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US Patent 9791551 Vehicular radar system with self-interference cancellation

Patent 9791551 was granted and assigned to Uhnder, Inc. on October, 2017 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
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Uhnder, Inc.
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Current Assignee
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Uhnder, Inc.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
97915510
Patent Inventor Names
Curtis Davis0
Aria Eshraghi0
Jean P. Bordes0
Murtaza Ali0
Paul W. Dent0
Raghunath K. Rao0
Date of Patent
October 17, 2017
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Patent Application Number
154963140
Date Filed
April 25, 2017
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Patent Citations Received
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US Patent 12078748 Method and system for intefrence management for digital radars
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US Patent 12025727 Radar ranging
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US Patent 11828839 Method and apparatus for operating radar
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US Patent 11668815 Systems and methods for detecting objects
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US Patent 11681017 Method and apparatus for mitigation of low frequency noise in radar systems
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US Patent 11977178 Multi-chip synchronization for digital radars
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US Patent 11656320 Method and apparatus for radar waveforms using orthogonal sequence sets
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US Patent 11854073 On-demand rental of electric vehicles
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...
Patent Primary Examiner
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Peter M Bythrow
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Patent abstract

A digital FMCW radar is described that simultaneously transmits and receives digitally frequency modulated signals using multiple transmitters and multiple receivers and associated antennas. Several sources of nearby spillover from transmitters to receivers that would otherwise degrade receiver performance are subtracted by a cancellation system in the analog radio frequency domain that adaptively synthesizes an analog subtraction signal based on residual spillover measured by a correlator operating in the receivers' digital signal processing domains and based on knowledge of the transmitted waveforms. The first adaptive cancellation system achieves a sufficient reduction of transmit-receive spillover to avoid receiver saturation or other non-linear effects, but is then added back in to the signal path in the digital domain after analog-to-digital conversion so that spillover cancellation can also operate in the digital signal processing domain to remove deleterious spillover components.

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