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Research for the Dynamic Range and Its Extension of Digital Intermediate Frequency Receiver

Research for the Dynamic Range and Its Extension of Digital Intermediate Frequency Receiver
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摘要 For the optimization of dynamic range and bandwidth of digital intermediate frequency receiver(DIFR), main factors affecting them and their relationships are studied. Firstly, the DIFR sensitivity, bandwidth, noise factor of radio frequency (RF) analog front-end (RFAF), and processing gain of intermediate frequency(IF) sampling are analyzed. Secondly, the constraint relationship of the noise factor of RFAF, the signal-to-noise ratio of ADC and the dynamic range of DIFR are studied. The relationship between the dynamic range and the RFAF gain, and that of the extended dynamic range and the RF AGC(automatic gain control) step are educed and simulated. These results can be used as theory foundations and design references for the implementation and optimization of the large dynamic range and wideband DIFR. For the optimization of dynamic range and bandwidth of digital intermediate frequency receiver(DIFR), main factors affecting them and their relationships are studied. Firstly, the DIFR sensitivity, bandwidth, noise factor of radio frequency (RF) analog front-end (RFAF), and processing gain of intermediate frequency(IF) sampling are analyzed. Secondly, the constraint relationship of the noise factor of RFAF, the signal-to-noise ratio of ADC and the dynamic range of DIFR are studied. The relationship between the dynamic range and the RFAF gain, and that of the extended dynamic range and the RF AGC(automatic gain control) step are educed and simulated. These results can be used as theory foundations and design references for the implementation and optimization of the large dynamic range and wideband DIFR.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2004年第4期381-384,共4页 北京理工大学学报(英文版)
基金 SponsoredbytheMinisterialLevelAdvancedResearchFoundation (0 0 2 40 40 5 0 30 2 )
关键词 BROADBAND sensitivity dynamic range digital intermediate frequency receivers(DIFR) broadband sensitivity dynamic range digital intermediate frequency receivers(DIFR)
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  • 1钱丽.数字瞬时AGC系统[J].现代雷达,2001,23(S1):92-94. 被引量:5
  • 2Huang X H.A unified software radio architecture[Z]. 2001 IEEE Third Workshop on Signal Processing Advances in Wireless Communications, Taiwan, 2001.
  • 3Chiu C T. 2 GHz W-CDMA radio transceiver[D]. Blacksburg: Department of Electrical and Computer Engineering, Virginia Polytechnic Institute and State University,1998.
  • 4Brad B. Digital-radio-receiver design requires re-evaluation of parameters[EB/OL]. http://www.analog.com,2002-01-12/2002-12-10.
  • 5John J, Robert M, Joseph P. A smart software radio: Concept development and demonstration[J]. IEEE Journal on Selected Areas in Communications, 1999, 17(4): 631-645.
  • 6Brad B. Basics of designing a digital radio receiver [EB/OL]. http://www.analog.com,2002-01-12/2002-12-10.
  • 7Tim H, Matthias H, Gerhard F. The digital front-end of software radio terminals[J]. IEEE Personal Communications,1999(8):40-45.
  • 8陈宁.[D].北京:北京理工大学信息科学技术学院电子工程系,2003.
  • 9Hassan O, Mohammed I. Digitally programmable decibel-linear CMOS VGA for low-power mixed-signal applications[J]. IEEE Trans on Circuits and Systems-Ⅱ: Analog and Digital Signal Processing, 2000,47(5):388-390.
  • 10Analog Device Inc. AD9244 data sheet[EB/OL]. http:∥www.analog.com,2002-06-01/2002-09-12.

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