MIMO channel capacity using antenna selection and water pouring

被引:0
作者
Jose V Cuan-Cortes
Cesar Vargas-Rosales
David Munoz-Rodriguez
机构
[1] Tecnologico de Monterrey,Department of Electrical and Computer Engineering
来源
EURASIP Journal on Wireless Communications and Networking | / 2014卷
关键词
MIMO; Ergodic capacity; Antenna selection technique; Water-pouring algorithm;
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中图分类号
学科分类号
摘要
The use of multiple-input multiple-output (MIMO) communication systems has attracted considerable attention due to capacity and performance improvements without increasing the required bandwidth or transmission power. Although MIMO improves the transmission rate and provides reliable communication, these advantages come at a high cost, since multiple radio frequency (RF) chains have to be employed. Therefore, cost-effective implementation of MIMO systems remains as an important challenge. In this sense, antenna selection techniques (AST) can help reduce the high cost of MIMO systems, while retaining most of their benefits; and in order to improve channel capacity, transmission power can be allocated efficiently according to the channel experienced by each antenna element. In this paper, we show the channel capacity improvement of MIMO systems, by combining the use of AST and transmission power allocation through the water-pouring algorithm (WPA) for different antenna configurations. We apply WPA and allocate more power to the channel with better conditions, when the MIMO channel is Rayleigh distributed and noise is Gaussian. By employing these two techniques (AST and WPA), we show that channel capacity is significantly improved, with higher capacity values than those obtained using traditional systems which just spread equal power among all the transmit antennas. We also show that bounds on the capacity can be considered when these improvements are used in a MIMO system.
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共 17 条
[1]  
Sanayei S(2004)Antenna selection in MIMO systems IEEE Commun. Mag 42 68-73
[2]  
Nosratinia A(2005)Antenna selection for space-time coded systems with imperfect channel estimation IEEE Trans. Wireless Commun 6 710-719
[3]  
Ma Q(2009)Antenna selection for MIMO-OFDM systems with channel estimation error IEEE Trans. Vehicular Technol 58 2269-2278
[4]  
Tepedelenlioglu C(2009)Antenna selection and power control in MIMO systems with continuously varying channels IEEE Commun. Lett 13 480-482
[5]  
Narasimhamurthy AB(2005)Multimode antenna selection for spatial multiplexing systems with linear receivers IEEE Trans. Signal Process 53 3042-3056
[6]  
Tepedelenlioglu C(2012)Antenna selection in LTE: from motivation to specification IEEE Commun. Mag 50 144-150
[7]  
Yellapantula R(2005)Capacity of MIMO systems with antenna selection IEEE Trans. Wireless Commun 6 1759-1772
[8]  
Yingwei Y(2003)Characterization of the optimum transmitter correlation matrix for MIMO with antenna subset selection IEEE Trans. Commun 51 1779-1782
[9]  
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