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Baseband Analog Circuits for Software Defined Radio

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發表於 2008-3-11 11:47:52 | 只看該作者 回帖獎勵 |正序瀏覽 |閱讀模式
Contents
0 ~: O* m0 M3 kDedication v9 X# r  A9 U9 v8 L; [
Preface xi: P  p$ D9 ?1 }: k
Acknowledgments xv1 c2 P: \- M0 K* o
1. 4G MOBILE TERMINALS 1
7 \, U- a/ B. o( a5 L5 L: ]1.1 A Wireless-Centric World 1
* k* i3 \+ ^  v6 C* U1.2 The Driving Forces Towards 4G Systems 39 [8 Q! M$ r8 [: k$ H( E  k
1.3 Basic Architecture For a 4G Terminal 66 r( R1 ^3 O+ s
1.4 The Role of Analog Circuits 80 P" S0 S% ~% h8 ~
1.5 Energy-Scalable Radio Front End 9; [7 M. t, q( R& v- p) b
1.6 Towards Cognitive Radios 11
; h1 e# Z, c! H! c5 {. l2. SOFTWARE DEFINED RADIO FRONT ENDS 138 j4 K" x' \; Q
2.1 The Software Radio Architecture 13
& I( H3 o+ m- C0 e+ Z  D% |2.2 Candidate Architectures for SDR Front Ends 16
9 W# y, [% A. _5 p6 p- A2.2.1 Heterodyne and digital-IF receivers 17
2 |" o& ^/ ]; z2.2.2 Zero-IF receivers 19
- X6 k% w- A; H, V5 _2.2.3 Digital low-IF receivers 22" ~0 Q: x7 T2 p6 v# v/ O
2.2.4 Bandpass sampling receivers 243 s+ }: J. G$ E  P" M
2.2.5 Direct RF sampling receivers 26, |/ z* _  ~: d: I6 r* ~7 Y: y
2.3 SDR Front End Implementation 27
1 v+ |6 z  F. h6 i/ k2.3.1 LNA and input matching 29+ F+ ?/ p* }/ n$ ~. F
2.3.2 Frequency synthesizer 30
# s" {. w- b( m4 B2.3.3 Baseband signal processing 31' e1 R) {( i& H) @! |3 S" _
2.3.4 Measurements results 31
) v- n, I" b9 D8 J( E2.4 Digital Calibration of Analog Imperfections 33
0 s( V# b$ A' Q  }. [* m2.4.1 Quadrature imbalance 34
* P# w* V0 P, j/ L1 V5 C1 R' P! a2.4.2 DC offset 36' p0 ?, ^) b% I9 H0 ~5 f+ B4 x
viii Contents
6 W) C6 m/ \0 h; ]- S* H; f2.4.3 Impact of LPF spectral behavior 36
+ ^1 o+ `8 t* B: g. c8 X7 j2.5 Conclusions 37
5 v! ?: w; v% ]2 c; v! w) E3. LINK BUDGET ANALYSIS IN THE SDR ANALOG
. Y: i9 k1 o8 Z, T' RBASEBAND SECTION 39$ q1 Q3 u; f, B
3.1 Analog Baseband Signal Processing 39
! m9 r% T3 }& T3.2 Baseband Trade-Offs for Analog to Digital Conversion 40
# L9 G: I) Z4 _8 v: i! Y; Y3.2.1 Number of poles for the LPF 41
+ F2 V. t4 X* N! Y- Z3.2.2 ADC dynamic range 42
2 i1 J/ U% W  E& k/ {3.2.3 Baseband power consumption estimation 47) c  N( E- a3 }3 j: C5 K/ l9 H
3.3 Multistandard Analog Baseband Specs 48* I+ t  W" b$ H% x; S. z
3.4 Multimode Low-Pass Filter 49
1 i+ r: d/ i2 C3.4.1 Filter selectivity 50
* \9 X6 [) F9 q# R" Z) t3.4.2 Filter noise and linearity 54
$ i4 q6 b/ i! [9 D% G( |" {- P9 g3.4.3 Filter flexibility planning 56
* |7 U  J7 s7 b3.4.4 Cascade of biquadratic sections 59
* ?! |/ G) p  I9 U% j" ^  J! R/ A3.5 Automatic Gain Control 624 b# o* z% s& S! q6 G" ]( q% O8 @
3.6 Conclusions 65# h6 B/ o6 T* {7 D
4. FLEXIBLE ANALOG BUILDING BLOCKS 67, E" `- L( {6 ]
4.1 Challenges in Analog Design for Flexibility 67$ a/ q; g# s8 k* C- H
4.2 A Modular Design Approach 680 y3 e% s0 ?$ ~$ A
4.3 Flexible Operational Amplifiers 70% g- X8 r8 O: O! X% l, D1 E4 P0 y3 p
4.3.1 Variable current sources 70: F5 K2 l5 p* x' O# t6 c/ p2 _5 z
4.3.2 Arrays of operational amplifiers 71
7 L" s3 M) ^$ I* h( B4.4 A Digital-Controlled Current Follower 75
% L- \% O8 w6 K. r# J. g% v4.5 Flexible Passive Components 75; N8 w. ?$ p. b1 z9 d" h
4.6 Flexible Transconductors 77
2 m- q0 _$ B" }, v5 s5 a( h, ^8 _4.7 Flexible Biquadratic Sections 78' ], G* e. \$ V6 @
4.7.1 The Active-Gm-RC biquad 79
* k6 u0 {# s; g( F7 S# v! L8 k1 N4.8 Conclusions 91  k7 e% g+ W/ N" D6 g
5. IMPLEMENTATIONS OF FLEXIBLE FILTERS FOR SDR, R9 Y9 b3 z4 I$ A! a6 ^
FRONT END 932 O  C' F: s' c$ T3 _
5.1 State of the Art for Flexible CT Filters 93
/ c! `; K0 @1 K( v; n7 u# M, d5.2 A Reconfigurable UMTS/WLAN Active-Gm-RC LPF 94
8 Q( s0 `) [) ?# h3 @9 A5.2.1 Filter architecture 96
* y% b( z7 R. Y# j7 z7 n2 E5.2.2 Automatic RC calibration scheme 97# K9 u. I- a9 W; Q& t
5.2.3 Measurements results 102  C. I' n5 C) H! f
Contents ix- N1 W7 M- z3 ^, e: G. q& }
5.3 LPF and VGA for SDR Front End 105
+ Q! i$ @6 ~1 ]% u# y5.3.1 LPF and VGA architectures 107
! R( I/ b7 `3 Z- b% h5 g; f# @$ @% t5.3.2 Prototype measurements 111
& @2 l! ]8 t. R3 O7 i' k5.4 Conclusions 118, x3 t  R' a* p6 @  [1 Q
Acronyms 119) ?" z  J4 O2 T8 R/ B2 {) t; l* Z
List of Figures 1236 T+ |2 i1 K  a6 m3 n% a
List of Tables 1293 M! t; ~2 K& g7 r/ d) N" N
References 131  F: a7 m0 C6 P7 p. Y6 Z3 B% c2 b
Index 139
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