Claims
- 1. A communications system, comprising:
a transceiver capable of using a wireless communications link for transmission and reception of wireless signals; a Global Positioning System (GPS) receiver, coupled to the transceiver and useable for at least computing a position of the transceiver, comprising:
a first data path for correlating an incoming GPS signal, located within a scanned signal window, with a locally generated signal; and a second data path for verifying the incoming GPS signal, located within the scanned signal window, against a lock signal, the second data path determining whether the incoming GPS signal has at least one characteristic which differentiates the incoming GPS signal from an auto-correlated signal, wherein the GPS receiver can change the locally generated signal to continue to search the scanned signal window for a second incoming GPS signal if the incoming GPS signal lacks the at least one characteristic.
- 2. The communications system of claim 1, wherein the first data path, the second data path, and the GPS receiver are located on a single integrated circuit.
- 3. The communications system of claim 2, wherein the at least one characteristic is a predetermined signal strength of the incoming GPS signal.
- 4. The communications system of claim 2, wherein the at least one characteristic is a predetermined Signal-to-Noise Ratio (SNR) of the incoming GPS signal.
- 5. The communications system of claim 2, wherein the at least one characteristic is selected from a group comprising a correlation to a different satellite code being stronger than a correlation to a desired satellite code, and a different delay of the same satellite code being stronger than a correlation to a locally generated code delay.
- 6. The communications system of claim 2, wherein the at least one characteristic is at least two characteristics selected from a group comprising: a predetermined signal strength of the incoming GPS signal, a predetermined Signal-to-Noise Ratio (SNR) of the incoming GPS signal, a correlation to a different satellite code being stronger than a correlation to a desired satellite code, and a different delay of the same satellite code being stronger than a correlation to a locally generated code delay.
- 7. The communications system of claim 2, wherein the first data path is controlled by a first central processing unit (CPU), and the second data path is controlled by a second CPU.
- 8. The communications system of claim 2, wherein the transceiver is a cellular telephone transceiver.
- 9. The communications system of claim 8, wherein the cellular telephone transceiver and the GPS receiver use a single local oscillator to provide a first reference frequency to the cellular transceiver and a second reference frequency to the GPS receiver.
- 10. The communications system of claim 9, wherein the first reference frequency and
the second reference frequency are the same reference frequency.
- 11. The communications system of claim 10, wherein the cellular telephone transceiver and the GPS receiver share a processing unit.
- 12. The communications system of claim 11, wherein the GPS receiver can send a position calculation via the cellular transceiver.
- 13. The communications system of claim 12, wherein the position calculation is at least one pseudorange.
- 14. The communications system of claim 12, wherein the position calculation is raw GPS data.
- 15. The communications system of claim 12, wherein the position calculation is a determined position of the GPS receiver that is co-located with the cellular telephone transceiver.
- 16. The communications system of claim 15, wherein the cellular telephone transceiver provides data to the GPS receiver.
- 17. The communications system of claim 16, wherein the provided data comprises ephemeris information.
- 18. The communications system of claim 16, wherein the provided data comprises time information.
- 19. The communications system of claim 16, wherein the provided data comprises coarse position information.
- 20. The communications system of claim 16, wherein the provided data is selected from a group comprising: time information, ephemeris information, and coarse position information.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority under 35 U.S.C. § 119(e) of U.S. Provisional Patent Application No. 60/227,674, filed Aug. 24, 2000, entitled “METHOD AND APPARATUS FOR ELMINATING AUTO-CORRELATION OR CROSS-CORRELATION IN WEAK CDMA SIGNALS,” by Gregory B. Turetzky, et al., which application is incorporated by reference herein.
[0002] This application is also related to the following:
[0003] U.S. patent application Ser. No. ______, filed same date herewith, entitled “APPARATUS FOR REDUCING AUTO-CORRELATION OR CROSS-CORRELATION IN WEAK CDMA SIGNALS,” by Gregory B. Turetzky, et al.;
[0004] U.S. patent application Ser. No. ______, filed same date herewith, entitled “LOCATION SERVICES SYSTEM THAT REDUCES AUTO-CORRELATION OR CROSS-CORRELATION IN WEAK SIGNALS,” by Gregory B. Turetzky, et al;
[0005] U.S. patent application Ser. No. ______, filed same date herewith, entitled “METHOD FOR REDUCING AUTO-CORRELATION OR CROSS-CORRELATION IN WEAK SIGNALS,” by Gregory B. Turetzky, et al.;
[0006] U.S. patent application Ser. No. ______, filed same date herewith, entitled “DEAD RECKONING SYSTEM THAT REDUCES AUTO-CORRELATION OR CROSS-CORRELATION IN WEAK SIGNAL ENVIRONMENTS,” by Gregory B. Turetzky, et al; which applications are all incorporated by reference herein.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60227674 |
Aug 2000 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09910404 |
Jul 2001 |
US |
Child |
10712789 |
Nov 2003 |
US |