Digital audio signal processing:
Gespeichert in:
1. Verfasser: | |
---|---|
Weitere Verfasser: | , , , , , |
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Hoboken, NJ ; Chichester, UK
Wiley
2022
|
Ausgabe: | Third edition |
Schlagworte: | |
Online-Zugang: | Cover Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references and index 2202 |
Beschreibung: | xi, 404 Seiten Illustrationen, Diagramme |
ISBN: | 9781119832676 |
Internformat
MARC
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240 | 1 | 0 | |a Digitale Audiosignalverarbeitung |
245 | 1 | 0 | |a Digital audio signal processing |c Udo Zölzer, Helmut Schmidt University Hamburg, Germany ; with Martin Holters, Etienne Gerat, Patrick Nowak, Purbaditya Bhattacharya, Lasse Köper, and Daniel Ahlers |
250 | |a Third edition | ||
264 | 1 | |a Hoboken, NJ ; Chichester, UK |b Wiley |c 2022 | |
300 | |a xi, 404 Seiten |b Illustrationen, Diagramme | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
500 | |a Includes bibliographical references and index | ||
500 | |a 2202 | ||
650 | 0 | 7 | |a Digitales Tonsignal |0 (DE-588)4229078-8 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Digitale Audiotechnik |0 (DE-588)4140447-6 |2 gnd |9 rswk-swf |
650 | 0 | 7 | |a Digitale Signalverarbeitung |0 (DE-588)4113314-6 |2 gnd |9 rswk-swf |
653 | 0 | |a Sound / Recording and reproducing / Digital techniques | |
653 | 0 | |a Signal processing / Digital techniques | |
689 | 0 | 0 | |a Digitales Tonsignal |0 (DE-588)4229078-8 |D s |
689 | 0 | 1 | |a Digitale Signalverarbeitung |0 (DE-588)4113314-6 |D s |
689 | 0 | 2 | |a Digitale Audiotechnik |0 (DE-588)4140447-6 |D s |
689 | 0 | |5 DE-604 | |
700 | 1 | |a Holters, Martin |d 1979- |0 (DE-588)137676182 |4 ctb | |
700 | 1 | |a Gerat, Etienne |0 (DE-588)1265700958 |4 ctb | |
700 | 1 | |a Nowak, Patrick |d 1991- |0 (DE-588)1174920556 |4 ctb | |
700 | 1 | |a Bhattacharya, Purbaditya |0 (DE-588)1259740722 |4 ctb | |
700 | 1 | |a Köper, Lasse |0 (DE-588)1265703329 |4 ctb | |
700 | 1 | |a Ahlers, Daniel |0 (DE-588)1265704090 |4 ctb | |
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Datensatz im Suchindex
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---|---|
adam_text | Contents
Preface for the Third Edition 2 2 viii
Preface for the Second Edition 2: 2:22 ee ee ee ix
Preface for the First Edition 22: ee ee x
1 Introduction 2 0 ne 1
U Zölzer
t l Continuous-time Signals and Convolution 222 220 ee 1
1 2 Continuous-time Fourier Transform and Laplace Transform 6
1 3 Sampling and Reconstruction © ee ee 6
1 4 Discrete-time Signals and Convolution 1 2 eee eee 8
1 5 Discrete-time Fourier Transform and Z-Transform 11
1 6 Discrete Fourier Transform 2 0 ee es il
1 7 FlRandIIR Filters 2 1 ee ns 12
1 8 Adaptive Filters 2 0 ee ee 18
19 Exercises ee 21
References 0 ec ee 23
2 Quantization eeeser een nn 25
U Zölzer
2 1 Signal Quantization ee 25
2 11 Classical Quantization Model rennen 25
212 Quantization Theorem - ee 28
2 13 Statistics of Quantization Error 6 6 vv eee 34
22 Dither eeen nennen a 40
22 1 Basics see eeeeeenn nennen nee 40
222 Implementation ee ee eee 44
223 Examples 6 es 44
2 3 Spectrum Shaping of Quantization — Noise Shaping 202 ee 46
2 4 Number Representation 6-062 ee ee es 51
241 Fixed-point Number Representation - - +--55 52
2 42 Floating-point Number Representation 6 ee ee ees 57
243 Effects on Format Conversion and Algorithms - 60
Ce
Contents
iv
2 5 JS Applet — Quantization, Dither, and Noise Shaping - +--+ ++:
26 Exercises 0 rennen nennen nn
References 2 ee en rs
3 Sampling Rate Conversion es
U Zölzer
3 1 Basics ee nen
311 Upsampling and Anti-Imaging Filtering --- ++ +++:
312 Downsampling and Antialiasing Filtering -- - -+--:
3 2 Synchronous Conversion 6-2 ee ee
3 3 Asynchronous Conversion «2 0 nennen nenn
331 Single-stage Methods 2 ee ee
332 Multistage Methods 2 ee es
333 Control ofInterpolation Filters 22- 2220
3 4 Interpolation Methods 2 ee et ee ee
341 Polynomial Interpolation 2 2 ee eee
342 Lagrange Interpolation 2 1 ee ee ee
343 Spline Interpolation 2 2 oo m nen
3 5 Exercises
References
4 AD/DA Conversion
U Zölzer
41 Methods ,
411 Nyquist Sampling
412 Oversampling
413 Delta-sigma Modulation
42 ADConvertess
42 1] Specifications
422 Parallel Converter
423 Successive Approximation
424 Counter Methods
425 Delta-sigma AD Converter
43 DAConverters 20
431 Specifications 2 on
432 Switched Voltage and Current Sources
433 Weighted Resistors and Capacitors
434 R-2R Resistor Networks
435 Delta-sigma DA Converter
44 JS Applet - Oversampling and Quantization
4 5 Exercises 00
References
Audio Processing Systems
U Zölzer and D Ahlers
Digital Signal Processors
Fixed-point DSPs
Floating-point DSPs
had
—_——
ia N ID
Contents v
5 2 Digital Audio Interfaces 2 22 2000 133
521 Two-channel AES/EBU Interface 2 on 134
522 MADIInterfae 222020 n 135
523 Audioin HDMI 2 02 139
524 Audio Computer Interfaces 2 2 2222 140
525 Audio Network Interfaces 2 222202 141
5 3 Two-channel Systems 220 ee 146
5 4 Multischannel Systems 2 2 220 146
References lee 147
6 Equalizers ) 149
U Zölzer
Ba rn 149
6 2 Recursive Audio Filters 2220 nn 153
I Dein n 153
622 Parametric Filter Structures 222 om 162
623 Quantization Effects 2 on 172
6 3 Non-recursive Audio Filters 222 222 on 190
631 Basics of Fast Convolution 222 om en 191
632 Fast Convolution ofLong Sequences 2 een 194
633 Filter Design by Frequency Sampling 2 201
6 4 Multi-complementary Filter Bank 202
64 1 Principles 2 ee ee 203
642 Example: Eight-band Multi-complementary Filter Bank 208
6 5 Delay-based Audio Effects 222 22 man 214
6 6 JS Applet — Audio Filters 22 oo oo in 215
6 Ener in 217
References 2 eee ee ee 220
7 Room Simulation 000 00 0 0000000 c eee eee 225
U Zölzer, P Nowak, and P Bhattacharya
710 Basics 2 ee ee ey 225
711 Room Acoustics 2 2 20m ee eee 225
712 Model-based Room Impulse Responses 222 can 227
713 Measurement of Room Impulse Responses 2 22 222 230
714 Simulation of Room Impulse Responses , 234
7 2 EarlyReflections 0 ee ee ee ee 235
721 Ando’s Investigations 00000002 235
722 Gerzon Algorithm 22 om m mn 236
7 3, Subsequent Reverberation 2:2 cm con on 241
731 Schroeder Algorithm 2 22 om on 241
732 General Feedback Systems 22 2 HC onen 249
733 Feedback Allpass Systems 0004 252
74 Approximation of Room Impulse Responses , 256
75 JS Applet — Fast Convolution 0 0 cee ee eee 258
76 Exercises oo ee ee ee 259
References 2 0 ee eee 260
vi
8 Dynamic Range Control
U Zölzer and E Gerat
Basics
Contents
Dynamic Behavior
831 Level Measurement --
832 Gain Factor Smoothing 2 2 22 2 2 on
833 Time Constants 2 020
Implementation 2 22 0 0 00 ,
84 1 mern
842 Compressor 2 2 ee ee ee
843 Compressor, Expander, NoiseGate , ,,~ ~~~
844 Combination System 2 0000, , 0,
Realization Aspects
851 Sampling Rate Reduction
852 Curve Approximation
853 Stereo Processing ,
Multiband DRC 2
Dynamic Equalizers
Source-filter DRC 02 0000,
88 1 Introduction 2,
882 Combination with DRC
883 Applications
JS Applet ~ Dynamic Range Control
8 10 Exercises
References
9 Audio Coding
U Zélzer and P Bhattacharya ee
Lossless Audio Coding
Lossy Audio Coding
Psychoacoustics
ISO-MPEGI Audi
Critical Bands and Absolute
Masking
Filter Banks
0 Coding
Threshold
Psychoacoustic Models tt ee
Dynamic Bit Allocation and Coding
MPEG-2 Audio Coding
MPEG-2 Advanced Aud
MPEG-4 Audio Coding
Spectral Band Replicatio
Constrained Energ
Range Coding
CELT Decoding
y Lapped Transfo
Gain Quantization
Shape Quantization
28]
Contents
9 10 JS Applet — Psychoacoustics
9 11 Exercises
References
10 Nonlinear Processing 2 0 ee
M Holters and L Köper
10 1 Fundamentals es
10 2 Overdrive, Distortion, Clipping
10 3 Nonlinear Filters 2 ee ee
10 4 Aliasing and its Mitigation
10 5 Virtual Analog Modeling 202 002 000 2 0 eee
10 5 1 Wave Digital Filters © 2 ee
10 5 2 State-space Approaches
10 6 Exercises
References
11 Machine Learning for Audio 210 ee ee ee ee
P Bhattacharya, P Nowak, and U Zölzer
11 1 Introduction 0 0 ee
11 2 Unsupervised and Supervised Learning 2 1 ee eee ee es
11 3 Gradient Descent and Backpropagation 2 6 ee ee eee
11 3 1 Feedforward Artificial Neural Network 2 222 200
11 3 2 Convolutional Neural Network 2222er
11 4 Applications 2 22er ee
11 4 1 Parametric Filter Adaptation 6 0 ee ee ee eee
11 4 2 Room Simulation 2 ee ee
11 4 3 Audio Denoising : es
11 5 Exercises 0
References 2 00 ce ee
Index oo oo onen
|
adam_txt |
Contents
Preface for the Third Edition 2 2 viii
Preface for the Second Edition 2: 2:22 ee ee ee ix
Preface for the First Edition 22: ee ee x
1 Introduction 2 0 ne 1
U Zölzer
t l Continuous-time Signals and Convolution 222 220 ee 1
1 2 Continuous-time Fourier Transform and Laplace Transform 6
1 3 Sampling and Reconstruction © ee ee 6
1 4 Discrete-time Signals and Convolution 1 2 eee eee 8
1 5 Discrete-time Fourier Transform and Z-Transform 11
1 6 Discrete Fourier Transform 2 0 ee es il
1 7 FlRandIIR Filters 2 1 ee ns 12
1 8 Adaptive Filters 2 0 ee ee 18
19 Exercises ee 21
References 0 ec ee 23
2 Quantization eeeser een nn 25
U Zölzer
2 1 Signal Quantization ee 25
2 11 Classical Quantization Model rennen 25
212 Quantization Theorem - ee 28
2 13 Statistics of Quantization Error 6 6 vv eee 34
22 Dither eeen nennen a 40
22 1 Basics see eeeeeenn nennen nee 40
222 Implementation ee ee eee 44
223 Examples 6 es 44
2 3 Spectrum Shaping of Quantization — Noise Shaping 202 ee 46
2 4 Number Representation 6-062 ee ee es 51
241 Fixed-point Number Representation - - +--55 52
2 42 Floating-point Number Representation 6 ee ee ees 57
243 Effects on Format Conversion and Algorithms - 60
Ce
Contents
iv
2 5 JS Applet — Quantization, Dither, and Noise Shaping - +--+ ++:
26 Exercises 0 rennen nennen nn
References 2 ee en rs
3 Sampling Rate Conversion es
U Zölzer
3 1 Basics ee nen
311 Upsampling and Anti-Imaging Filtering --- ++ +++:
312 Downsampling and Antialiasing Filtering -- - -+--:
3 2 Synchronous Conversion 6-2 ee ee
3 3 Asynchronous Conversion «2 0 nennen nenn
331 Single-stage Methods 2 ee ee
332 Multistage Methods 2 ee es
333 Control ofInterpolation Filters 22- 2220
3 4 Interpolation Methods 2 ee et ee ee
341 Polynomial Interpolation 2 2 ee eee
342 Lagrange Interpolation 2 1 ee ee ee
343 Spline Interpolation 2 2 oo m nen
3 5 Exercises
References
4 AD/DA Conversion
U Zölzer
41 Methods ,
411 Nyquist Sampling
412 Oversampling
413 Delta-sigma Modulation
42 ADConvertess
42 1] Specifications
422 Parallel Converter
423 Successive Approximation
424 Counter Methods
425 Delta-sigma AD Converter
43 DAConverters 20
431 Specifications 2 on
432 Switched Voltage and Current Sources
433 Weighted Resistors and Capacitors
434 R-2R Resistor Networks
435 Delta-sigma DA Converter
44 JS Applet - Oversampling and Quantization
4 5 Exercises 00
References
Audio Processing Systems
U Zölzer and D Ahlers
Digital Signal Processors
Fixed-point DSPs
Floating-point DSPs
had
—_——
ia N ID
Contents v
5 2 Digital Audio Interfaces 2 22 2000 133
521 Two-channel AES/EBU Interface 2 on 134
522 MADIInterfae 222020 n 135
523 Audioin HDMI 2 02 139
524 Audio Computer Interfaces 2 2 2222 140
525 Audio Network Interfaces 2 222202 141
5 3 Two-channel Systems 220 ee 146
5 4 Multischannel Systems 2 2 220 146
References lee 147
6 Equalizers ) 149
U Zölzer
Ba rn 149
6 2 Recursive Audio Filters 2220 nn 153
I Dein n 153
622 Parametric Filter Structures 222 om 162
623 Quantization Effects 2 on 172
6 3 Non-recursive Audio Filters 222 222 on 190
631 Basics of Fast Convolution 222 om en 191
632 Fast Convolution ofLong Sequences 2 een 194
633 Filter Design by Frequency Sampling 2 201
6 4 Multi-complementary Filter Bank 202
64 1 Principles 2 ee ee 203
642 Example: Eight-band Multi-complementary Filter Bank 208
6 5 Delay-based Audio Effects 222 22 man 214
6 6 JS Applet — Audio Filters 22 oo oo in 215
6 Ener in 217
References 2 eee ee ee 220
7 Room Simulation 000 00 0 0000000 c eee eee 225
U Zölzer, P Nowak, and P Bhattacharya
710 Basics 2 ee ee ey 225
711 Room Acoustics 2 2 20m ee eee 225
712 Model-based Room Impulse Responses 222 can 227
713 Measurement of Room Impulse Responses 2 22 222 230
714 Simulation of Room Impulse Responses , 234
7 2 EarlyReflections 0 ee ee ee ee 235
721 Ando’s Investigations 00000002 235
722 Gerzon Algorithm 22 om m mn 236
7 3, Subsequent Reverberation 2:2 cm con on 241
731 Schroeder Algorithm 2 22 om on 241
732 General Feedback Systems 22 2 HC onen 249
733 Feedback Allpass Systems 0004 252
74 Approximation of Room Impulse Responses , 256
75 JS Applet — Fast Convolution 0 0 cee ee eee 258
76 Exercises oo ee ee ee 259
References 2 0 ee eee 260
vi
8 Dynamic Range Control
U Zölzer and E Gerat
Basics
Contents
Dynamic Behavior
831 Level Measurement --
832 Gain Factor Smoothing 2 2 22 2 2 on
833 Time Constants 2 020
Implementation 2 22 0 0 00 ,
84 1 mern
842 Compressor 2 2 ee ee ee
843 Compressor, Expander, NoiseGate , ,,~ ~~~
844 Combination System 2 0000, , 0,
Realization Aspects
851 Sampling Rate Reduction
852 Curve Approximation
853 Stereo Processing ,
Multiband DRC 2
Dynamic Equalizers
Source-filter DRC 02 0000,
88 1 Introduction 2,
882 Combination with DRC
883 Applications
JS Applet ~ Dynamic Range Control
8 10 Exercises
References
9 Audio Coding
U Zélzer and P Bhattacharya ee
Lossless Audio Coding
Lossy Audio Coding
Psychoacoustics
ISO-MPEGI Audi
Critical Bands and Absolute
Masking
Filter Banks
0 Coding
Threshold
Psychoacoustic Models tt ee
Dynamic Bit Allocation and Coding
MPEG-2 Audio Coding
MPEG-2 Advanced Aud
MPEG-4 Audio Coding
Spectral Band Replicatio
Constrained Energ
Range Coding
CELT Decoding
y Lapped Transfo
Gain Quantization
Shape Quantization
28]
Contents
9 10 JS Applet — Psychoacoustics
9 11 Exercises
References
10 Nonlinear Processing 2 0 ee
M Holters and L Köper
10 1 Fundamentals es
10 2 Overdrive, Distortion, Clipping
10 3 Nonlinear Filters 2 ee ee
10 4 Aliasing and its Mitigation
10 5 Virtual Analog Modeling 202 002 000 2 0 eee
10 5 1 Wave Digital Filters © 2 ee
10 5 2 State-space Approaches
10 6 Exercises
References
11 Machine Learning for Audio 210 ee ee ee ee
P Bhattacharya, P Nowak, and U Zölzer
11 1 Introduction 0 0 ee
11 2 Unsupervised and Supervised Learning 2 1 ee eee ee es
11 3 Gradient Descent and Backpropagation 2 6 ee ee eee
11 3 1 Feedforward Artificial Neural Network 2 222 200
11 3 2 Convolutional Neural Network 2222er
11 4 Applications 2 22er ee
11 4 1 Parametric Filter Adaptation 6 0 ee ee ee eee
11 4 2 Room Simulation 2 ee ee
11 4 3 Audio Denoising : es
11 5 Exercises 0
References 2 00 ce ee
Index oo oo onen |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author | Zölzer, Udo 1958- |
author2 | Holters, Martin 1979- Gerat, Etienne Nowak, Patrick 1991- Bhattacharya, Purbaditya Köper, Lasse Ahlers, Daniel |
author2_role | ctb ctb ctb ctb ctb ctb |
author2_variant | m h mh e g eg p n pn p b pb l k lk d a da |
author_GND | (DE-588)111775019 (DE-588)137676182 (DE-588)1265700958 (DE-588)1174920556 (DE-588)1259740722 (DE-588)1265703329 (DE-588)1265704090 |
author_facet | Zölzer, Udo 1958- Holters, Martin 1979- Gerat, Etienne Nowak, Patrick 1991- Bhattacharya, Purbaditya Köper, Lasse Ahlers, Daniel |
author_role | aut |
author_sort | Zölzer, Udo 1958- |
author_variant | u z uz |
building | Verbundindex |
bvnumber | BV048519814 |
classification_rvk | ZN 6040 |
ctrlnum | (OCoLC)1310783449 (DE-599)KXP1784599751 |
dewey-full | 621.389/3 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.389/3 |
dewey-search | 621.389/3 |
dewey-sort | 3621.389 13 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
discipline_str_mv | Elektrotechnik / Elektronik / Nachrichtentechnik |
edition | Third edition |
format | Book |
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id | DE-604.BV048519814 |
illustrated | Illustrated |
index_date | 2024-07-03T20:49:37Z |
indexdate | 2024-07-10T09:40:24Z |
institution | BVB |
isbn | 9781119832676 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-033896722 |
oclc_num | 1310783449 |
open_access_boolean | |
owner | DE-83 DE-B768 |
owner_facet | DE-83 DE-B768 |
physical | xi, 404 Seiten Illustrationen, Diagramme |
publishDate | 2022 |
publishDateSearch | 2022 |
publishDateSort | 2022 |
publisher | Wiley |
record_format | marc |
spelling | Zölzer, Udo 1958- Verfasser (DE-588)111775019 aut Digitale Audiosignalverarbeitung Digital audio signal processing Udo Zölzer, Helmut Schmidt University Hamburg, Germany ; with Martin Holters, Etienne Gerat, Patrick Nowak, Purbaditya Bhattacharya, Lasse Köper, and Daniel Ahlers Third edition Hoboken, NJ ; Chichester, UK Wiley 2022 xi, 404 Seiten Illustrationen, Diagramme txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references and index 2202 Digitales Tonsignal (DE-588)4229078-8 gnd rswk-swf Digitale Audiotechnik (DE-588)4140447-6 gnd rswk-swf Digitale Signalverarbeitung (DE-588)4113314-6 gnd rswk-swf Sound / Recording and reproducing / Digital techniques Signal processing / Digital techniques Digitales Tonsignal (DE-588)4229078-8 s Digitale Signalverarbeitung (DE-588)4113314-6 s Digitale Audiotechnik (DE-588)4140447-6 s DE-604 Holters, Martin 1979- (DE-588)137676182 ctb Gerat, Etienne (DE-588)1265700958 ctb Nowak, Patrick 1991- (DE-588)1174920556 ctb Bhattacharya, Purbaditya (DE-588)1259740722 ctb Köper, Lasse (DE-588)1265703329 ctb Ahlers, Daniel (DE-588)1265704090 ctb Erscheint auch als Online-Ausgabe, PDF 9781119832683 Erscheint auch als Online-Ausgabe, EPUB 9781119832690 V:DE-576 X:WILEY image/jpeg https://swbplus.bsz-bw.de/bsz1784599751cov.jpg 20220519134004 Cover B:DE-89 V:DE-601 pdf/application https://www.gbv.de/dms/tib-ub-hannover/1784599751.pdf Inhaltsverzeichnis HEBIS Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033896722&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Zölzer, Udo 1958- Digital audio signal processing Digitales Tonsignal (DE-588)4229078-8 gnd Digitale Audiotechnik (DE-588)4140447-6 gnd Digitale Signalverarbeitung (DE-588)4113314-6 gnd |
subject_GND | (DE-588)4229078-8 (DE-588)4140447-6 (DE-588)4113314-6 |
title | Digital audio signal processing |
title_alt | Digitale Audiosignalverarbeitung |
title_auth | Digital audio signal processing |
title_exact_search | Digital audio signal processing |
title_exact_search_txtP | Digital audio signal processing |
title_full | Digital audio signal processing Udo Zölzer, Helmut Schmidt University Hamburg, Germany ; with Martin Holters, Etienne Gerat, Patrick Nowak, Purbaditya Bhattacharya, Lasse Köper, and Daniel Ahlers |
title_fullStr | Digital audio signal processing Udo Zölzer, Helmut Schmidt University Hamburg, Germany ; with Martin Holters, Etienne Gerat, Patrick Nowak, Purbaditya Bhattacharya, Lasse Köper, and Daniel Ahlers |
title_full_unstemmed | Digital audio signal processing Udo Zölzer, Helmut Schmidt University Hamburg, Germany ; with Martin Holters, Etienne Gerat, Patrick Nowak, Purbaditya Bhattacharya, Lasse Köper, and Daniel Ahlers |
title_short | Digital audio signal processing |
title_sort | digital audio signal processing |
topic | Digitales Tonsignal (DE-588)4229078-8 gnd Digitale Audiotechnik (DE-588)4140447-6 gnd Digitale Signalverarbeitung (DE-588)4113314-6 gnd |
topic_facet | Digitales Tonsignal Digitale Audiotechnik Digitale Signalverarbeitung |
url | https://swbplus.bsz-bw.de/bsz1784599751cov.jpg https://www.gbv.de/dms/tib-ub-hannover/1784599751.pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033896722&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT zolzerudo digitaleaudiosignalverarbeitung AT holtersmartin digitaleaudiosignalverarbeitung AT geratetienne digitaleaudiosignalverarbeitung AT nowakpatrick digitaleaudiosignalverarbeitung AT bhattacharyapurbaditya digitaleaudiosignalverarbeitung AT koperlasse digitaleaudiosignalverarbeitung AT ahlersdaniel digitaleaudiosignalverarbeitung AT zolzerudo digitalaudiosignalprocessing AT holtersmartin digitalaudiosignalprocessing AT geratetienne digitalaudiosignalprocessing AT nowakpatrick digitalaudiosignalprocessing AT bhattacharyapurbaditya digitalaudiosignalprocessing AT koperlasse digitalaudiosignalprocessing AT ahlersdaniel digitalaudiosignalprocessing |
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