Description |
1 online resource (ix, 115 pages) : illustrations (some color) |
Series |
Synthesis lectures on algorithms and software in engineering, 1938-1735 ; #9 |
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Synthesis lectures on algorithms and software in engineering ; #9. 1938-1735
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Contents |
1. Introduction -- 1.1 A brief history of audio coders -- 1.1.1 Recent audio codecs -- 1.2 A general perceptual audio coding architecture -- 1.3 Principles of psychoacoustics -- 1.3.1 Psychoacoustic model I -- 1.4 The MPEG-1 layer III algorithm -- 1.4.1 Analysis subband filterbank -- 1.4.2 MDCT and hybrid filter bank -- 1.4.3 Psychoacoustic analysis -- 1.4.4 Bit allocation -- 1.5 Summary |
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2. Analysis subband filter bank -- 2.1 Description -- 2.2 Characteristics of the analysis filter bank -- 2.3 Filter bank implementation -- 2.3.1 Framing -- 2.3.2 Build input sample vector -- 2.3.3 Window vector x -- 2.3.4 Calculation of the cosine modulation matrix -- 2.3.5 Calculation of the subband samples -- 2.4 Demonstration with test data -- 2.5 Summary |
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3. Psychoacoustic model II -- 3.1 Description -- 3.2 Illustration of the psychoacoustic model II with MATLAB code -- 3.2.1 Analysis -- 3.2.2 Computation of energy and unpredictability in threshold partitions -- 3.2.3 Spreading function and excitation pattern -- 3.2.4 Tonality index estimation -- 3.2.5 Calculation of masking thresholds for threshold partitions -- 3.2.6 Pre-echo detection andwindow switching -- 3.2.7 Estimation of SMR -- 3.3 Summary |
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4. MDCT -- 4.1 Description -- 4.2 Illustration of the MDCT with MATLAB code -- 4.2.1 MDCT calculation -- 4.2.2 Alias reduction -- 4.3 Summary |
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5. Bit allocation, quantization and coding -- 5.1 Description -- 5.2 The loops frame function -- 5.2.1 Calculation of the scalefactor selection information (scfsi) -- 5.3 Distortion control (outer loop) -- 5.4 Inner loop (rate control) -- 5.4.1 Non-uniform quantization -- 5.4.2 Huffman coding -- 5.5 Bitstream formatting -- 5.5.1 Bit reservoir -- 5.6 Summary |
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6. Decoder -- 6.1 Synchronization and error checking -- 6.2 Decoding side information -- 6.2.1 Extracting parameters for huffman decoding -- 6.2.2 Extracting parameters for scalefactor decoding -- 6.3 Scalefactor decoding -- 6.4 Huffman decoding -- 6.5 Requantization -- 6.6 Reordering -- 6.7 Alias reconstruction -- 6.8 The inverse modified discrete cosine transform -- 6.9 Polyphase synthesis filterbank -- 6.10 Summary |
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A. Complexity profile of the MPEG-1 layer III algorithm -- Bibliography -- Authors' biographies |
Summary |
The MPEG-1 Layer III (MP3) algorithm is one of the most successful audio The MPEG-1 Layer III (MP3) algorithm is one of the most successful audio formats for consumer audio storage and for transfer and playback of music on digital audio players. The MP3 compression standard along with the AAC (Advanced Audio Coding) algorithm are associated with the most successful music players of the last decade. This book describes the fundamentals and the MATLAB implementation details of the MP3 algorithm. Several of the tedious processes in MP3 are supported by demonstrations using MATLAB software. The book presents the theoretical concepts and algorithms used in the MP3 standard. The implementation details and simulations with MATLAB complement the theoretical principles. The extensive list of references enables the reader to perform a more detailed study on specific aspects of the algorithm and gain exposure to advancements in perceptual coding |
Analysis |
perceptual audio coders |
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lossy coding |
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MPEG standards |
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psychoacustic models |
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MP3 algorithm |
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variable-bit-rate coding |
Notes |
Part of: Synthesis digital library of engineering and computer science |
Bibliography |
Includes bibliographical references (pages 105-114) |
Notes |
Online resource; title from PDF title page (Morgan & Claypool, viewed Dec. 5, 2011) |
SUBJECT |
MATLAB. http://id.loc.gov/authorities/names/n92036881
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MATLAB fast |
Subject |
MP3 (Audio coding standard)
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COMPUTERS -- Digital Media -- Audio.
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COMPUTERS -- Interactive & Multimedia.
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COMPUTERS -- Speech & Audio Processing.
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MP3 (Audio coding standard)
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Form |
Electronic book
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Author |
Spanias, Andreas.
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ISBN |
9781608458028 |
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1608458024 |
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1608458016 |
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9781608458011 |
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9783031015182 |
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3031015185 |
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