Claims
- 1. A method for modulating a binary bit stream in a composite video signal, the composite video signal includes luminance, chrominance and audio components, the method comprising:
obtaining sync pulse information from the composite video signal; modulating the binary bit stream according to a modified OFDM technique, the modulating comprising:
generating in-phase and quadrature symbol frames from the binary bit stream; and combining the in-phase and quadrature symbol frames streams according to OFDM modulation techniques; converting the combined symbol frames into an analog signal; and combining the analog signal with the composite video signal according to the obtained sync pulse information.
- 2. The method of claim 1, wherein combining comprises:
translating the analog signal to be centered at an intermediate frequency above the baseband of the composite video signal; and amplifying the translated analog signal.
- 3. The method of claim 2, wherein the intermediate frequency is at least 2 MHz.
- 4. The method of claim 2, wherein the intermediate frequency is less than 3 MHz.
- 5. The method of claim 1, wherein modulating further comprises:
encoding the binary bit stream with forward error correction code; and preceding the generated in-phase and quadrature symbol streams according to comb filtering effects.
- 6. The method of claim 5, wherein precoding comprises:
the assembly of inphase and quadrature symbol frames according to OFDM modulation techniues.
- 7. The method of claim 1, wherein the composite video signal is a NTSC video signal.
- 8. An apparatus for modulating a binary bit stream in a composite video signal, the composite video signal includes luminance, chrominance and audio components, the apparatus comprising:
a sync pulse stripper configured to obtain sync pulse information from the composite video signal; a modulator configured to modulate the binary bit stream according to quadrature amplitude modulation, the modulator comprising:
a symbol mapper configured to generate in-phase and quadrature symbol streams; and a symbol stream combiner configure to combine the in-phase and quadrature symbol streams according to quadrature amplitude modulation techniques; a digital to analog converter configured to convert the combined symbol streams into an analog signal; and a combiner configured to combine the analog signal with the composite video signal according to the obtained sync pulse information.
- 9. The apparatus of claim 8, wherein the combiner comprises:
a translator configured to translate the analog signal to be centered at an intermediate frequency above the baseband of the composite video signal; and an amplifier configured to amplifying the translated analog signal.
- 10. The apparatus of claim 9, wherein the intermediate frequency is at least 2 MHz.
- 11. The apparatus of claim 9, wherein the intermediate frequency is less than 3 MHz.
- 12. The apparatus of claim 8, wherein modulator further comprises:
a precoder configured to precode the generated in-phase and quadrature symbol streams according to comb filtering effects.
- 13. The apparatus of claim 12, wherein the precoder comprises:
a filter configured to filter the generated in-phase and quadrature symbol streams according to Nyquist square root filtering techniques.
- 14. The apparatus of claim 8, wherein the composite video signal is a NTSC video signal.
- 15. A method for demodulating a binary bit stream modulated in a composite video signal as a gated and windowed OFDM offset carrier modulated signal, the composite video signal includes luminance, chrominance and audio components, the method comprising:
converting the composite video signal modulated with the carrier centered OFDM modulated signal into a digital signal; splitting the digital signal into synch pulses and a quadrature amplitude modulated data stream; separating the offset OFDM modulated data stream into in -phase and quadrature symbol frames streams according to the synch pulses; and combining the in-phase and quadrature demodulated symbol frames into a single binary data stream.
- 16. The method of claim 15, wherein splitting comprises:
suppressing the composite video signal for attaining the offset OFDM modulated data stream; suppressing the offset OFDM modulated data stream for attaining the composite video signal; and extracting the synch pulses from the attained composite video signal.
- 17. The method of claim 15, wherein separating comprises:
frequency translating the offset OFDM modulated data frames to the baseband of the composite video signal.
- 18. The method of claim 15, further comprising:
decoding the single binary data stream according to forward error correction coding included in the binary data stream.
- 19. The method of claim 15, wherein the composite video signal is a NTSC video signal.
- 20. A receiver for demodulating a binary bit stream modulated in a composite video signal as an offset OFDM modulated signal, the composite video signal includes luminance, chrominance and audio components, the receiver comprising:
an analog to digital converter configured to convert the composite video signal modulated with the offset OFDM modulated signal into a digital signal; a splitter configured to split the digital signal into synch pulses and an I-Q OFDM modulated data stream; a separator configured to separate the offset OFDM modulated data frame into in -phase and quadrature symbol frames according to the synch pulses; and a combiner configured to combine the in-phase and quadrature data frames into a single binary data stream.
- 21. The receiver of claim 20, wherein the splitter comprises:
a first signal suppressor configured to suppress the composite video signal for attaining the I-Q OFDM modulated data stream; a second signal suppressor configured to suppress the I-Q OFDM modulated data stream for attaining the composite video signal; and an extractor configured to extract the synch pulses from the attained composite video signal.
- 22. The receiver of claim 20, wherein the separator comprises:
a translator configured to frequency translate the I-Q OFDM modulated data frame to the baseband of the composite video signal.
- 23. The receiver of claim 20, further comprising:
a decoder configured to decode the single binary data stream according to forward error correction coding included in the binary data stream.
- 24. The receiver of claim 20, wherein the composite video signal is a NTSC video signal.
PRIORITY OF INVENTION
[0001] This application claims priority of provisional application 60/259,994, “Imbedded Modulation in an NTSC Signal,” filed Jan. 4, 2001, which is incorporated herein in its entirety.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60259994 |
Jan 2001 |
US |