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The objective of this exercise is to familiarize the reader with the handling of sound files using MATLAB and to expose the novice to perceptual attributes of sampling rate and bit resolution. For this computer exercise, use MATLAB workspace ch1pb1.mat from the website. Load the workspace ch1pb1.mat using, > load('ch1pb1.mat'); Use whos command to view the variables in the workspace. The data-vector 'audio_in' contains 44,100 samples of audio data. Perform the following in MATLAB: >> wavwrite(audio_in,44100,16, 'pb1_aud44_16.wav') ; >> wavwrite (audio_in,10000,16, 'pb1_aud10_16.wav'); >> wavwrite(audio_in,44100,8, 'pb1_aud44_08.wav'); Listen to the wave files $p b 1_{-} a u d 44 \_16 . w a v, p b 1 \_a u d 10 \_16 . w a v$, and pb1_aud44_08.wav using a media player. Comment on the perceptual quality of the three wave files.

   The objective of this exercise is to familiarize the reader with the handling of sound files using MATLAB and to expose the novice to perceptual attributes of sampling rate and bit resolution.
For this computer exercise, use MATLAB workspace ch1pb1.mat from the website.
Load the workspace ch1pb1.mat using,
> load('ch1pb1.mat');
Use whos command to view the variables in the workspace. The data-vector 'audio_in' contains 44,100 samples of audio data. Perform the following in MATLAB:
>> wavwrite(audio_in,44100,16, 'pb1_aud44_16.wav') ;
>> wavwrite (audio_in,10000,16, 'pb1_aud10_16.wav');
>> wavwrite(audio_in,44100,8, 'pb1_aud44_08.wav');
Listen to the wave files $p b 1_{-} a u d 44 \_16 . w a v, p b 1 \_a u d 10 \_16 . w a v$, and pb1_aud44_08.wav using a media player. Comment on the perceptual quality of the three wave files.
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Audio Signal Processing and Coding
Audio Signal Processing and Coding
Andreas Spanias, Ted… 1st Edition
Chapter 1, Problem 3 ↓

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mat using the command > load('ch1pb1.mat');  Show more…

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The objective of this exercise is to familiarize the reader with the handling of sound files using MATLAB and to expose the novice to perceptual attributes of sampling rate and bit resolution. For this computer exercise, use MATLAB workspace ch1pb1.mat from the website. Load the workspace ch1pb1.mat using, > load('ch1pb1.mat'); Use whos command to view the variables in the workspace. The data-vector 'audio_in' contains 44,100 samples of audio data. Perform the following in MATLAB: >> wavwrite(audio_in,44100,16, 'pb1_aud44_16.wav') ; >> wavwrite (audio_in,10000,16, 'pb1_aud10_16.wav'); >> wavwrite(audio_in,44100,8, 'pb1_aud44_08.wav'); Listen to the wave files $p b 1_{-} a u d 44 \_16 . w a v, p b 1 \_a u d 10 \_16 . w a v$, and pb1_aud44_08.wav using a media player. Comment on the perceptual quality of the three wave files.
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