Claims
- 1. A method for repeater-screening a forward link pilot signal in a mobile station, comprising:
monitoring the forward link pilot signal in the mobile station over a time period to estimate a time delay during said time period; and responsive to said estimated time delay during said time period, identifying whether or not said forward link signal has been repeated.
- 2. The method of claim 1, wherein the identifying step comprises correlating said time delay estimate during said time period with a set of known time delay watermarks to identify repeater information.
- 3. The method of claim 2, wherein the identifying step further comprises identifying a unique repeater ID.
- 4. The method of claim 1, wherein the monitoring step includes estimating said time delay during said time period using a time tracking loop.
- 5. The method of claim 1, further comprising
performing an AFLT search to detect and measure an earliest time-of-arrival of the forward link signal; and performing a repeater search on the forward link signal, including said step of monitoring the forward link signal to estimate said time delay during said time period.
- 6. A method for determining position location of a mobile station using forward link pilot signals, including repeater-screening the forward link pilot signals to determine repeater information, the method comprising:
modulating a plurality of forward link signals at a repeater with a time-varying delay element to watermark repeater information thereon; receiving a plurality of forward link pilot signals in the mobile station, including taking pilot phase measurements therefrom; estimating a time delay of said plurality of forward link pilot signals over a period of time; performing repeater identification in the mobile station responsive to said time delay over a period of time to identify whether the forward link signal is repeated; determining if sufficient repeater-screened forward link pilot phase measurements have been obtained for position location determination; if sufficient repeater-screened forward link pilot phase measurements have not been obtained for position location determination, then repeating said steps of estimating a time delay and performing repeater identification on one or more other received forward link signals until sufficient repeater-screened pilot phase measurements have been obtained for position location determination; correcting said pilot phase measurements including substantially removing said estimated time delay from forward link signals identified as repeated; and providing pilot phase measurements and repeater information, if any, for the forward link signals to one of a position determining system and a position determining entity to determine the position of said mobile station.
- 7. The method of claim 6, wherein said step of performing repeater identification comprises correlating said time delay estimate with a set of known time delay watermarks to identify repeater information.
- 8. The method of claim 7, wherein said step of performing repeater identification further comprises identifying a unique repeater ID.
- 9. The method of claim 6, further comprising performing a GPS search prior to said step of estimating a time delay, in order to retrieve pseudo-range measurements.
- 10. The method of claim 9, further comprising performing a step of determining if sufficient GPS pseudo-range measurements have been obtained for position location purposes, prior to said step of estimating a time delay.
- 11. The method of claim 6, wherein said step of estimating a time delay includes estimating said time delay using a time tracking loop.
- 12. The method of claim 6, wherein said step of estimating a time delay includes estimating said time delay using a repeater searcher.
- 13. The method of claim 6, wherein
said step of estimating the time delay is done for active forward link pilot signals using time tracking loops concurrently with said step of receiving a plurality of forward link pilot signals, and said step of estimating a time delay one or more other received forward link signals is done using a repeater searcher.
- 14. The method of claim 13, further comprising performing a GPS search before said step of determining if sufficient repeater-screened forward link pilot phase measurements have been obtained for position location determination to retrieve pseudo-range measurements.
- 15. The method of claim 14, wherein said step of determining if sufficient repeater-screened forward link pilot phase measurements have been obtained for position location determination further includes determining if sufficient GPS pseudo-range and repeater-screened forward link pilot phase measurements have been obtained for position location.
- 16. A repeater for amplifying a forward link signal from a base station to a mobile station, the repeater comprising:
an amplifier for amplifying the forward link signal from the base station to the mobile station; and a time-varying delay element that modulates the forward link signal with an identifying time delay watermark as it passes through the repeater, wherein said watermark defines repeater information encoded by a time delay symbol sequence.
- 17. The repeater of claim 16 wherein said watermark includes M-ary encoding, wherein M represents an integer.
- 18. The repeater of claim 17, wherein said watermark comprises two-symbol 6-ary encoding.
- 19. The repeater of claim 16, wherein said watermark comprises a waveform designed to allow a mobile station to distinguish said watermark from naturally occurring time delay phenomenon.
- 20. The repeater of claim 19, wherein said naturally occurring time delay phenomenon is at least one of code Doppler and fat path.
- 21. The repeater of claim 19, wherein said waveform comprises a slope that is higher than naturally occurring time delay phenomenon.
- 22. The repeater of claim 19, wherein said waveform comprises an amplitude greater than naturally occurring time delay phenomenon.
- 23. The repeater of claim 19, wherein said waveform comprises a shape that is distinct from naturally occurring time delay phenomenon.
- 24. A mobile station for determining position location, including repeater-screening forward link signals to determine repeater information about the forward link signals, said mobile station comprising:
a receiver that receives a plurality of forward link pilot signals, including taking pilot phase measurements; a time delay estimator that estimates a time delay waveform on said plurality of forward link pilot signals; and a repeater identification system that receives said time delay waveforms, correlates said time delay waveforms with repeater information to identify repeated signals, and removes said time delay waveform from said pilot phase measurements of repeated FL signals before sending repeater information and pilot phase measurements to one of a position determining system and network position determining entity to determining the position of the mobile station.
- 25. The mobile station of claim 24, wherein said repeater identification system includes a correlator that correlates said time delay waveform estimate with a set of known time delay watermarks to identify repeater information.
- 26. The mobile station of claim 25, wherein said correlator correlates said time delay waveform estimate with a set of known time delay watermarks to identify a repeater ID.
- 27. The mobile station of claim 24, further comprising
a time tracking loop that tracks timing on said forward link signals, including said time delay estimator situated within said time tracking loop.
- 28. The mobile station of claim 24, further comprising:
a repeater searcher that re-searches received forward link pilot signals for a time delay waveform, including said time delay estimator situated within said repeater searcher.
- 29. The mobile station of claim 24, further comprising:
a time tracking loop that tracks timing on said forward link signals, including said time delay estimator situated within said time tracking loop; and a repeater searcher that re-searches one or more other received forward link pilot signals for a time delay waveform, including a second time delay estimator situated within said repeater searcher.
- 30. The mobile station of claim 24, further comprising a GPS receiver for receiving GPS signals.
REFERENCE TO RELATED APPLICATION
[0001] Priority is hereby claimed to U.S. Provisional Application No. ______, filed Feb. 24, 2003, entitled FORWARD LINK REPEATER FREQUENCY WATERMARKING SCHEME, which is incorporated by reference herein in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
|
60449774 |
Feb 2003 |
US |