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US Patent 10088573 Navigation system using spreading codes based on pseudo-random noise sequences

Patent 10088573 was granted and assigned to European Space Agency on October, 2018 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Current Assignee
European Space Agency
European Space Agency
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10088573
Date of Patent
October 2, 2018
Patent Application Number
14238813
Date Filed
August 16, 2011
Patent Citations Received
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US Patent 10715207 System and method for demodulating code shift keying data utilizing correlations with combinational PRN codes generated for different bit positions
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US Patent 10742258 System and method for demodulating code shift keying data utilizing correlations with combinational PRN codes generated for different bit positions
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US Patent 10742257 System and method for demodulating code shift keying data from a satellite signal utilizing a binary search
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US Patent 11012110 System and method for demodulating code shift keying data from a satellite signal utilizing a binary search
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US Patent 10784922 System and method for demodulating code shift keying data from a satellite signal utilizing a binary search
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US Patent 10554247 System and method for demodulating code shift keying data from a satellite signal utilizing a binary search
‌
US Patent 10554248 System and method for demodulating code shift keying data utilizing correlations with combinational PRN codes generated for different bit positions
Patent Primary Examiner
‌
Bernarr E Gregory
Patent abstract

One embodiment of the invention provides a receiver for use in a navigation system comprising multiple transmitters. Each transmitter transmits a positioning signal comprising a pseudo-random noise (PRN) sequence corresponding to the respective transmitter. The receiver comprises a code module for supplying multiple PRN sequences corresponding to the respective multiple transmitters; and a correlator for correlating the PRN sequences supplied by the code module with an incoming signal. The multiple PRN sequences are based on a single Sidelnikov/Lempel/Cohn/Eastman (SLCE) generative sequence uSLCE, and each of said multiple PRN sequences, denoted ui satisfies the equation: ui=uSLCE⊕TiuSLCE, where ⊕ indicates element by element binary XOR addition, and Ti indicates a cyclic shift of i chips.

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