EP0318331B1

Scrambling in a digital communications network

Abstract

This record has no abstract on file.

EP0318331B1, drawing sheet 1
Sheet 1 of 16

Term

Term ended

Expired 28 November 2008, 17.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

10 claims: 2 independent, 8 dependent

  1. 1
    A central station (4) for a digital communications network, arranged to transmit data to outstations (8) in the form of a stream of frames, each in the form of a first portion (52A) containing a synchronisation signal in the form of a predetermined pattern of bits at least n bits in length, and a second portion (50, 52B), characterised in that the central station comprises a binary sequence scrambling means (68, 69) for scrambling the frames, the binary sequence scrambling means (68, 69) being arranged such that the first portions (52A) and at least part of the second portions (50, 52B) adjacent to the first portions (52A) are scrambled with the same predetermined binary sequence, and by means (98) for inverting successive nth bits in said at least part of the second portions (50, 52B), but not inverting successive nth bits in the scrambled first portions (52A), thereby preventing false recognition of synchronisation due to an identical pattern of bits in said at least part of the second portions (50, 52B).
  2. 2
    A central station as claimed in Claim 1 wherein each second portion (50, 52B) comprises a first section (52B) containing housekeeping data for the outstations, and a second section (50) containing message data for the outstations, the scrambling means (68, 69) is arranged to scramble said first portions (52A) and said first sections (52B) with a first predetermined binary sequence and to scramble said second sections (50) with a second predetermined binary sequence, and the inverting means (98) is arranged to invert successive nth bits of only said first sections (52B).
  3. 3
    A central station as claimed in Claim 2 wherein the scrambling means (68, 69) comprises a first scrambler (68) arranged to scramble the contents of said first portions (52A) and said first sections (52B) of the frames in accordance with the first predetermined binary sequence, and a second scrambler (69) arranged to scramble the contents of said second sections (50) of the frames in accordance with the second predetermined binary sequence.
  4. 4
    A central station as claimed in Claim 3 wherein the first and second scramblers (68, 69) of the scrambling means share a single predetermined binary sequence generator (90, 92, 94, 96) and utilise respective taps of a shift register (90) of the generator.
  5. 5
    A central station as claimed in any one of the preceding claims wherein n is sixteen.
  6. 6
    An outstation (8) for a digital communications network, arranged to receive frames from a central station as claimed in Claim 1, the outstation being characterised by binary sequence descrambling means (72, 74) for descrambling the frames, the binary sequence descrambling means (72, 74) being arranged to descramble the first portions (52A) and at least part of the second portions (50, 52B) adjacent to the first portions with the same predetermined scrambling binary sequence, by means (73) for identifying the synchronisation signal in the output of the descrambling means, and by means (75) arranged to correct the inverted nth bits of the descrambled said at least part of the scrambled second portions thereby to reconstitute the original form of said at least part of the scrambled second portions.
  7. 7
    An outstation as claimed in Claim 6 and arranged to receive frames from a central station (4) as claimed in Claim 2, characterised in that the descrambling means comprises a first descrambler (72) for descrambling the contents of said first portions and said first sections of the frames in accordance with said first predetermined binary sequence, and a second descrambler (74) for descrambling the contents of said second sections of the frames in accordance with said second predetermined binary sequence, and by means (77) responsive to the synchronisation signals in the frames to control the descrambling means such as to select the first predetermined binary sequence at the start of said first sections and to select the second predetermined binary sequence at the start of said second sections.
  8. 8
    An outstation as claimed in Claim 7, wherein said first and said second descramblers (72, 74) share a single binary sequence generator and utilise respective taps of a shift register (90' ) of the generator and there is provided means (75) for correcting the error extension of the first descrambler during descrambling of said first sections.
  9. 9
    An outstation as claimed in Claim 7 or Claim 8, wherein the descrambling means further comprises a self-synchronising descrambler (71) coupled to said identifying means (73) and arranged to descramble the frame in accordance with said first predetermined binary sequence.
  10. 10
    A digital communications network comprising a central station (4), a plurality of outstations (8) and a transmission medium in the form of a branch arrangement (2) between the central station and the outstations which carries in use multiplexed signals for the outstations in the form of a stream of broadcast frames each including a synchronisation signal, said network being adapted for return signals from the outstations to be multiplexed passively in a stream of return frames onto said transmission medium (2), or onto a similar transmission medium (2') specifically for said return signals;characterised in that the central station (4) is as claimed in Claim 1, and that each outstation (8) is as claimed in Claim 6.