Digital techniques for wideband receivers:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boston, Mass. [u.a.]
Artech House
1995
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Schriftenreihe: | Artech House radar library
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XVI, 518 S. Ill., graph. Darst. |
ISBN: | 0890068089 |
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Datensatz im Suchindex
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adam_text | Digital Techniques for
Wideband Receivers
James Tsui
Artech House
Boston • London
Contents
Preface xv
Chapter 1 Introduction 1
1 1 Wideband Systems 1
1 2 Digital Approach 1
1 3 Obstacles in the EW Receiver Development 3
1 4 Organization of the Book 4
1 5 Specific Remarks 5
References 6
Chapter 2 Requirements and Characteristics of Electronic Warfare
Receivers 7
2 1 Introduction 7
2 2 Introduction to Electronic Warfare 7
2 3 Difference Between Intercept and Communication Receivers 9
2 4 Signal Environment for EW Receivers 10
2 5 Requirements of EW Receivers 12
2 6 Parameters Measured by an EW Receiver 13
2 7 Frequency Information 13
2 8 AOA Information 17
2 9 Outputs of an EW Receiver 18
2 10 Overview of Analog EW Receivers 19
2 11 Instantaneous Frequency Measurement (IFM) Receivers 20
2 12 Channelized Receivers 21
2 13 Bragg Cell Receivers 22
2 14 Compressive (Microscan) Receivers 23
2 15 Digital Receivers 25
2 16 Characteristics and Performance of EW Receivers 26
2 16 1 Single Signal 27
2 16 2 Two Simultaneous Signals 28
vii
viii | Dicital Techniques for Wideband Receivers
2 17 Potential Trend in EW Receiver Development 29
2 17 1 Theoretical Problem Solutions 29
2 17 2 Queuing Receiver 29
2 17 3 Compressive Receiver Used for AOA Measurement 29
2 17 4 Channelized 1FM Receiver 30
2 17 5 Digital EW Receiver 30
2 18 Electronic Warfare Processor 31
2 18 1 Deinterleaving 31
2 18 2 PRI Generation 34
2 18 3 Radar Identification 34
2 18 4 Tracking 34
2 18 5 Revisiting 34
2 19 Summary 35
References 35
Chapter 3 Fourier Transform and Convolution 39
3 1 Introduction 39
3 2 Fourier Transform 39
3 3 Impulse Function 41
3 4 Properties of Fourier Transform 44
341 Linearity 44
342 Even and Odd Functions 44
343 Duality 45
344 Scaling 47
345 Time Shift 48
346 Frequency Shift 49
347 Derivative 49
348 Integral 49
3 5 Fourier Series 30
3 6 Comb Function 31
3 7 Convolution 35
3 8 Parseval’s Theorem 38
3 9 Examples 39
3 10 Summary 71
References 76
Chapter 4 Discrete Fourier Transform 77
4 1 Introduction 77
4 2 Signal Digitization 77
4 3 Graphical Description of Discrete Fourier Transform (DFT) 78
4 4 Analytic Approach to Discrete Fourier Transform 81
4 5 Properties of Discrete Fourier Transform 83
451 Limited Frequency Bandwidth 83
452 Unmatched Time Interval 84
453 Overlapping Aliasing Effect on Real Data 85
Contents | ix
4 6 Window Functions 88
461 Rectangular Window 89
462 Gaussian Window 90
463 Cosine Window Raised to the ath Order 91
464 Generalized Hamming Window 92
4 7 Fast Fourier Transform (FFT) 93
4 8 Possible Advantages of DFT Over FFT in Receiver Applications 101
481 Initial Data Accumulation 102
482 Sliding DFT 103
4 9 Periodogram 104
4 10 Averaged Periodogram 105
References 107
Chapter 5 Fourier Transform-Related Operations 111
5 1 Introduction 111
5 2 Zero Padding 111
5 3 Periodic and Linear Convolutions 113
5 4 Peak Position Estimation for Rectangular Window 118
5 5 Peak Position Estimation for Hanning Window 122
5 6 Peak Position Estimation Through Iteration 124
5 7 Actual Frequency Determination by Fast Fourier Transform 126
5 8 Real Input Computed by a Complex FFT Operator 128
5 9 Autocorrelation 130
5 10 Autocorrelation (Blackman-Tukey) Spectrum Estimation 132
5 11 Application of FFT to Spectrum Estimation From
Autocorrelation Function 134
5 12 Basic Idea of Sub-Nyquist Sampling Scheme 137
5 13 Phase Relation in a Sub-Nyquist Sampling System 140
5 14 Problems and Potential Solutions of Sub-Nyquist Sampling
Scheme 143
5 15 Digital Fourier Transform Through Decimation 146
5 16 Applications of Decimation Method to EW Receivers 148
5 17 Simplified Decimation Method 150
References 152
Chapter 6 Analog-to-Digital Converters 155
6 1 Introduction 155
6 2 ADC Through Folding Technique 155
6 3 ADC Through Sigma-Delta Modulation 157
6 4 Basic Sample and Hold Circuit 160
6 5 Basic ADC Performance and Input Bandwidth 162
6 6 Apparent Maximum and Minimum Signals to an ADC 163
6 7 Quantization Noise of an Ideal ADC 166
* | Digital Techniques for Wideband Receivers
6 8 Noise Level Determined by Processing Bandwidth and Dithering
Effect 168
6 9 Spurious Responses 169
6 10 Analysis on Spur Amplitudes 172
6 11 Further Discussion on Spur Amplitudes 176
6 12 Noise Effects in ADC 179
6 13 Sampling Window Jittering Effect 162
6 14 ADC Test Through Histogram 166
6 15 ADC Test Through Sine Curve Fitting 169
6 16 ADC Test Through FFT Operation 191
References 192
Appendix 6 A 195
Appendix 6 B 196
Appendix 6 C 197
Chapter 7 Amplifier and Analog-to-Digital Converter Interface 199
7 1 Introduction 199
7 2 Key Component Selection 200
7 3 Notations 200
7 4 Comparison Sensitivity of Analog and Digital Receivers 202
7 5 Noise Figure and Third-Order Intercept Point 203
7 6 Characteristics of the Amplifiers in Cascade 205
7 7 Analog-to-Digital Converter 210
7 8 Noise Figure of Amplifier and ADC Combination 211
7 9 Amplifier and ADC Interface 212
7 10 The Meaning of M and M 214
7 11 Computer Program and Results 215
7 12 Design Example 217
7 13 Experimental Results 219
7 13 1 Noise Figure Measurement 219
7 13 2 Dynamic Range Test 220
References 224
Appendix 7 A 226
Appendix 7 B 226
Chapter 8 Frequency Downconverters 229
8 1 Introduction 229
8 2 Baseband Receiver Frequency Selection 230
8 3 Frequency Conversion 230
8 4 In-Phase (/) and Quad-Phase (0 Channel Conversion 233
8 5 Imbalance in l and Q Channels 235
8 6 Analog I and Q Downconverters 240
8 7 Digital Approach to Generate l and Q Channels 242
8 8 Hilbert Transform 243
Contents | xi
8 9 Discrete Hilbert Transform 246
8 10 Examples on Discrete Hilbert Transform 249
8 11 Narrowband 7 and Q Channels Through a Special Sampling
Scheme 250
8 12 Wideband /and QChannels Through a Special Sampling
Scheme 252
8 13 Hardware Considerations on Filter Design for Wideband Digital
I-Q Channels 255
8 14 Digital Correction of /and QChannel Imbalance 256
References 260
Appendix 8 A 261
Chapter 9 Sensitivity and Detection Problems 263
9 1 Introduction 263
9 2 Electronic Warfare Receiver Detection Approach 264
9 3 Potential Detection Advantages in a Digital EW Receiver 265
931 Frequency Domain Detection 265
932 Time Domain Detection 266
9 4 False Alarm Time and Probability of False Alarm for One Data
Sample 267
9 5 Threshold Setting for One Data Sample 268
9 6 Probability of Detection for Single-Sample Detection 269
9 7 Detection Based on Multiple Data Samples 271
9 8 Detection Scheme for Multiple Samples (L-Out-of-AO 272
9 9 Probability Density Function and Characteristic Function 273
9 10 Probability Density Function of Sum Samples With a Square Law
Detector 274
9 11 Detection of Multiple Samples Based on Summation 276
9 12 An Example of Single-Sample Detection 277
9 13 An Example of Multiple-Sample (L-Out-of-Af) Detection 279
9 14 Selection of Threshold Level 282
9 15 Optimizing the Selection of Threshold 284
9 16 An Example of N Sample Detection (Summation Method) 286
9 17 Introduction to Frequency Domain Detection 288
9 18 A Suggested Approach to Frequency Domain Detection 289
9 19 Probability of False Alarm in Frequency Domain 291
9 20 Input Signal Conditions in Frequency Domain Detection 293
9 21 Probability of Detection in Frequency Domain 294
9 22 Examples on Frequency Domain Detection 297
9 23 Comments on Frequency Domain Detection 298
References 299
Appendix 9 A 300
Appendix 9 B 301
xü | Digital Techniques for Wideband Receivers
Appendix 9 C 302
Appendix 9 D 302
Appendix 9 E 303
Appendix 9 F 304
Appendix 9 G 304
Appendix 9 H 304
Appendix 9 1 305
Appendix 9 J 305
Appendix 9 K 306
Appendix 9 L 307
Appendix 9 M 307
Chapter 10 Phase Measurements and Zero Crossings 309
10 1 Introduction 309
10 2 Digital Phase Measurement 310
10 3 Angle Resolution and Quantization Levels 312
10 4 Comparison of Phase Measurement and FFT Results 313
10 5 Application of the Phase Measurement Scheme 314
10 6 Analysis of Two Simultaneous Signals 315
10 7 Frequency Measurement on Two Signals 318
10 8 Single-Frequency Measurement From Zero Crossing 320
10 9 111 Condition in Zero Crossing for Single-Signal and Remedy 323
10 10 Simplified Zero Crossing Calculation for Single-Signal 324
10 11 Experimental Results From Single-Frequency Zero Crossing
Methods 327
10 12 Application to Coherent Doppler Radar Frequency
Measurement 328
10 13 Zero Crossing Used for General Frequency Determination 332
10 14 Basic Definition of the Zero Crossing Spectrum Analysis 333
10 15 Generating Real Zero Crossings 334
10 16 Calculating Coefficients for Zero Crossing Spectrum Analysis 337
10 17 Possible Configuration of Zero Crossing Spectrum Analyzer 339
References 340
Chapter 11 Frequency Channelization 343
11 1 Introduction 343
11 2 Basic Idea of Using FFT as a Filter Bank 344
11 3 Discussion of Output Rate From Time Domain 345
11 4 Output Rate of a Square Window in Frequency Domain 347
11 5 Output Rate of the Hamming Window in Frequency Domain 348
11 6 FFT and Convolution 350
11 7 Short Time Fourier Transform (STFT) 352
11 8 Time Domain Folding 353
11 9 Decameter and Interpolation 355
11 10 Decimation and Interpolation Effect on Digital Fourier
Transform (DFT) 359
Contents xiii
11 11 Simple Filter Bank Using Inverse Digital Fourier Transform 361
11 12 Decimation of a Filter 364
11 13 Two-Channel Decimated Filter Bank 366
11 14 Decimated Filter Bank Design 369
11 15 Digital Channelized Instantaneous Frequency Measurement
(IFM) Receiver 371
11 16 An Example of a Digital Channelized IFM Receiver 373
References 376
Chapter 12 High-Resolution Spectrum Estimation 379
12 1 Introduction 379
12 2 Autoregressive (AR) Method 380
12 3 Yule-Walker Equation 382
12 4 Levinson-Durbin Recursive Algorithm 385
12 5 Input Data Manipulations 387
12 5 1 Covariance Method 389
12 5 2 Autocorrelation Method 391
12 6 Backward Prediction and Modified Covariance Method 392
12 7 Burg Method 395
12 8 Order Selection 397
12 9 Prony’s Method 400
12 10 Prony’s Method Using Least Squares Approach 405
12 11 Eigenvectors and Eigenvalues 407
12 12 MUSIC Method 409
12 13 ESPRIT Method 411
12 14 Minimum Norm Method 417
12 15 Minimum Norm Method With Discrete Fourier Transform 419
12 16 Adaptive Spectrum Estimation 422
References 427
Appendix 12 A 430
Appendix 12 B 430
Appendix 12 C 431
Appendix 12 D 431
Appendix 12 E 433
Appendix 12 F 434
Appendix 12 G 435
Appendix 12 H 437
Appendix 12 1 439
Chapter 13 Angle of Arrival Measurements 441
13 1 Introduction 441
13 2 Queuing Concept 442
13 3 Digital Data From a Linear Antenna Array 444
13 4 Outputs From a Circular Antenna Array 446
13 5 Two-Element Phase Array Antenna 449
aw | Digital Tf chniquls for Wideband Receivers
13 6 AOA Measurement Through Zero Crossing 451
13 7 Phase Measurement in AOA Systems With Multiple Antennas 452
13 8 Fourier Transform Over Space Domain 453
13 9 Two-Dimensional Fourier Transform 456
13 10 Frequency Sorting Followed by AOA Measurements 459
13 11 Minimum Antenna Spacing 461
13 12 Chinese Remainder Theorem 463
13 13 Application of Chinese Remainder Theorem to AOA
Measurements 464
13 14 Practical Considerations in Remainder Theorem 466
13 15 Hardware Considerations for Digital AOA Measurements 468
References 470
Chapter 14 Receiver Tests 471
14 1 Introduction 471
14 2 Types of Receiver Tests 472
14 3 Preliminary Considerations in Laboratory Receiver Tests 474
14 4 Receiver Tests Through Software Simulation 476
14 5 Laboratory Test Setup 477
14 6 Anechoic Chamber Test Setup 478
14 7 Preliminary Tests 479
14 8 Single-Signal Frequency Test 481
14 8 1 Frequency Accuracy Test 481
14 8 2 Frequency Precision Test 483
14 9 False Alarm Test 483
14 10 Sensitivity and Single-Signal Dynamic Range 485
14 11 Pulse Amplitude and Pulse Width Measurements 486
14 12 AOA Accuracy Test 488
14 13 TOA Test 488
14 14 Shadow Time, Throughput Rate, and Latency Tests 489
14 15 Two-Signal Frequency Resolution Test 490
14 16 Two-Signal Spurious Free Dynamic Range Test 490
14 17 Instantaneous Dynamic Range Test 491
14 18 Anechoic Chamber Test 492
14 19 AOA Resolution Test 493
14 20 Simulator Test 493
14 21 Field Test 495
References 496
Appendix 14 A 496
Appendix 14 B 498
Glossary 499
About the Author 501
Index 503
|
any_adam_object | 1 |
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callnumber-raw | TK5103.4 |
callnumber-search | TK5103.4 |
callnumber-sort | TK 45103.4 |
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ctrlnum | (OCoLC)32703069 (DE-599)BVBBV010633208 |
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dewey-ones | 621 - Applied physics |
dewey-raw | 621.382/2 |
dewey-search | 621.382/2 |
dewey-sort | 3621.382 12 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Book |
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illustrated | Illustrated |
indexdate | 2024-07-09T17:56:19Z |
institution | BVB |
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language | English |
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physical | XVI, 518 S. Ill., graph. Darst. |
publishDate | 1995 |
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publisher | Artech House |
record_format | marc |
series2 | Artech House radar library |
spelling | Tsui, James B. Verfasser aut Digital techniques for wideband receivers James Tsui Boston, Mass. [u.a.] Artech House 1995 XVI, 518 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Artech House radar library Comunicacoes larpcal Processamento de sinais digitais larpcal Broadband communication systems Signal processing Digital techniques Wireless communication systems Digitaler Empfänger (DE-588)4149848-3 gnd rswk-swf Digitaltechnik (DE-588)4012303-0 gnd rswk-swf Breitbandkommunikation (DE-588)4008113-8 gnd rswk-swf Signalverarbeitung (DE-588)4054947-1 gnd rswk-swf Breitbandkommunikation (DE-588)4008113-8 s Digitaler Empfänger (DE-588)4149848-3 s DE-604 Digitaltechnik (DE-588)4012303-0 s 1\p DE-604 Signalverarbeitung (DE-588)4054947-1 s 2\p DE-604 HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007094062&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Tsui, James B. Digital techniques for wideband receivers Comunicacoes larpcal Processamento de sinais digitais larpcal Broadband communication systems Signal processing Digital techniques Wireless communication systems Digitaler Empfänger (DE-588)4149848-3 gnd Digitaltechnik (DE-588)4012303-0 gnd Breitbandkommunikation (DE-588)4008113-8 gnd Signalverarbeitung (DE-588)4054947-1 gnd |
subject_GND | (DE-588)4149848-3 (DE-588)4012303-0 (DE-588)4008113-8 (DE-588)4054947-1 |
title | Digital techniques for wideband receivers |
title_auth | Digital techniques for wideband receivers |
title_exact_search | Digital techniques for wideband receivers |
title_full | Digital techniques for wideband receivers James Tsui |
title_fullStr | Digital techniques for wideband receivers James Tsui |
title_full_unstemmed | Digital techniques for wideband receivers James Tsui |
title_short | Digital techniques for wideband receivers |
title_sort | digital techniques for wideband receivers |
topic | Comunicacoes larpcal Processamento de sinais digitais larpcal Broadband communication systems Signal processing Digital techniques Wireless communication systems Digitaler Empfänger (DE-588)4149848-3 gnd Digitaltechnik (DE-588)4012303-0 gnd Breitbandkommunikation (DE-588)4008113-8 gnd Signalverarbeitung (DE-588)4054947-1 gnd |
topic_facet | Comunicacoes Processamento de sinais digitais Broadband communication systems Signal processing Digital techniques Wireless communication systems Digitaler Empfänger Digitaltechnik Breitbandkommunikation Signalverarbeitung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007094062&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT tsuijamesb digitaltechniquesforwidebandreceivers |