Claims
- 1. A method for extending the distance for delivering digital communication signals to be transported over a transmission path between a first site and a second site, comprising the steps of:
(a) converting first digital communication signals having a first line code into second digital communication signals having a second line code representative of a second symbol rate that is different from said first line code; and (b) processing said second digital communication signals for delivery over said transmission path to said second site.
- 2. A method according to claim 1, wherein said first and second digital communication signals comprise DSL signals.
- 3. A method according to claim 1, wherein said first and second digital communication signals comprise HDSL signals.
- 4. A method according to claim 1, wherein said first and second digital communication signals comprise DDS signals.
- 5. A method according to claim 1, wherein said first and second digital communication signals comprise ISDN signals.
- 6. A method according to claim 1, wherein said first digital communication signals convey two information bits per symbol and said second digital communication signals convey three information bits per symbol.
- 7. A method according to claim 6, wherein step (b) comprises processing said second digital communication signals for delivery over said transmission path to said second site as 4B1H communication signals.
- 9. A method according to claim 1, wherein step (b) comprises subjecting said second digital communication signals to Tomlinson preceding.
- 10. A method according to claim 1, further including the step of:
(c) at said second site, receiving said second digital communication signals that have been delivered thereto via said transmission path from said first site and processing said received second digital communication signals to recover said first digital communication signals having said first line code.
- 11. A method according to claim 10, wherein step (c) further comprises subjecting said received second digital communication signals to adaptive equalization.
- 12. A method according to claim 11, wherein step (b) comprises subjecting said second digital communication signals to Tomlinson preceding.
- 13. A method according to claim 12, wherein said second digital communication signals have a one-dimensional symbol coding space.
- 14. A method according to claim 13, wherein step (c) further comprises processing said received second digital communication signals in accordance with a modulo index operator, which is operative to adjust the output of said received second digital communication signals, as necessary, to fall within the magnitude of the range of said one-dimensional symbol coding space.
- 15. A method according to claim 1, wherein step (a) includes subjecting said second digital communication signals to error correction encoding.
- 16. A method according to claim 15, wherein said error correction encoding comprises trellis encoding.
- 17. A method according to claim 6, wherein step (a) comprises converting 2B1Q ISDN signals into 4B1H signals which contain three information bits per symbol subjected to error correction encoding, and step (b) comprises processing said 4B1H signals into said output signals for transmission over said transmission path to said second site.
- 18. A method according to claim 17, further including the step of:
(c) at said second site, receiving signals from said transmission path and subjecting the received signals to adaptive equalization.
- 19. A method according to claim 18, wherein step (b) comprises subjecting said 4B1H signals to Tomlinson preceding.
- 20. A method according to claim 19, wherein said Tomlinson precoding and said adaptive equalization are carried out using multitap filters.
- 21. A method according to claim 1, wherein said transmission path comprises a two-wire telephone link.
- 22. A method for delivering integrated services digital network (ISDN) communication signals over a transmission path from a first site and a second site, comprising the steps of:
(a) receiving ISDN communication signals at a first modulation format to be delivered over said transmission path from said first site to said second site; (b) transmitting said ISDN communication signals over said transmission path at a second modulation format that permits extended range operation and is different than said first modulation format; and (c) at said second site, receiving ISDN communication signals that have been transmitted in step (b) and converting the received ISDN communication signals to said first modulation format.
- 23. A method according to claim 22, wherein said ISDN communication signals having said first modulation format correspond to basic rate ISDN communication signals containing two information bits per symbol, and wherein said second modulation format ISDN communication signals contain three information bits per symbol.
- 24. A method according to claim 22, wherein said second modulation format ISDN communication signals are 4B1H signals.
- 25. A method according to claim 22, wherein step (a) includes embedding an error correcting code within said ISDN communication signals that are transmitted over said transmission path at said second modulation format.
- 26. A method according to claim 25, wherein step (a) comprises trellis encoding said ISDN communication signals that are transmitted over said transmission path at said second modulation format.
- 27. A method according to claim 25, wherein said error correcting code is effective to increase the number of bits per symbol of transmitted signals containing said ISDN communication signals having said second modulation format.
- 28. A method according to claim 22, wherein step (d) comprises subjecting the signals received in step (d) to adaptive equalization.
- 29. A method according to claim 22, wherein said ISDN communication signals transmitted over said transmission path at said second modulation format have a one-dimensional coding space.
- 30. A method according to claim 29, wherein step (d) further comprises processing the signals received in step (c) in accordance with a modulo index operator, which is operative to adjust the output of said received signals, as necessary, to fall within the magnitude of the range of said one-dimensional coding space.
- 31. A method according to claim 24, wherein said error correcting code is effective to increase the number of bits per symbol of transmitted signals, such that said transmitted signals correspond to 4B1H communication signals.
- 32. A method according to claim 22, wherein step (b) includes subjecting said ISDN communication signals having said second communication format to Tomlinson precoding prior to transmission.
- 33. A method according to claim 32, wherein step (d) comprises subjecting the signals received in step (c) to adaptive equalization.
- 34. A method according to claim 22, wherein said ISDN communication signals having said first modulation format are basic rate 2B1Q ISDN communication signals, and wherein step (b) comprises converting said basic rate 2B1Q ISDN communication signals into 4B1H communication signals containing correction encoding of ISDN communication signals having three information bits per symbol.
- 35. A method according to claim 34, further comprising the step (b4) of subjecting said 4B1H communication signals to Tomlinson precoding prior to transmission.
- 36. A method according to claim 22, wherein said transmission path comprises a two-wire telephone link.
- 37. An arrangement for extending the transmission distance for basic rate integrated services digital network (ISDN) communication signals over a two-wire transmission path between a first site and a second site, comprising:
a line code converter which is operative to convert said basic rate ISDN communication signals having a first, basic rate 2B1Q line code into changed symbol rate ISDN communication signals having a second line code that is different from said first, basic rate 2B1Q line code; and a signal processor which processes said reduced symbol rate ISDN communication signals having said second line code into output signals for transmission over said two-wire transmission path to said second site, and causes said output signals to be transmitted over said two-wire transmission path at a symbol rate different from said basic rate.
- 38. An arrangement according to claim 37, wherein said second line code contains three information bits per symbol.
- 39. An arrangement according to claim 38, wherein said output signals have a 4B1H line code.
- 40. An arrangement according to claim 37, further including, at said second site, a receiver which receives said output signals from said two-wire transmission path and recovers therefrom said basic rate ISDN communication signals.
- 41. An arrangement according to claim 40, wherein said receiver includes an adaptive equalizer.
- 42. An arrangement according to claim 41, wherein said signal processor includes a Tomlinson precoder having a filter structure corresponding to a decision feedback section of said adaptive equalizer.
- 43. An arrangement according to claim 37, wherein said signal processor includes an error correction encoder.
- 44. An arrangement according to claim 43, wherein said error correction encoder comprises a trellis encoder.
- 45. An arrangement according to claim 37, wherein said line code converter is operative to convert said basic rate ISDN communication signals having said first, basic rate 2B1Q line code into first reduced symbol rate ISDN signals having three information bits per symbol, and wherein said signal processor includes an error correction encoder which performs error correction encoding of said first reduced symbol rate ISDN communication signals to transform said first reduced symbol rate ISDN communication signals into second reduced symbol rate ISDN communication signals having a 4B1H line code for transmission to said second site.
- 46. An arrangement according to claim 37, wherein said output signals to be transmitted over said two-wire transmission path have a one-dimensional symbol space.
- 47. An arrangement according to claim 40, wherein said output signals to be transmitted over said two-wire transmission path have a one-dimensional symbol space, and wherein said receiver is operative to process said received signals in accordance with a modulo index operator, which adjusts the output of said received signals, as necessary, to fall within the magnitude of the range of said one-dimensional symbol coding space.
- 48. An arrangement according to claim 40, further including, at a respective site, an echo canceller coupled between said signal processor and said receiver.
- 49. A method for delivering basic rate (2B+D) integrated services digital network (ISDN) connectivity from a central office site to a remote site, comprising the steps of:
(a) receiving ISDN signals from a central office communication device for delivery from said central office site to said remote site; (b) processing said ISDN signals received in step (a) into non-basic rate formatted and modulated ISDN signals that provide extended range delivery over a single pair of wires from said central office site to said remote site; (c) at said remote site, receiving said non-basic rate formatted and modulated ISDN signals that have been delivered over said single pair of wires from said central office site, and recovering information contained therein; and (d) forwarding said information recovered in step (c) to a customer site served by said remote site, using basic rate formatted and modulated ISDN signals.
- 50. A method according to claim 49, further including the steps of:
(e) at said remote site, receiving basic rate modulated and formatted ISDN signals from said customer site to be delivered over said single pair of wires to said central office site, and recovering information contained therein; (f) transmitting information recovered in step (e) by means of non-basic rate formatted and modulated ISDN signals over said single pair of wires to said central office site; (g) at said central office site, receiving said non-basic rate formatted and modulated ISDN signals that have been delivered thereto over said single pair of wires from said remote site, and recovering information contained therein; and (h) forwarding said information recovered in step (g) to said central office communication device.
- 51. A method according to claim 49, wherein step (h) comprises forwarding said information recovered in step (g) to said central office communication device using basic rate formatted and modulated ISDN signals.
- 52. A method according to claim 49, wherein step (b) comprises processing ISDN signals received in step (a) into modulated signals containing three information bits per symbol.
- 53. A method according to claim 52, wherein step (b) further comprises processing said modulated signals containing three information bits per symbol to form 4B1H communication signals that provide extended range delivery over said single pair of wires to said remote site.
- 54. A method according to claim 53, wherein step (b) comprises subjecting said 4B1H communication signals to Tomlinson preceding.
- 55. A method according to claim 54, wherein step (c) further comprises subjecting said received said non-basic rate formatted and modulated ISDN signals to adaptive equalization.
- 56. A method according to claim 52, wherein step (b) comprises the steps of:
(b1) converting said 2B1Q ISDN signals into 4B1H signals containing three information bits per symbol subjected to error correction encoding.
- 57. A method according to claim 50, wherein said central office site and said remote site are interconnected by a full-duplex single pair of wires, with echo cancellation, and wherein steps (b) and (g) are carried out in both directions over said full-duplex single pair of wires.
- 58. A method according to claim 57, wherein step (h) comprises forwarding said information recovered in step (g) to said central office communication device using basic rate formatted and modulated ISDN signals.
- 59. A method according to claim 57, wherein step (b) comprises processing ISDN signals received in step (a) into modulated signals containing three information bits per symbol.
- 60. A method according to claim 59, wherein step (b) further comprises processing said modulated signals containing three information bits per symbol to form 4B1H communication signals that provide extended range delivery over said single pair of wires to said remote site.
- 61. A method according to claim 60, wherein step (b) comprises subjecting said 4B1H communication signals to Tomlinson precoding.
- 62. A method according to claim 63, wherein step (c) further comprises subjecting said received said non-basic rate formatted and modulated ISDN signals to adaptive equalization.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] The present application claims the benefit of U.S. Provisional Application No. 60/002,491 filed Aug. 18, 1995.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60002491 |
Aug 1995 |
US |
Continuations (3)
|
Number |
Date |
Country |
Parent |
09438555 |
Nov 1999 |
US |
Child |
10131654 |
Apr 2002 |
US |
Parent |
09133061 |
Aug 1998 |
US |
Child |
09438555 |
Nov 1999 |
US |
Parent |
08560812 |
Nov 1995 |
US |
Child |
09133061 |
Aug 1998 |
US |