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Communication systems : an introduction to signals and noise in electrical communication / A. Bruce Carlson, Paul B. Crilly, Janet C. Rutledge.

By: Contributor(s): Material type: TextTextSeries: McGraw-Hill series in electrical and computer engineering | McGraw-Hill series in electrical and computer engineeringPublication details: Boston, [Mass.] ; London : McGraw-Hill, c2002.Edition: 4th edDescription: xiii, 850 p. : ill. ; 24 cmISBN:
  • 9780071121750 (pbk.) :
  • 0071121757
Subject(s): DDC classification:
  • 621.38223 CAR
LOC classification:
  • TK5102.5 .C3 2002
Contents:
1.Introduction -- 2.Signals and spectra -- 3.Signal transmission and filtering -- 4.Linear CW modulation -- 5.Exponential CW modulation -- 6.Sampling and pulse modulation -- 7.Analog communication systems -- 8.Probablity and random variables -- 9.Random signals and noise -- 10.Nosie in analog modulation -- 11.Baseband digital transmission -- 12.Digitization techniques for analog messages and networks -- 13.Channel coding and encryption -- 14.Bandpass digital transmission -- 15.Spread spectrum systems -- 16.Information detection theory.
Holdings
Item type Current library Call number Copy number Status Date due Barcode
Long Loan TUS: Midlands, Main Library Athlone General Lending 621.38223 CAR (Browse shelf(Opens below)) 1 Available 222775
Long Loan TUS: Midlands, Main Library Athlone General Lending 621.38223 CAR (Browse shelf(Opens below)) 1 Available 219305

Previous ed.: 1986.

Includes bibliographical references (p. 834-838) and index.

1.Introduction -- 2.Signals and spectra -- 3.Signal transmission and filtering -- 4.Linear CW modulation -- 5.Exponential CW modulation -- 6.Sampling and pulse modulation -- 7.Analog communication systems -- 8.Probablity and random variables -- 9.Random signals and noise -- 10.Nosie in analog modulation -- 11.Baseband digital transmission -- 12.Digitization techniques for analog messages and networks -- 13.Channel coding and encryption -- 14.Bandpass digital transmission -- 15.Spread spectrum systems -- 16.Information detection theory.

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