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US Patent 12022277 Method for generating customized spatial audio with head tracking

Patent 12022277 was granted and assigned to Creative technology on June, 2024 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Creative technology
Creative technology
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Current Assignee
Creative technology
Creative technology
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
120222770
Patent Inventor Names
Teck Chee Lee0
Toh Onn Desmond Hii0
Mark Anthony Davies0
Edwin Tomboza0
Geith Mark Benjamin Leslie0
Date of Patent
June 25, 2024
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Patent Application Number
183642610
Date Filed
August 2, 2023
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Patent Citations
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US Patent 9584946 Audio diarization system that segments audio input
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US Patent 9602947 Apparatus and a method for processing audio signal to perform binaural rendering
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US Patent 10966046 Spatial repositioning of multiple audio streams
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US Patent 10225682 System and a processing method for customizing audio experience
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US Patent 7555354 Method and apparatus for spatial reformatting of multi-channel audio content
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US Patent 7840019 Estimation of head-related transfer functions for spatial sound representation
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US Patent 7936887 Personalized headphone virtualization
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US Patent 9030545 Systems and methods for determining head related transfer functions
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Patent Primary Examiner
Paul Kim
Paul Kim
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CPC Code
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H04R 3/00
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H04R 5/033
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H04R 5/04
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G10L 21/0208
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G06F 3/012
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G06V 10/752
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H04S 2420/01
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H04S 2400/11
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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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