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21 - Circuits and systems for digital front-ends to support multiple wireless standards

from Part V - Circuits and system integration in digital front-end

Published online by Cambridge University Press:  07 October 2011

Fa-Long Luo
Affiliation:
Element CXI, San Jose, California
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Summary

Introduction

While the migration of RF circuits running at multi-gigahertz frequencies to low-cost deep-submicron CMOS process has made single-chip wireless transceivers a reality, the proliferation of multiple wireless standards has imposed new challenges of integrating multiple wireless standards on the same hardware. One of the challenges in multi-standard radios is the need to support multiple frequency bands ranging from less than 1 GHz to more than 5 GHz. In this chapter, we will discuss the design of digital front-end (DFE) circuits that are applicable to at least two wireless standards: these include GSM/GPRS/EDGE (GGE) and WCDMA. We will also show how to extend the design to support LTE. Restricting the coverage to only three wireless standards is primarily for the amount of analysis that needs to be performed for each standard.

In the context of a receiver, we will use digital front-end (DFE) to describe digital circuits that bridge the output of an A/D converter (ADC) to a digital base-band (DBB) processor. We will also restrict discussion in this chapter to the case of implementation-friendly direct-conversion receiver (DCR) architecture. This will assume zero intermediate frequency (ZIF) for WCDMA and LTE signals but will allow for very low IF (VLIF) for GGE.

Type
Chapter
Information
Digital Front-End in Wireless Communications and Broadcasting
Circuits and Signal Processing
, pp. 620 - 649
Publisher: Cambridge University Press
Print publication year: 2011

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References

Mitola, J.The software radio architectureIEEE Communication Magazine 33 26 1995CrossRefGoogle Scholar
Hentschel, T.Fettweis, G.The digital front-end: Bridge between RF and baseband processingSoftware Defined Radio: Enabling TechnologiesTuttlebee, W.ChichesterWiley 2002 151Google Scholar
3GPP Technical Specification Group Radio Access NetworkUser EquipmentRadio Transmission and Reception (FDD) 2009
Griffith, D.Srinivasan, V.Pennisi, S.9 2010
Muhammad, K.Elahi, I.Jung, T. 2005
Vaidyanathan, P. P.Multirate Systems and Filter Banks, Englewood CliffsNJPrentice-Hall 1993Google Scholar
Erup, L.Gardner, F. M.Harris, R. A.Interpolation in digital modems. II. Implementation and performanceIEEE Trans. Commun 41 998 1993CrossRefGoogle Scholar
Farrow, C. W.2641 1988
Vesma, J. 1995
Elahi, I.Muhammad, K.
Gao, Y.Tenhunen, J.Tenhunen, H. 2000
Hogenauer, E. B.An economical class of digital filters for decimation and interpolationIEEE Trans. Acoust., Speech, Signal Processing 29 155 1981CrossRefGoogle Scholar
Parhi, K. K.VLSI Digital Signal Processing Systems: Design and ImplementationNew YorkJohn Wiley & Sons 1999Google Scholar
Shiraishi, M.A simultaneous coefficient calculation method for FIR filtersIEEE Trans. Circuits and Systems-I: Fundamental Theory and Applications 50 523 2003CrossRefGoogle Scholar
Elahi, I. 2005
Muhammad, K.Ho, Y.-C.Mayhugh, T.The first fully integrated quad-band GSM/GPRS receiver in a 90-nm digital CMOS processIEEE Journal of Solid-State Circuits 41 1772 2006CrossRefGoogle Scholar
Muhammad, K.Hung, C.-M.Leipold, D.197 2009
Elahi, I.Muhammad, K.Balsara, P. T.I/Q mismatch compensation using adaptive decorrelation in a low-IF receiver in 90 nm CMOS processIEEE Journal of Solid-State Circuits 41 395 2006CrossRefGoogle Scholar
Elahi, I.Muhammad, K.599 2009
3GPP Technical Specification Group Radio Access NetworkEvolved Universal Terrestrial Radio AccessUser EquipmentRadio Transmission and Reception 2010
Hogenauer, E. B.An economical class of digital filters for decimation and interpolationIEEE Trans. Acoust., Speech, Signal Processing 29 155 1981CrossRefGoogle Scholar

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