Towards a highly flexible spectrum sensing platform for cognitive radio networks

Signals, Systems, and Electronics(2012)

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摘要
Multi-nodal spectrum sensing is a promising approach to robust cognitive radio networks, which provides increased adaptability to database-anchored sharing approaches. Yet its commercially viable implementation requires compact, low-cost, flexible sensing receivers. This paper describes an implementation approach relying on a fully differential 0.25 μm SiGe:C BiCMOS low-noise down-converter RFIC in the front-end, which covers 0.3-6 GHz. Its quadrature outputs are processed in a commercially available baseband processor that combines dual channel 14-bit, 250 MS/s analog to digital converters (ADC) with a Virtex 6 FPGA. The design and implementation status of the system will be described, as well as its validation under realistic noise and interference conditions, sensing white spaces in the UHF TV band.
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关键词
bicmos integrated circuits,analogue-digital conversion,cognitive radio,field programmable gate arrays,radio networks,radiofrequency integrated circuits,radiofrequency interference,adc,uhf tv band,virtex 6 fpga,baseband processor,cognitive radio networks,database-anchored sharing approach,flexible sensing receivers,fully differential sige:c bicmos low-noise down-converter rfic,high flexible spectrum sensing platform,interference conditions,white spaces,rf front-end,dynamic spectrum access,reconfigurable rfic,spectrum sensing,rf front end,sensors,baseband,radio frequency
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