DocumentCode
1436015
Title
Low-complexity smart antenna methods for third-generation W-CDMA systems
Author
Tsoulos, George V. ; Athanasiadou, Georgia E. ; Piechocki, Robert J.
Author_Institution
PA Consulting Group, Cambridge Technol. Centre, UK
Volume
49
Issue
6
fYear
2000
fDate
11/1/2000 12:00:00 AM
Firstpage
2382
Lastpage
2396
Abstract
There is still an open debate within the research community regarding the likely performance enhancement of smart antennas versus their complexity for commercial wireless applications. The goal of the study presented in this paper is to investigate the performance improvement attainable using relatively simple smart antenna techniques when applied to the third-generation W-CDMA air interface. Methods to achieve this goal include fixed multibeam architectures with different beam selection algorithms (maximum power criterion, combined beams) or adaptive solutions driven by relatively simple direction finding algorithms. After comparing these methods against each other for several representative scenarios, some issues related to the sensitivity of these methods are also studied, (e.g., robustness to environment, mismatches originating from implementation limitations, etc.). Results indicate that overall, conventional beamforming seems to be the best choice in terms of balancing the performance and complexity requirements, in particular when the problem with interfering high-bit-rate W-CDMA users is considered
Keywords
adaptive antenna arrays; array signal processing; broadband networks; code division multiple access; direction-of-arrival estimation; land mobile radio; multibeam antennas; multiuser channels; network interfaces; radio networks; radiofrequency interference; adaptive algorithms; adaptive solutions; beam selection algorithms; beamforming; combined beams; commercial wireless applications; complexity requirements; direction finding algorithms; interfering high-bit-rate W-CDMA users; maximum power criterion; multibeam architectures; performance enhancement; performance requirements; smart antennas; third-generation W-CDMA air interface; third-generation W-CDMA systems; 3G mobile communication; Adaptive arrays; Array signal processing; Context; Costs; Filtering; Multiaccess communication; Robustness; Space technology; Wireless communication;
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/25.901907
Filename
901907
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