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US Patent 10390171 Method for generating customized spatial audio with head tracking

Patent 10390171 was granted and assigned to Creative technology on August, 2019 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Creative technology
Creative technology
Current Assignee
Creative technology
Creative technology
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10390171
Date of Patent
August 20, 2019
Patent Application Number
16136211
Date Filed
September 19, 2018
Patent Citations Received
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US Patent 12114147 Multi-channel speech compression system and method
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US Patent 11950081 Multi-channel speech compression system and method
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US Patent 11997469 Multi-channel speech compression system and method
0
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US Patent 11468663 Method for generating a customized/personalized head related transfer function
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US Patent 11051122 System and a processing method for customizing audio experience
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US Patent 11290504 Method and system for sharing an output device between multimedia devices to transmit and receive data
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US Patent 11716587 System and a processing method for customizing audio experience
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US Patent 11757950 Method and system for sharing an output device between multimedia devices to transmit and receive data
...
Patent Primary Examiner
Paul Kim
Paul Kim
Patent abstract

A headphone for spatial audio rendering includes a first database having an impulse response pair corresponding to a reference speaker location. A head sensor provides head orientation information to a second database having rotation filters, the filters corresponding to different azimuth and elevation positions relative to the reference speaker location. A digital signal processor combines the rotation filters with the impulse response pair to generate an output binaural audio signal to transducers of the headphone. Efficiencies in creating impulse response or HRTF databases are achieved by sampling the impulse response less frequently than in conventional methods. This sampling at coarser intervals reduces the number of data measurements required to generate a spherical grid and reduces the time involved in capturing the impulse responses. Impulse responses for data points falling between the sampled data points are generated by interpolating in the frequency domain.

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