IP Library Granted Patent US 9,008,155
Granted Patent B2
US 9,008,155 · App. 14/290,449 · Granted Apr 14, 2015

Reacquisition method of a CDMA modulated satellite signals and receiving apparatus implementing the method

Inventor: Domenico Di Grazia (Cesa, IT)
Assignee: STMicroelectronics S.r.l.
G01S19/30H04B1/7075H04B1/709
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Quick Facts
Patent No.
US 9,008,155
App. No.
14/290,449
Granted
Apr 14, 2015
Kind
B2
Abstract

Acquiring a satellite signal, by, receiving a CDMA-modulated signal; generating a plurality of CDMA-type test signals comprising a reference test signal having a first chip duration, and a plurality of test signals delayed/anticipated of a corresponding time offset from the respective test reference signal, less than the chip duration; calculating correlations between the CDMA-modulated signal and the plurality of test signals for obtaining a plurality of correlation results; selecting, based on the correlation results, acquisition parameters associated to a candidate satellite signal; acquiring or rejecting the acquisition parameters selected based on the correlation results.

Claims (73)

1. A method, comprising:

receiving a CDMA-modulated signal;

generating a plurality of CDMA-type test signals including a reference test signal having a chip duration, and a plurality of delayed/anticipated test signals offset from the reference test signal by less than the chip duration;

generating a plurality of correlation results between the CDMA-modulated signal and respective CDMA-type test signals of the plurality of CDMA-type test signals;

selecting one of the plurality of CDMA-type test signals based on the plurality of correlation results; and

determining whether to accept one or more acquisition parameters associated with the selected CDMA-type test signal based on the plurality of correlation results.

2. The method of claim 1 wherein determining whether to accept one or more acquisition parameters comprises:

analyzing a maximum correlation result and minimum correlation result of said plurality of correlation results.

3. The method of claim 1 wherein generating the plurality of the delayed/anticipated test signals comprises:

generating a first delayed test signal and a first anticipated test signal, respectively delayed/anticipated with respect to the reference test signal by a first offset.

4. The method of claim 3 wherein generating the plurality of delayed/anticipated test signals comprises:

generating a second delayed test signal, and a second anticipated test signal, respectively delayed/anticipated with respect to the reference test signal by a second offset less than the chip duration and greater than the first offset.

5. The method of claim 2 , comprising:

calculating a ratio between the maximum correlation result and the minimum correlation result of said plurality of correlations results; and

determining whether to accept one or more acquisition parameters based on said ratio.

6. The method of claim 5 , comprising:

comparing said ratio with a first discrimination value; and

determining whether to accept one or more acquisition parameters based on the comparison of the ratio with the first discrimination value.

7. The method of claim 2 , comprising:

comparing said maximum correlation result with a first threshold; and

when the maximum correlation result exceeds the first threshold, identifying one or more parameters of the CDMA-type test signal associated with the maximum correlation result as candidate acquisition parameters.

8. The method of claim 6 , comprising, when said ratio is greater than the first discrimination value:

generating an indication of a noise condition when a distribution of the maximum correlation result and the minimum correlation result among the plurality of CDMA-type test signals is consistent with a noise condition; and

identifying one or more parameters of the CDMA-type test signal associated with the maximum correlation result as candidate acquisition parameters when the distribution of the maximum correlation result and the minimum correlation result among the plurality of CDMA-type test signals is inconsistent with a noise condition.

9. The method of claim 6 , comprising, when said ratio is less than the first discrimination value:

comparing said ratio with a second discrimination value less than said first discrimination value;

generating a filter activation signal when the ratio is greater than the second discrimination value; and

rejecting the one or more acquisition parameters when the ratio is less than the second discrimination value.

10. The method of claim 1 , comprising using accepted acquisition parameters in signal source tracking.

11. The method of claim 1 wherein generating the plurality of correlation results comprises:

multiplying the CDMA-modulated signal by one of said test signals to obtain a multiplication digital signal; and

integrating the multiplication digital signal to obtain one of said correlation results.

12. The method of claim 11 , wherein said integration comprises at least one of broad band integration and narrow band integration.

13. The method of claim 3 , comprising generating the reference test signal based on CDMA parameters estimated by an estimation module.

14. The method of claim 3 , comprising generating the reference test signal based on CDMA parameters obtained by a satellite signal acquisition module.

15. A system, comprising:

an antenna configured to receive CDMA-modulated signals;

a receiver coupled to said antenna and configured to convert CDMA-modulated signals to a digital CDMA-modulated signals; and

an acquisition module coupled to the receiver and having:

a test signal generator configured to generate a plurality of CDMA-type test signals including a reference test signal having a first chip duration, and a plurality of delayed/anticipated test signals offset from the reference test signal by less than the chip duration;

a correlation module configured to generate a plurality of correlation results between the CDMA-modulated signal and respective CDMA-type test signals of the plurality of CDMA-type test signals;

a selection module configured to select one of the plurality of CDMA-type test signals based on the plurality of correlation results; and

a determining module configured to determining whether to accept one or more acquisition parameters associated with the selected CDMA-type test signal based on the plurality of correlation results.

16. The system of claim 15 wherein the acquisition module is configured to:

select, based on the correlation results, acquisition parameters associated to a candidate satellite signal; and

acquire or reject the candidate signal based on the correlation results.

17. The system of claim 16 wherein the acquisition module is configured to:

analyze a maximum and minimum result of said plurality of correlation results; and

acquire or reject the selected acquisition parameters based on the analysis of the maximum and minimum results.

18. A device, comprising:

a test signal generator configured to generate a plurality of CDMA-type test signals including a reference test signal having a first chip duration, and a plurality of delayed/anticipated test signals offset from the reference test signal by less than the chip duration;

a correlation module configured to generate a plurality of correlation results between a CDMA-modulated signal and respective CDMA-type test signals of the plurality of CDMA-type test signals;

a selection module configured to select one of the plurality of CDMA-type test signals based on the plurality of correlation results; and

a determining module configured to determining whether to accept one or more acquisition parameters associated with the selected CDMA-type test signal based on the plurality of correlation results.

19. The device of claim 18 wherein the determining module is configured to determine whether to accept the one or more acquisition parameters based on a maximum correlation result and minimum correlation result of said plurality of correlation results.

20. The device of claim 19 wherein the determining module is configured to:

calculate a ratio between the maximum correlation result and the minimum correlation result of said plurality of correlations results; and

determining whether to accept one or more acquisition parameters based on said ratio.

21. The device of claim 20 wherein the determining module is configured to:

compare said ratio with a first discrimination value; and

determine whether to accept one or more acquisition parameters based on the comparison of the ratio with the first discrimination value.

22. The device of claim 21 wherein the determining module is configured to,

when said ratio is greater than the first discrimination value:

generate an indication of a noise condition when a distribution of the maximum correlation result and the minimum correlation result among the plurality of CDMA-type test signals is consistent with a noise condition; and

identify one or more parameters of the CDMA-type test signal associated with the maximum correlation result as candidate acquisition parameters when the distribution of the maximum correlation result and the minimum correlation result among the plurality of CDMA-type test signals is inconsistent with a noise condition.

23. The device of claim 21 wherein the determining module is configured to,

when said ratio is less than the first discrimination value:

compare said ratio with a second discrimination value less than said first discrimination value;

generate a filter activation signal when the ratio is greater than the second discrimination value; and

reject the one or more acquisition parameters when the ratio is less than the second discrimination value.

24. The device of claim 19 wherein the determining module is configured to:

compare said maximum correlation result with a first threshold; and

when the maximum correlation result exceeds the first threshold, identify one or more parameters of the CDMA-type test signal associated with the maximum correlation result as candidate acquisition parameters.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2022
From: STMICROELECTRONICS S.R.L.
To: STMICROELECTRONICS INTERNATIONAL N.V.
Reel/Frame 060301/0355 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2014
From: DI GRAZIA, DOMENICO
To: STMICROELECTRONICS S.R.L.
Reel/Frame 033289/0131 →
Priority Claims (1)
IT MI2013A0885 · May 30, 2013 · national
Continuity (1)
Related Publication 20150049791A1 · Feb 19, 2015