DocumentCode
914388
Title
The behavior of analog communication systems
Author
Ziv, Jacob
Volume
16
Issue
5
fYear
1970
fDate
9/1/1970 12:00:00 AM
Firstpage
587
Lastpage
594
Abstract
We consider the problem of transmission of analog data over a noisy channel. It is assumed that the channel input is of the form
, where
is an
-dimensional source vector, and
is the allowable transmitted power. The performance of any given modulation scheme
as a function of the transmitted power
is studied. Lower bounds on the average distortion produced by noise for a class of distortion functions are derived. These bounds relate the "smoothness" of modulation techniques to the minimum error that can be achieved with them. It is shown that when the analog source emits a sequence of mutually independent real random variables at a rate of
per second, the mean-square error that is associated with any practical modulation scheme
decays no faster than
as the signal power
. It follows that in the case of a band-limited additive white Gaussian channel no single modulation scheme
can achieve the ideal rate-distortion bound on the mean-square error for all values of
, if the channel bandwidth is larger than the source rate
.
, where
is an
-dimensional source vector, and
is the allowable transmitted power. The performance of any given modulation scheme
as a function of the transmitted power
is studied. Lower bounds on the average distortion produced by noise for a class of distortion functions are derived. These bounds relate the "smoothness" of modulation techniques to the minimum error that can be achieved with them. It is shown that when the analog source emits a sequence of mutually independent real random variables at a rate of
per second, the mean-square error that is associated with any practical modulation scheme
decays no faster than
as the signal power
. It follows that in the case of a band-limited additive white Gaussian channel no single modulation scheme
can achieve the ideal rate-distortion bound on the mean-square error for all values of
, if the channel bandwidth is larger than the source rate
.Keywords
Modulation/demodulation; Rate-distortion theory; Bandwidth; Constraint theory; Decoding; Gaussian channels; Helium; Jacobian matrices; Random variables; Rate-distortion; Signal mapping; Telephony;
fLanguage
English
Journal_Title
Information Theory, IEEE Transactions on
Publisher
ieee
ISSN
0018-9448
Type
jour
DOI
10.1109/TIT.1970.1054509
Filename
1054509
Link To Document