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US Patent 12135380 Method and system for calibrating a system parameter

Patent 12135380 was granted and assigned to Focal Point Positioning Ltd. on November, 2024 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Focal Point Positioning Ltd.
Focal Point Positioning Ltd.
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Current Assignee
Focal Point Positioning Ltd.
Focal Point Positioning Ltd.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
121353800
Patent Inventor Names
Robert Mark Crockett0
Ramsey Faragher0
Nicolas Couronneau0
Date of Patent
November 5, 2024
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Patent Application Number
179509210
Date Filed
September 22, 2022
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Patent Citations
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US Patent 6931055 Signal detector employing a doppler phase correction system
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US Patent 6952440 Signal detector employing a Doppler phase correction system
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US Patent 7030814 System and method to estimate the location of a receiver in a multi-path environment
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US Patent 7359719 Radio positioning systems
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US Patent 7440493 Multi-path detection method for CDMA receivers
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US Patent 7453961 Methods and apparatus for detection of signal timing
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US Patent 7456785 Navigation signal differential acquisition method and systems therefor
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US Patent 6850557 Signal detector and method employing a coherent accumulation system to correlate non-uniform and disjoint sample segments
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...
Patent Primary Examiner
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Vladimir Magloire
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CPC Code
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G01S 19/25
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G01S 19/05
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G01S 19/015
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G01S 19/37
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G01S 19/30
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G01S 19/26
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G01S 19/47
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G01S 19/22
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Patent abstract

A method for performing in a positioning, navigation, tracking, frequency-measuring, or timing system is provided. The method comprises: providing first and second estimates of at least one system parameter during a first time period, wherein the at least one system parameter has a true value and/or true evolution over time during the first time period; providing a local signal; receiving, at a receiver, a signal from a remote source; providing a correlation signal by correlating the local signal with the received signal; providing amplitude and/or phase compensation of at least one of the local signal, the received signal and the correlation signal based on each of the first and second estimates so as to provide first and second amplitude-compensated and/or phase-compensated correlation signals corresponding to the first and second estimates of the at least one system parameter during the first time period, and; determining which of the first and second estimates is nearer the true value and/or true evolution over time of the at least one system parameter during the first time period, based on a comparison between the first and second amplitude-compensated and/or phase-compensated correlation signals. A computer readable medium and system are also disclosed.

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