DocumentCode
1475077
Title
Complexity of a software GSM base station
Author
Turletti, Thierry ; Tennenhouse, David
Author_Institution
Inst. Nat. de Recherche en Inf. et Autom., France
Volume
37
Issue
2
fYear
1999
fDate
2/1/1999 12:00:00 AM
Firstpage
113
Lastpage
117
Abstract
There is increasing interest in developing radio-based applications in software. The new architecture for implementing mobile telephony base stations has the potential of offering many benefits: great cost savings by using one transceiver per base transceiver station (BTS) instead of one per channel, tremendous flexibility by moving system-specific parameters to the digital part, and allowing the support of a wide range of modulation and coding schemes. A very important problem in designing software radio applications is the need to estimate the required complexity of processing to dimension systems. For example, with a software GSM BTS it is critical to estimate the number of channels that can be supported by a given processor configuration, and to predict the impact of future processor enhancements on its capacity. This article focuses on the design of a software implementation of a GSM BTS and proposes a platform-independent evaluation of its computational requirements based on SPEC benchmarks. It focuses on the design and performance of a library of software modules. Portability and computational requirements are discussed
Keywords
cellular radio; computational complexity; digital radio; transceivers; base transceiver station; channels; coding; complexity; computational requirements; cost; design; dimensioning; flexibility; mobile telephony base stations; modulation; platform-independent evaluation; portability; processor configuration; software GSM base station; software implementation; software modules library; software radio; system-specific parameters; Application software; Base stations; Computer architecture; Digital modulation; GSM; Modulation coding; Software design; Software radio; Telephony; Transceivers;
fLanguage
English
Journal_Title
Communications Magazine, IEEE
Publisher
ieee
ISSN
0163-6804
Type
jour
DOI
10.1109/35.747259
Filename
747259
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