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US Patent 10203405 Multitone radar with range determination and method of use

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Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
0
Patent Number
102034050
Patent Inventor Names
Kenneth I. Ranney0
Kyle A. Gallagher0
Anthony F. Martone0
Gregory J. Mazzaro0
Date of Patent
February 12, 2019
0
Patent Application Number
150937880
Date Filed
April 8, 2016
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Patent Citations Received
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US Patent 12117560 Radar-enabled sensor fusion
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US Patent 11506778 Synthetic aperture radar imaging apparatus and methods
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US Patent 11754703 Synthetic aperture radar imaging apparatus and methods
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US Patent 11360210 Multi-mode multi-input multi-output (MIMO) radar sensors
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US Patent 11385721 Application-based signal processing parameters in radar-based detection
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US Patent 11397255 Radar apparatus and method for operating a radar apparatus
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US Patent 11408976 Method and apparatus for detection of a metasurface
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US Patent 12085670 Advanced gaming and virtual reality control using radar
0
...
Patent Primary Examiner
‌
Timothy A Brainard
0
Patent abstract

Method for determining distance to target using a multitone nonlinear radar system comprising providing a transmitter that transmits a signal comprising at least two predetermined frequency components; receiving transmitted signal upon reflection from target; determining the phase relationships of the frequency components when signal strikes target; determining distance the signal has travelled to target based upon the phase relationship of the frequency signal components at the time of reflection from target; computing the distance to target. A system comprising a transmitter subsystem that transmits radar signal comprising at least two frequency components; a receiver subsystem configured to receive a return signal comprising intermodulation and harmonic products; at least one processor configured to extract frequency samples from the return signal within a frequency range, apply a window function to the extracted frequency samples and perform an inverse fast Fourier transform on the resulting function to create a range profile.

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