DocumentCode
2508887
Title
An SMSE Implementation of CDMA with Partial Band Interference Suppression
Author
Roberts, Marcus L. ; Temple, Michael A. ; Mills, Robert F. ; Raines, Richard A.
Author_Institution
Air Force Inst. of Technol., Wright-Patterson AFB
fYear
2007
fDate
26-30 Nov. 2007
Firstpage
4424
Lastpage
4428
Abstract
A spectrally modulated, spectrally encoded (SMSE) framework is adopted for implementing code division multiple access (CDMA) with partial band interference suppression. SMSE signals are constructed within an architecture governed by cognitive radio (CR) principles and supported by software defined radio (SDR) implementation, a union referred to as CR- based SDR. Orthogonal frequency division multiplexing (OFDM) signals, a foundational part of future 4G systems, are collectively classified as SMSE because data modulation and encoding are applied in the spectral domain. Framework applicability was demonstrated for realistic 4G signals by illustrating consistency between resultant analytic SMSE expressions and published results. Framework implementability and flexibility is further demonstrated herein using more complex CDMA signal structures. Modeling and simulation results are presented for a form of multi-carrier CDMA using polyphase codes with adaptive spectral notching (interference avoidance). Collectively, the SMSE implementation of this system correlates very well with theoretical predictions for multiple access scenarios.
Keywords
4G mobile communication; OFDM modulation; code division multiple access; codes; cognitive radio; interference suppression; modulation coding; software radio; 4G systems; adaptive spectral notching; code division multiple access; cognitive radio; data encoding; data modulation; interference avoidance; orthogonal frequency division multiplexing signals; partial band interference suppression; polyphase codes; software defined radio; spectral domain; spectrally modulated spectrally encoded framework; Chromium; Cognitive radio; Computer architecture; Encoding; Interference suppression; Modulation coding; Multiaccess communication; OFDM modulation; Signal analysis; Software radio;
fLanguage
English
Publisher
ieee
Conference_Titel
Global Telecommunications Conference, 2007. GLOBECOM '07. IEEE
Conference_Location
Washington, DC
Print_ISBN
978-1-4244-1042-2
Electronic_ISBN
978-1-4244-1043-9
Type
conf
DOI
10.1109/GLOCOM.2007.841
Filename
4411751
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