Claims
- 1. A digital transmission system, for producing a replica of a digital signal comprising at least a first component and a second component, comprising:
- an encoder including analysis means for altering said digital signal to obtain a plurality of sub-signals, including at least a first sub-signal and a second sub-signal from said first component and said second component respectively,
- signal combination means for combining said first sub-signal and said second sub-signal to obtain a composite sub-signal,
- signal generator means for generating an indicator signal indicating that said first sub-signal and said second sub-signal are combined,
- transmission means for transmitting said indicator signal, said composite sub-signal, and sub-signals which have not been combined,
- receiving means for receiving the signals which were transmitted,
- means, responsive to the received indicator signal and composite subsignal, for generating a signal related to at least one of said first component and said second component, and
- a decoder including synthesis means for combining the transmitted subsignals and the signal related to at least one of said first component and said second component to produce said replica of the digital signal.
- 2. A system as claimed in claim 1, characterized in that said first and second component represent information relating to the stereo nature of an audio signal.
- 3. A system as claimed in claim 1, characterized in that said analysis means subdivides said digital signal into sub-signals which are subband signals representing respective frequency subbands and said components.
- 4. A digital transmission system, for producing a replica of a digital signal comprising at least a first and a second component, comprising a transmitter and a receiver,
- wherein said transmitter comprises:
- an encoder including analysis means for filtering said digital signal to obtain subband signals for M subbands, where M>1, said subband signals including a plurality of first subband signals and a plurality of second subband signals from said first component and second component respectively,
- signal combination means for combining m.sub.1 of said first subband signals respectively with m.sub.1 of said second subband signals from corresponding subbands to obtain m.sub.1 composite subband signals, where 1<m.sub.1 <M,
- signal generator means for generating an indicator signal indicating which said first and second subband signals are combined, and
- transmission means for transmitting said indicator signal, said composite subband signals, and subband signals which were not combined, and
- the receiver comprises:
- receiving means for receiving the signals which have been transmitted,
- detection means for detecting said indicator signal,
- derivation means responsive to the received indicator signal, for producing, from the received composite subband signals, derived subband signals related to m.sub.1 of said first subband signals and m.sub.1 of said second subband signals, and
- a decoder including synthesis means for combining said derived subband signals and the received subband signals which were not combined, to produce said replica of the digital signal.
- 5. A system as claimed in claim 4, wherein said analysis means applies substantially identical filtering to said first and second components to obtain said first and second subbands.
- 6. A system as claimed in claim 4, characterized in that said m.sub.1 of the first subband signals are subband signals for the m.sub.1 highest frequency subbands.
- 7. A system as claimed in claim 4, characterized in that said digital signal represents a first block of samples and a second block of samples, said first component and said second component being first block first and second components, said subband signals being first block subband signals, said m.sub.1 of said first and second subband signals being m.sub.1 of the first block first and second subband signals, said m.sub.1 composite subband signals being m.sub.1 first block composite subband signals, and said replica being a replica of the portion of said digital signal representing said first block of samples,
- for producing a replica of the portion of said digital signals representing said second block of samples, said analysis means obtains second block subband signals for said M subbands including corresponding pluralities of second block first and second subband signals from second block first and second components respectively,
- said signal combination means combines in each of a number m.sub.2 subbands the second block subband signals from the respective second block first and second components, to obtain m.sub.2 composite signals in said m.sub.2 subbands, where m.sub.2 is greater than m.sub.1,
- said signal generator means generates a second block indicator signal identifying said m.sub.2 subbands,
- said transmitter transmits said composite signals in said m.sub.2 subbands, said second block indicator signal, and second block subband signals which were not combined, and
- said derivation means derives said m.sub.2 composite signals in said m.sub.2 subbands from the second block signal received, and derives from said m.sub.2 composite signals in said m.sub.2 subbands, in response to said second block indicator signal, subband signals in said m.sub.2 subbands corresponding to said second block subband signals which were combined.
- 8. A system as claimed in claim 7, characterized in that said m.sub.2 subbands are the m.sub.2 highest subbands.
- 9. A system as claimed in claim 6, characterized in that said first and second components are respective stereo audio signals.
- 10. A system as claimed in claim 4, characterized in that said transmitter comprises a scale factor determiner, for determining a scale factor for time equivalent subband signal blocks of the first and second components in the subband signals; and means for transmitting these scale factors, and
- said detector in the receiver is adapted to detect the scale factors which have been transmitted.
- 11. A system as claimed in claim 2, characterized in that said transmitter comprises means for quantizing the time equivalent signal blocks of the subband signals and the one or more composite signals.
- 12. A transmitter, for transmitting signals representative of a digital signal comprising at least a first component and a second component, over a transmission medium, comprising:
- an encoder including analysis means for altering said digital signal to obtain a plurality of sub-signals, including at least a first sub-signal and a second sub-signal from said first component and said second component respectively,
- signal combination means for combining said first sub-signal and said second sub-signal to obtain a composite sub-signal,
- signal generator means for generating an indicator signal indicating that said first sub-signal and said second sub-signal are combined,
- transmission means for transmitting said indicator signal, said composite sub-signal, and sub-signals which have not been combined.
- 13. A transmitter as claimed in claim 12, characterized in that said first and second components are respective stereo audio signals.
- 14. A transmitter as claimed in claim 12, characterized in that said analysis means filters said digital signal to provide sub-signals which are subband signals representing said digital signal in M respective frequency subbands, where M>1, said subband signals including a plurality of first subband signals and a plurality of second subband signals from said first component and second component respectively,
- said signal combination means combines m.sub.1 of said first subband signals respectively with m.sub.1 of said second subband signals from corresponding subbands to obtain m.sub.1 composite subband signals, where 1<m.sub.1 <M, and
- said indicator signal indicates which said first and second subband signals are combined.
- 15. A transmitter as claimed in claim 14, characterized in that said digital signal represents a first block of samples and a second block of samples, said first component and said second component being first block first and second components, said subband signals being first block subband signals, said m.sub.1 of said first and second subband signals being m.sub.1 of the first block first and second subband signals, said m.sub.1 composite subband signals being m.sub.1 first block composite subband signals, and said replica being a replica of the portion of said digital signal representing said first block of samples,
- for producing a replica of the portion of said digital signals representing said second block of samples, said analysis means obtains second block subband signals for said M subbands including corresponding pluralities of second block first and second subband signals from second block first and second components respectively,
- said signal combination means combines in each of a number m.sub.2 subbands the second block subband signals from the respective second block first and second components, to obtain m.sub.2 composite signals in said m.sub.2 subbands, where m.sub.1 <m.sub.2 .ltoreq.M,
- said signal generator means generates a second block indicator signal identifying said m.sub.2 subbands, and
- said transmission means transmits said m.sub.2 composite signals, said second block indicator signal, and second block subband signals which were not combined.
- 16. A transmitter as claimed in claim 14, wherein said analysis means applies substantially identical filtering to said first and second components to obtain said first and second subbands.
- 17. A transmitter as claimed in claim 14, characterized in that said m.sub.1 of the first subband signals are subband signals for the m.sub.1 highest frequency subbands.
- 18. A transmitter as claimed in claim 14, characterized in that said transmitter comprises a scale factor determiner, for determining a scale factor for time equivalent subband signal blocks of the first and second components in the subband signals; and means for transmitting these scale factors.
- 19. A receiver for producing a replica of a digital signal including a first component and a second component, from digital signal components comprising at least one composite sub-signal, an indicator signal indicating that at least a first and a second sub-signal are combined, and a plurality of subsignals not including said first and second sub-signal, said digital signal components being representative of said digital signal,
- receiving means for receiving said digital signal components,
- means, responsive to the received indicator signal and composite subsignal, for generating a signal related to at least one of said first component and said second component, and
- a decoder including synthesis means for combining the transmitted subsignals and the signal related to at least one of said first component and said second component to produce said replica of the digital signal.
- 20. A receiver as claimed in claim 19, characterized in that said first and second components are respective stereo audio signals.
- 21. A receiver as claimed in claim 19, characterized in that said composite sub-signal represents a first subband signal and a second subband signal for a combined subband, and said sub-signals are subband signals representing respective frequency subbands other than said combined subband, and
- said means for generating comprises derivation means for deriving said composite subsignal from the signal received and for deriving from said composite signal, in response to the indicator signal, subband signals corresponding to said first component and said second component.
- 22. A receiver as claimed in claim 21, characterized in that the digital signal components comprise a plurality of said composite sub-signals representing a plurality of combined subbands respectively, and a scale factor for time equivalent signal blocks of the first component and the second component,
- said detector in the receiver is adapted to detect said scale factor, and
- said derivation means is responsive to said scale factor.
Priority Claims (2)
Number |
Date |
Country |
Kind |
8901402 |
Jun 1989 |
NLX |
|
9000338 |
Feb 1990 |
NLX |
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Parent Case Info
This application is a division of U.S. patent application Ser. No. 08/173,850 filed Dec. 27, 1993, which is continuation of U.S. patent application Ser. No. 07/997,158 filed Dec. 21, 1992, now U.S. Pat. No. 5,323,396, which is a continuation of application Ser. No. 07/532,462 filed on Jun. 1, 1990 by Gerardus C. P. Lokhoff for DIGITAL TRANSMISSION SYSTEM, TRANSMITTER AND RECEIVER FOR USE IN THE TRANSMISSION SYSTEM, AND RECORD CARRIER OBTAINED BY MEANS OF THE TRANSMITTER IN THE FORM OF A RECORDING DEVICE, now abandoned.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5341457 |
Hall, II et al. |
Aug 1994 |
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Divisions (1)
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Number |
Date |
Country |
Parent |
173850 |
Dec 1993 |
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Continuations (2)
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Number |
Date |
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Parent |
997158 |
Dec 1992 |
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Parent |
532462 |
Jun 1990 |
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