DocumentCode
1227846
Title
Subjective Evaluation of Pre- and Postfiltering in PAM, PCM, and DPCM Voice Communication Systems
Author
Chan, Donald ; Donaldson, Robert W.
Author_Institution
Bell-Northern Res. Ltd.,Ottawa, Ont.,Canada.
Volume
19
Issue
5
fYear
1971
fDate
10/1/1971 12:00:00 AM
Firstpage
601
Lastpage
612
Abstract
In a recent paper [1] the authors obtained the pre- and postfilters that minimize the mean-square error between the message
and its received replica
under very general conditions on both
and the communication system under consideration. The present work compares the subjective effects of systems using optimum mean-square filters (OF) with those using conventional ideal low-pass filters (LF). The systems considered are pulse-amplitude (PAM), pulse-code (PCM), and differential pulsecode (DPCM) modulation systems for voice communication. For reasons presented in this paper, the OF and LF have double-sided bandwidth equal to the sampling frequency. In PAM systems, a white Gaussian channel model is assumed, while negligible channel transmission errors are assumed for PCM and DPCM systems. The subjective evaluation, based on preference tests, shows that subjective differences between PAM systems with OF and systems with LF are insignificant and are independent of sampling frequency and channel signal-to-noise ratio. Also, for those values of sampling frequency and number of bits of quantization considered, no significant differences exist between DPCM systems with OF and systems with LF. For PCM systems, however, significant improvement in subjective performance can be achieved when OFs are used instead of LFs.
and its received replica
under very general conditions on both
and the communication system under consideration. The present work compares the subjective effects of systems using optimum mean-square filters (OF) with those using conventional ideal low-pass filters (LF). The systems considered are pulse-amplitude (PAM), pulse-code (PCM), and differential pulsecode (DPCM) modulation systems for voice communication. For reasons presented in this paper, the OF and LF have double-sided bandwidth equal to the sampling frequency. In PAM systems, a white Gaussian channel model is assumed, while negligible channel transmission errors are assumed for PCM and DPCM systems. The subjective evaluation, based on preference tests, shows that subjective differences between PAM systems with OF and systems with LF are insignificant and are independent of sampling frequency and channel signal-to-noise ratio. Also, for those values of sampling frequency and number of bits of quantization considered, no significant differences exist between DPCM systems with OF and systems with LF. For PCM systems, however, significant improvement in subjective performance can be achieved when OFs are used instead of LFs.Keywords
Bandwidth; Frequency; Gaussian channels; Low pass filters; Phase change materials; Pulse modulation; Quantization; Sampling methods; Signal to noise ratio; System testing;
fLanguage
English
Journal_Title
Communication Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9332
Type
jour
DOI
10.1109/TCOM.1971.1090728
Filename
1090728
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