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Carleton University

Efficient narrow-band speech transmission over land mobile channels.

Abstract

dc:description.abstract

This thesis addresses the problems of speech quality, and channel bandwidth efficiency, for speech transmission in mobile communications.In the first part, a flexible, real-time, programmable, mobile radio channel simulator is proposed. The conventional basic configuration of the simulator was augmented with several blocks, allowing the simulation of multipath fading, Doppler shifts, line of sight propagation and shadowing, with a wide range of parameters. This was achieved through the use of variable rate and multirate digital signal processing, combined with an appropriate system design allowing an efficient task partition between software and hardware. The simulator was built and evaluated. Its output was compared to several field tests; a good agreement is demonstrated.In the second part, a system is proposed for reducing the background acoustic noise from the transmitted speech signal in mobile telephony, and, therefore, improve the signal to noise ratio at the transmitter. Several field tests were conducted in order to characterize the background acoustic noise in cars. Accordingly, an adaptive noise reduction system is porposed, using a transversal finite impulse response adaptive filter and the stochastic gradient adaptation algorithm; a 10noise reduction is achieved.In the third part, a novel concept, the switched tone (), is proposed for speech and data transmission over mobile channels. The speech is transmitted using a modified single sideband (SSB) technique with a channel separation of 5kHz, instead of the 20-30kHz currently used in analog frequency modulation (FM).Three main subsystems, required by theconcept, are proposed. A novel differential dynamic speech companding system improves the signal to noise ratio of the low volume syllables, and, therefore, improves the speech quality. An appropriate Automatic Gain Control (AGC) system compensates for the amplitude fluctuations attributed to multipath fading. The tracking range of the AGC is programmable and can take any value according to the signal to noise ratio encountered. Finally, the Automatic Frequency Control (AFC) problem is solved in a systemwise approach through theconcept. The problem is reduced to two simpler ones, the initial acquisition, performed by a mid-band tone, and the phase tracking, performed by a tone above the speech band, allowing a full transparency to all speech and data formats.

Degree

thesis:*
Name thesis:degree_name
Doctor of Philosophy (Ph.D.)
Level thesis:degree_level
Doctoral
Discipline thesis:degree_discipline
Engineering, Electrical
Grantor dc:publisher
Carleton University
Year dc:date.issued
1987

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Goubran, Rafik A.

Rights

dc:rights
Statement dc:rights
  • Copyright © 1987 the author(s). Theses may be used for non-commercial research, educational, or related academic purposes only. Such uses include personal study, research, scholarship, and teaching. Theses may only be shared by linking to Carleton University Institutional Repository and no part may be used without proper attribution to the author. No part may be used for commercial purposes directly or indirectly via a for-profit platform; no adaptation or derivative works are permitted without consent from the copyright owner.
Language dc:language.iso
en

Identifiers

dc:identifier.*
OAI identifier oai:identifier
oai:carleton.scholaris.ca:20.500.14718/29325

Chain of custody

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Carleton University
Base URL
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Last updated
2026-07-24
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citation

Goubran, Rafik A.. Efficient narrow-band speech transmission over land mobile channels.. Doctoral thesis, Carleton University, 1987. https://hdl.handle.net/20.500.14718/29325