiation patterns; Conferences; MIMO; Signal to noise ratio; MR antenna; antenna radiation pattern; channel estimation; precoding;
fLanguage
English
Publisher
ieee
Conference_Titel
Signal Processing and Communications Applications Conference (SIU), 2014 22nd
Conference_Location
Trabzon
Type
conf
DOI
10.1109/SIU.2014.6830457
Filename
6830457
Link To Document