• DocumentCode
    1433156
  • Title

    Application of pulse-code modulation to sound-signal distribution in a broadcasting network

  • Author

    Shorter, D.E.L. ; Chew, J.R.

  • Volume
    119
  • Issue
    10
  • fYear
    1972
  • fDate
    10/1/1972 12:00:00 AM
  • Firstpage
    1442
  • Lastpage
    1448
  • Abstract
    The application of digital methods to the internal distribution of high-quality sound signals in a broadcasting system allows a high and predictable standard of technical quality to be maintained with the minimum of attention by operating staff. Pulse-code-modulation systems for the incorporation of a sound signal into a video waveform and for the multiplex distribution of programmes for the radio service will soon be in operation within the BBC, and the eventual use of national and international digital links for this purpose is envisaged. The feasibility of digital recording has also been demonstrated. This paper is mainly concerned with the special requirements to be met in the digital coding and decoding of broadcast-quality sound signals. Considerations of quantising noise, distortion and digit-error detection lead to a bit rate approaching half a megabit per second per channel, though this rate may be somewhat reduced as a result of current developments in digital companding. No attempt is made to deal with aspects of point-to-point transmission which are common to other digital systems, but the effects of digit-error rate and of timing jitter are considered, and tolerances are suggested.
  • Keywords
    broadcasting; decoding; digital communication systems; error detection codes; pulse-code modulation; broadcast quality sound signals; broadcasting network; decoding; digit error rate; digital coding; pulse code modulation; sound signal distribution; timing jitter; tolerances;
  • fLanguage
    English
  • Journal_Title
    Electrical Engineers, Proceedings of the Institution of
  • Publisher
    iet
  • ISSN
    0020-3270
  • Type

    jour

  • DOI
    10.1049/piee.1972.0285
  • Filename
    5251598