DocumentCode :
2412564
Title :
Improved Blind Interference Alignment in a Cellular Environment Using Power Allocation and Cell-Based Clusters
Author :
Wang, Chenwei ; Papadopoulos, Haralabos C. ; Ramprashad, Sean A. ; Caire, Giuseppe
Author_Institution :
EECS Dept., Univ. of California, Irvine, CA, USA
fYear :
2011
fDate :
5-9 June 2011
Firstpage :
1
Lastpage :
6
Abstract :
Fundamentally, benefits of Multiple Input Multiple Output (MIMO) in wireless systems rest on increasing the number of Degrees of Freedom (DoFs) that can be exploited for transmission. DoFs can be used to increase spectral efficiency and/or provide increased diversity. However, exploiting DoFs in MIMO often requires knowledge of Channel State Information (CSI) at the transmitter and/or receiver. Obtaining CSI creates overheads due to the required use of wireless resources for CSI-estimation pilots and/or CSI feedback. This can create a fundamental "dimensionality bottleneck" that limits the growth in spectral efficiency for some conventional MIMO systems. Recently a new class of techniques known as "Blind Interference Alignment" (BIA) has demonstrated the possibility to grow DoFs without many of the CSI overheads of conventional systems. BIA therefore has the potential to relieve the "dimensionality bottleneck". However, BIA can have limited applicability to many users in a cellular environment given that it requires a high Signal to Noise Ratio (SNR) to operate efficiently. By examining BIA, we present a method to reduce the SNR requirements and improve the application of BIA through power allocation and cluster-based transmission. We show that BIA can be applied successfully in cellular without the need for joint processing between base-stations, and can improve performance over conventional MIMO for even cell-edge users in some scenarios.
Keywords :
MIMO communication; cellular radio; interference (signal); radio receivers; radio transmitters; wireless channels; MIMO; blind interference alignment; cell-based cluster; cellular environment; channel state information; cluster-based transmission; degrees of freedom; dimensionality bottleneck; multiple input multiple output; power allocation; receiver; spectral efficiency; transmitter; wireless system; Array signal processing; Interference; MIMO; Signal to noise ratio; Transmitting antennas;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Communications (ICC), 2011 IEEE International Conference on
Conference_Location :
Kyoto
ISSN :
1550-3607
Print_ISBN :
978-1-61284-232-5
Electronic_ISBN :
1550-3607
Type :
conf
DOI :
10.1109/icc.2011.5962838
Filename :
5962838
Link To Document :
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