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US Patent 11585889 Methods for radar coexistence

Patent 11585889 was granted and assigned to Qualcomm on February, 2023 by the United States Patent and Trademark Office.

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TimelineTable: Further ResourcesReferences
Is a
Patent
Patent

Patent attributes

Patent Applicant
Qualcomm
Qualcomm
Current Assignee
Qualcomm
Qualcomm
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11585889
Date of Patent
February 21, 2023
Patent Application Number
16512267
Date Filed
July 15, 2019
Patent Citations
‌
US Patent 10082562 Simultaneous object detection and data transfer with a vehicle radar
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US Patent 10048353 Interference cancellation in an FMCW radar
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US Patent 10736134 NCMA-based uplink communication method and device therefor
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US Patent 10855328 Interference suppression for multi-radar coexistence
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US Patent 11073598 Time synchronized radar transmissions
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US Patent 10451723 Signal processing apparatus of a continuous-wave (CW) radar sensing system
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US Patent 10620297 Radar methods and apparatus using in phased array communication systems
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US Patent 10718860 System and method to improve range accuracy in FMCW radar using FSK modulated chirps
Patent Citations Received
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US Patent 11994575 Frequency modulated continuous wave radar system with interference mitigation
8
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US Patent 11959996 Radar device
9
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US Patent 11917559 Time-averaged radio frequency (RF) exposure per antenna group
10
Patent Primary Examiner
‌
Erin F Heard
CPC Code
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G01S 7/2923
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G01S 13/36
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G01S 13/38
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G01S 13/40
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G01S 13/343
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G01S 7/288
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G01S 13/18
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G01S 7/4056
...

A method and apparatus for selecting frequency modulated continuous wave waveform parameters for multiple radar coexistence by a user equipment is described. The user equipment may transmit a radar waveform consisting of a number of chirps, with each chirp having a same duration. The user equipment may vary waveform parameters of the radar waveform for at least a subset of the number of chirp, where the waveform parameters may be chosen from a codebook comprising at least one codeword of parameters. Reflected radar waveforms are received and processed where the processing includes applying a fast time discrete Fourier transform to reflected radar waveforms to produce a one dimension peak in a time delay dimension for each reflected waveform; and applying a slow time discrete Fourier transform to the reflected radar waveforms, where peaks for the reflected waveforms are added.

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