Claims
- 1. A method of receiving broadcast program material, the method comprising the steps of:receiving a broadcast signal including a center channel signal in a central frequency band of an AM radio channel, said center channel signal being modulated by a tuning version of program material and a diversity version of the program material, said tuning version of program material being delayed with respect to said diversity version of the program material, a first plurality of sub-carriers in an upper sideband of said AM radio channel modulated with first additional program material, and a second plurality of sub-carriers in a lower sideband of said AM radio channel modulated with second additional program material; demodulating a first portion of said center channel signal to recover said tuning version of program material; using said tuning version of program material to produce an initial audio output; demodulating a second portion of said center channel signal to recover said diversity version of the program material; and using said diversity version of program material to produce a subsequent audio output.
- 2. The method of claim 1, wherein the center channel signal comprises:an analog modulated carrier being modulated by the tuning version of the program material; and a third plurality of sub-carriers being modulated by the diversity version of the program material, wherein the third plurality of sub-carriers are transmitted at a power spectral density level that is less than the power spectral density of the analog modulated carrier.
- 3. The method of claim 1, wherein the center channel signal comprises:a third plurality of sub-carriers modulated with the tuning version of the program material; and a fourth plurality of sub-carriers modulated with the diversity version of the program material.
- 4. The method of claim 3, wherein:said third and fourth pluralities of sub-carriers are evenly spaced within the central frequency band; and said third plurality of sub-carriers are modulated in quadrature with said fourth plurality of sub-carriers.
- 5. The method of claim 3, wherein:said third plurality of sub-carriers are positioned within an upper portion of the central frequency band; and said fourth plurality of sub-carriers are positioned within a lower portion of the central frequency band.
- 6. The method of claim 1, wherein the sub-carriers in said first and second pluralities of sub-carriers that are positioned farthest from the center of the channel are transmitted at higher power spectral densities than the sub-carriers that are positioned closer to the center of the channel.
- 7. The method of claim 1, further comprising the steps of:detecting errors in the transmission of said first and second additional program material; and deleting said first and second additional program material when said errors exceed a preselected level.
- 8. The method of claim 1, further comprising the step of:using said tuning version of program material to produce said subsequent audio output if the diversity version of the program material becomes corrupted.
- 9. The method of claim 1, further comprising the step of:combining at least one of the first and second additional program materials with the diversity program material prior to the step of using said diversity version of program material to produce the subsequent audio output.
- 10. The method of claim 1, wherein the broadcast signal further includes additional data, said method further comprising the step of:outputting said additional data.
- 11. A receiver for receiving broadcast program material, the receiver comprising:means for receiving a broadcast signal including a center channel signal in a central frequency band of an AM radio channel, said center channel signal being modulated by a tuning version of program material and a diversity version of the program material, said tuning version of program material being delayed with respect to said diversity version of the program material, a first plurality of sub-carriers in an upper sideband of said AM radio channel modulated with first additional program material, and a second plurality of sub-carriers in a lower sideband of said AM radio channel modulated with second additional program material; means for demodulating a first portion of said center channel signal to recover said tuning version of program material and for demodulating a second portion of said center channel signal to recover said diversity version of program material; and means for using said tuning version of program material to produce an initial audio output and for using said diversity version of program material to produce a subsequent audio output.
- 12. The receiver of claim 11, further comprising:means for detecting errors in the transmission of said first and second additional program material; and means for deleting said first and second additional program material when said errors exceed a preselected level.
- 13. The receiver of claim 11, further comprising:means for using said tuning version of program material to produce said subsequent audio output if the diversity version of the program material becomes corrupted.
- 14. The receiver of claim 11, further comprising:means for combining at least one of the first and second additional program materials with the diversity program material.
- 15. The receiver of claim 11, wherein the broadcast signal further includes additional data, said receiver further comprising:means for outputting said additional data.
- 16. A receiver for receiving broadcast program material, the receiver comprising:an antenna for receiving a broadcast signal including a center channel signal in a central frequency band of an AM radio channel, said center channel signal being modulated by a tuning version of program material and a diversity version of the program material, said tuning version of program material being delayed with respect to said diversity version of the program material, a first plurality of sub-carriers in an upper sideband of said AM radio channel modulated with first additional program material, and a second plurality of sub-carriers in a lower sideband of said AM radio channel modulated with second additional program material; a demodulator for demodulating a first portion of said center channel signal to recover said tuning version of program material and for demodulating a second portion of said center channel signal to recover said diversity version of program material; and a speaker for using said tuning version of program material to produce an initial audio output and for using said diversity version of program material to produce a subsequent audio output.
- 17. The receiver of claim 16, further comprising:means for detecting errors in the transmission of said first and second additional program material; and means for deleting said first and second additional program material when said errors exceed a preselected level.
- 18. The receiver of claim 16, wherein the demodulator combines at least one of the first and second additional program materials with the diversity program material.
- 19. The receiver of claim 16, wherein the broadcast signal further includes additional data, said receiver further comprising:an output for outputting said additional data.
CROSS REFERENCE TO RELATED APPLICATION
This application is a divisional application of application Ser. No. 09/049,217, filed Mar. 27, 1998, now U.S. Pat. No. 6,243,424.
US Referenced Citations (13)
Non-Patent Literature Citations (2)
Entry |
B. Kroeger, A. Vigil, “Improved IBOC DAB Technology For AM and FM Broadcasting”, Oct. 1996. |
M. Alard, R. Lassale, “Principles of modulation and channel coding for digital broadcasting for mobile receivers”, EBU Review, No. 224, pp. 168-190, Aug. 1987. |