Claims
- 1. A system for providing a common transport signal comprising an analog information signal and a digital information signal, said system comprising:
means for transmitting said common transport signal; means for receiving said common transport signal;
wherein said means for transmitting frequency translates, and co-locatively adds, in a single contiguous bandwidth, said analog information signal, in analog form, and said digital information signal, to form said common transport signal.
- 2. The system according to claim 1, wherein said single contiguous bandwidth is nominally a 25 MHz bandwidth.
- 3. The system according to claim 1, wherein said means for transmitting said common transport signal comprises:
an analog information signal modulator that modulates said analog signal onto a first intermediate frequency; a digital information signal modulator that frequency translates said digital signal to a second intermediate frequency; a first upconverter that upconverts and amplifies said modulated analog information signal; a second upconverter that upconverts and amplifies said frequency translated digital information signal; a power combiner for adding said upconverted, modulated analog information signal and said upconverted, frequency translated digital information signal to form said common transport signal; and at least one transmitting antenna that transmits said common transport signal.
- 4. The system according to claim 3, wherein said second intermediate frequency is nominally 82.5 MHz.
- 5. The system according to claim 1, wherein said means for receiving said common transport signal comprises:
a signal receptor that receives and conditions said common transport signal; a signal splitter that splits said common transport signal, wherein said signal receptor conditions said common transport signal for splitting by said signal splitter; dual downconverters that each receive said split common transport signal, wherein a first downconverter downconverts said analog information signal, and wherein a second downconverter downcoverts said digital information signal; dual bandpass filtering and intermediate frequency amplifying stages, wherein a first of said dual bandpass filtering and intermediate frequency amplifying stages filters and amplifies said analog information signal, and wherein a second of said dual bandpass filtering and intermediate frequency amplifying stages filters and amplifies said digital information signal; and dual signal demodulators, wherein a first of said dual signal demodulators demodulates said analog information signal, and wherein a second of said dual signal demodulators demodulates said digital information signal.
- 6. The system according to claim 5, wherein said signal receptor comprises:
at least one receiving antenna that receives said common transport signal; and at least one low noise amplifier that conditions said common transport signal.
- 7. The system according to claim 5, wherein said signal splitter comprises a power splitter.
- 8. The system according to claim 5, wherein said first downconverter recovers a first intermediate frequency comprising a modulation of said analog information signal, and wherein said second downconverter recovers a second intermediate frequency comprising a frequency translation of said digital information signal, and further comprising:
a frequency translator that translates said recovered second intermediate frequency to said standard intermediate frequency.
- 9. The system according to claim 8, wherein said recovered first intermediate frequency comprises a standard intermediate frequency.
- 10. The system of claim 9, wherein said standard intermediate frequency is nominally 70 MHz.
- 11. The system of claim 1, wherein said digital information signal comprises at least one selected from the group consisting of a high definition television signal, a standard definition television signal, a digital data signal, and a T1 transmission line signal.
- 12. The system of claim 1, wherein said analog information signal is at least one selected from the group consisting of an analog television signal, an NTSC analog television signal, an analog audio signal, an analog video signal, and an analog video plus audio signal.
- 13. A method of generating a common transport signal, wherein said common transport signal comprises an analog information signal in analog form and a digital information signal, and wherein said analog information signal and said digital information signal are both in a single bandwidth, the method comprising:
modulating said analog information signal onto a first intermediate frequency to generate a first intermediate frequency composite signal; frequency translating said digital information signal with a second intermediate frequency to generate a second intermediate frequency composite signal; upconverting said first intermediate frequency composite signal to generate a first composite RF signal; upconverting said second intermediate frequency composite signal to generate a second RF composite signal; and combining said first RF composite signal and said second RF composite signal to generate said common transport signal.
- 14. The method according to claim 13, further comprising transmitting said common transport signal via an RF antenna.
- 15. The method according to claim 13, further comprising transmitting said common transport signal in a frequency band higher than RF.
- 16. A method of extracting an analog information signal and a digital information signal from a common transport signal comprising said analog information signal in analog form and said digital information signal in a single bandwidth, comprising:
receiving said common transport signal; power splitting said common transport signal into a first composite signal and a second composite signal; downconverting said first composite signal to recover a first intermediate frequency signal comprising a modulated analog signal; downconverting said second composite signal to recover a second intermediate frequency signal comprising a frequency translated digital signal; frequency translating said second intermediate frequency signal to a substantially equivalent frequency to said first intermediate frequency signal; demodulating said first intermediate frequency signal to recover said analog information; and demodulating said frequency translated second intermediate frequency signal to recover said digital information signal.
- 17. The method according to claim 16, further comprising:
filtering said first intermediate frequency signal is ed through a first band pass filter; and amplifying said first intermediate frequncy signal through a first intermediate frequency; wherein said filtering and said amplifying are prior to said demodulating of said first intermediate frequency signal.
- 18. The method according to claim 16, further comprising:
filtering said frequency translated second intermediate frequency signal through a second band pass filter; and amplifying said frequency translated second intermediate frequency signal through a second intermediate frequency amplifier; wherein said amplifying and said filtering are prior to said demodulating of said second intermediate frequency.
- 19. The method according to claim 16, wherein said receiving comprises receiving said common transport signal via an RF antenna.
- 20. The method according to claim 16, wherein said receiving comprises receiving said common transport signal in a frequency band higher than RF.
- 21. A system for providing a common transport signal comprising an analog information signal and a digital information signal, said system comprising:
a transmitter for transmitting said common transport signal; a receiver for receiving said common transport signal;
wherein said transmitter frequency translates, and co-locatively adds, in a single contiguous bandwidth, said analog information signal, in analog form, and said digital information signal, to form said common transport signal.
- 22. The system of claim 21, wherein said transmitter for transmitting said common transport signal comprises:
an analog information signal modulator that modulates said analog signal onto a first intermediate frequency; a digital information signal modulator that frequency translates said digital signal to a second intermediate frequency; a first upconverter that upconverts and amplifies said modulated analog information signal; a second upconverter that upconverts and amplifies said frequency translated digital information signal; a power combiner for adding said upconverted, modulated analog information signal and said upconverted, frequency translated digital information signal to form said common transport signal; and at least one transmitting antenna that transmits said common transport signal.
- 23. The system of claim 21, wherein said receiver for receiving said common transport signal comprises:
a signal receptor that receives and conditions said common transport signal; a signal splitter that splits said common transport signal, wherein said signal receptor conditions said common transport signal for splitting by said signal splitter; dual downconverters that each receive said split common transport signal, wherein a first downconverter downconverts said analog information signal, and wherein a second downconverter downcoverts said digital information signal; dual bandpass filtering and intermediate frequency amplifying stages, wherein a first of said dual bandpass filtering and intermediate frequency amplifying stages filters and amplifies said analog information signal, and wherein a second of said dual bandpass filtering and intermediate frequency amplifying stages filters and amplifies said digital information signal; and dual signal demodulators, wherein a first of said dual signal demodulators demodulates said analog information signal, and wherein a second of said dual signal demodulators demodulates said digital information signal..
- 24. The system according to claim 23, wherein said signal receptor comprises:
at least one receiving antenna that receives said common transport signal; and at least one low noise amplifier that conditions said common transport signal.
- 25. A method of transmitting combined analog and digital information signals, comprising:
receiving an analog information signal; receiving a digital information signal; shifting the frequency spectrum of said analog information signal; shifting the frequency spectrum of said digital information signal; and combining the shifted frequency spectrum of said analog information signal and the shifted frequency spectrum of said digital information signal within a single video channel bandwidth;
wherein said analog information signal is maintained in analog form during said combining.
- 26. The method according to claim 25, wherein said combining comprises adding of said frequency shifted analog information signal and said frequency shifted digital information signal, wherein said frequency shifted analog information signal is higher in frequency than said frequency shifted digital information signal.
- 27. The method according to claim 25, wherein said combining comprises adding of said frequency shifted analog information signal and said frequency shifted digital information signal, wherein said frequency shifted analog information signal is lower in frequency than said frequency shifted digital information signal.
- 28. A method of receiving a combined analog and digital information signal, comprising:
receiving said combined analog and digital information signal; splitting said combined signal to produce two received signals; downconverting a first of said two received signals by a first amount; downconverting a second of said two received signals by a second amount; and frequency translating said downconverted second of said two received signals; demodulating each of said two received signals after said downconverting a first and said downconverting a second, to form said analog information signal and said digital information signal;
wherein said analog information signal is maintained in analog form during said receiving, said downconverting, said frequency translating, and said demodulating.
- 29. A method of transmitting combined analog and digital information signals, comprising:
receiving an analog information signal; receiving a digital information signal; combining the analog information signal and the digital information signal within a particular frequency bandwidth; and maintaining the analog information signal in analog form during said receiving and said combining.
- 30. A method of receiving combined analog and digital information signals, comprising:
receiving a signal, transmitted within a single bandwidth, having a first portion including an analog information, and having a second portion including a digital information signal; separating the analog information signal from the digital information signal; maintaining said analog signal in analog form during said receiving, and during said separating.
- 31. The method of claim 30, wherein said receiving comprises:
receiving, within the signal, at least one of an analog video signal, an NTSC analog television signal, and an analog audio signal.
- 32. The method of claim 30, wherein said receiving comprises:
receiving, within the signal, at least one of a digital television signal and a data signal.
- 33. The method of claim 30, wherein said separating comprises:
splitting the signal into at least two carrier signals; and shifting a frequency spectrum of at least one of the at least two carrier signals.
- 34. The method of claim 33, further comprising:
filtering the shifted at least one of the at least two carrier signals to produce the analog information signal.
- 35. The method of claim 33, further comprising:
secondarily shifting a frequency spectrum of the shifted at least one of the at least two carrier signals to produce the digital information signal.
- 36. A transmitter, comprising:
a first terminal that receives an analog signal; a second terminal that receives a digital signal; and a single bandwidth combiner, coupled to the first and second terminals, that combines the analog signal and the digital signal and that maintains the analog signal; and a transmission terminal, coupled to said combiner, that transmits the combined analog signal and the digital signal.
- 37. A receiver, comprising:
a receiving terminal that receives at least one single bandwidth signal, wherein the at least one single bandwidth signal comprises an analog signal in analog form and a a digital signal; and a separator, coupled to the terminal, that separates the analog signal from the digital signal.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of U.S. patent application Ser. No. 09/126,946 entitled “Methods and Apparatus for Transmitting analog and Digital Information Signals” filed Jul. 31, 1998, the entire disclosure of which is hereby incorporated by reference herein.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09126946 |
Jul 1998 |
US |
Child |
10081914 |
Feb 2002 |
US |