Claims
- 1. A system for generating a sterophonic information-encoded signal in response to at least a portion of the program information of a monophonic input signal so that said encoded signal can be used with a monophonic signal derived from said monophonic input signal to produce stereophonic sound, said system comprising:
- input means receiving said monophonic input signal;
- output means providing said stereophonic information-encoded signal; and
- means, coupled between said input and output means, for generating said stereophonic information-encoded signal as a function of phase shifts created in said monophonic input signal and in response to and as a function of at least a portion of the program information of said monophonic input signal so as to control the degree of sterephonic spread when said stereophonic sound is produced, said means for generating said stereophonic information-encoded signal includes means for shifting the phase of said monophonic input signal as a function of frequency so as to generate a phase shifted signal, said means for shifting the phase of said monophonic input signal includes a time-dispersive circuit, said time dispersive circuit includes an all-pass phase shifter defining at least twenty bands, of 180.degree. phase shift each, throughout said audio range.
- 2. A system according to claim 1, wherein said means for generating said stereophonic information-encoded signal further includes signal path means for defining a signal path between said input and output means and means disposed in said signal path for controlling the signal gain impressed on signals transmitted over said signal path as a function of at least a portion of the program information of said input signal.
- 3. A system according to claim 2, wherein said means for controlling said signal gain includes an amplifier for impressing said signal gain on signals transmitted through said signal path, and means responsive to said input signal for generating a control signal to said amplifier for controlling the gain of said amplifier.
- 4. A system according to claim 3, wherein said amplifier provides an output signal as a logarithmic function of the sum of the input signal to said amplifier and said control signal.
- 5. A system according to claim 4, wherein said means for generating said control signal is a function of the amplitude time-derivative of said input signal.
- 6. A system according to claim 3, wherein said means for generating said stereophonic information-encoded signal includes means for shifting the phase of said monophonic input signal as a function of frequency so as to generate a phase shifted signal.
- 7. A system according to claim 1, wherein said all-pass phase shifter defines forty-eight of said bands throughout said audio range.
- 8. A system according to claim 1, wherein said means for generating said stereophonic information-encoded signal includes means for generating a first signal primarily representative of on-center information contained in said monophonic input signal, means for generating a control signal as a function of said first signal, means for generating a second signal primarily representative of off-center information contained in said monophonic input signal, means for generating said stereophonic encoded signal in response to said first and second signals and means for reducing said stereophonic information-encoded signal in response to and as a function of said control signal.
- 9. A system according to claim 8, wherein said means for generating said first signal and said means for generating said control signal each include a band pass filter for passing that signal energy within at least one frequency band typically dominated by speech.
- 10. A system according to claim 9, wherein said means for generating said second signal includes a band stop filter for rejecting that signal energy within said frequency band typically dominated by speech.
- 11. A system according to claim 10, wherein said band pass filter of said means for generating said first signal has a pass band between approximately 125 Hz and 500 Hz and said band pass filter of said means for generating said control signal has a pass band between approximately 320 Hz and 400 Hz.
- 12. A system according to claim 8, wherein said means for generating said stereophonic information-encoded signal further includes means for shifting the phase of said monophonic input signal as a function of frequency so as to produce a phase shifted signal, and said means for generating said first signal and said means for generating said second signal are each responsive to said phase shifted signal.
- 13. A system according to claim 8, wherein said means for modifying said first and second signals includes means for controlling the signal gain impressed on each of said first and second signals in response to and as a function of said control signal.
- 14. In a system for generating audio signals for use in television receivers, said system being of the type including means responsive to a program input signal for generating a base carrier signal including a monophonic signal and a subcarrier signal including a stereophonic information-encoded signal adapted to be used with said monophonic signal in select ones of said receivers for producing stereophonic sound and in other ones of said receivers for producing monophonic sound reproduction, wherein the improvement comprises:
- means for synthesizing said stereophonic-encoded signal in response to said program signal when said program signal is monophonic, said means for synthesizing including means for shifting the phase of said program signal 180.degree. at least twenty times throughtout the audio range and said means for shifting the phase of said program signal includes a time-dispersive circuit.
- 15. A system according to claim 11, wherein said time-dispersive circuit includes an all-pass phase shifter, said shifter including at least twenty bands throughout said audio range.
- 16. A system according to claim 15, wherein said all-pass phase shifter includes forty-eight bands throughout said audio range.
- 17. A system according to claim 14, further including means for variably controlling the signal gain of said encoded signal so as to control the amount of stereophonic spread when said synthesized stereophonic sound is produced as a function of and in response to said program signals without affecting the signal gain of said monophonic signal.
- 18. A system according to claim 14, wherein said means for synthesizing said stereophonic-encoded signal includes means responsive to at least a portion of the program information of said input signal for controlling the degree of stereophonic spread when said select ones of said receivers produce stereophonic sound.
- 19. A system generating audio signals for use in television receivers, said system being of the type including means responsive to a program input signal for generating a base carrier signal including a monophonic signal and a subcarrier signal including a stereophonic information-encoded signal adapted to be used with said monophonic signal in select ones of said receivers for producing stereophonic sound and in other ones of said receivers for producing monophonic sound reproduction, wherein the improvement comprises:
- input means for receiving said monophonic signal;
- output means for providing said stereo-encoded signal; and
- time-dispersive means disposed between said input means and output means synthesizing said stereophonic-encoded signal in response to and as a function of at least a portion of the program information of said monophonic signal and for generating at least twenty phase shifts, each of 180.degree., created in said monophonic signal within the audio range so as to control the degree of stereophonic spread when said select ones of said receivers produce stereophonic sound.
- 20. A system according to claim 19, wherein said means for synthesizing said stereophonic-encoded signal includes means for shifting the phase of said monophonic input signal as a function of frequency so as to generate a phase-shifted signal.
- 21. A system according to claim 19, wherein said means for synthesizing said stereophonic information-encoded signal includes signal path means for defining a signal path between said input and output means and means disposed in said signal path for controlling the signal gain impressed on signals transmitted over said signal path as a function of at least a portion of the program information of said input signal.
Parent Case Info
The present application is a continuation-in-part of U.S. patent application Ser. No. 661,658 filed Nov. 17, 1984 now abandoned.
US Referenced Citations (5)
Non-Patent Literature Citations (2)
| Entry |
| Chamberlin, Musical Applications of Microprocessors, 1980, pp. 447-451. |
| J. Cohen, "Enhance TV Sound with Stereo", Popular Electronics, Jun. 1982, pp. 55-59. |
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
661658 |
Nov 1984 |
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