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公开(公告)号:US20180330544A1
公开(公告)日:2018-11-15
申请号:US15590889
申请日:2017-05-09
Applicant: A9.com, Inc.
Inventor: Nicholas Corso , Michael Patrick Cutter , Yu Lou , Sean Niu , Shaun Michael Post , Colin Jon Taylor , Mark Scott Waldo
CPC classification number: G06T19/006 , G06K9/00671 , G06Q30/0623 , G06Q30/0643
Abstract: Systems and methods for a markerless approach to displaying an image of a virtual object in an environment are described. A computing device is used to capture an image of a real-world environment; for example including a feature-rich planar surface. One or more virtual objects which do not exist in the real-world environment are displayed in the image, such as by being positioned in a manner that they appear to be resting on the planar surface, based at least on a sensor bias value and scale information obtained by capturing multiple image views of the real-world environment.
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公开(公告)号:US10733801B2
公开(公告)日:2020-08-04
申请号:US16384059
申请日:2019-04-15
Applicant: A9.com, Inc.
Inventor: Nicholas Corso , Michael Patrick Cutter , Yu Lou , Sean Niu , Shaun Michael Post , Colin Jon Taylor , Mark Scott Waldo
Abstract: Systems and methods for a markerless approach to displaying an image of a virtual object in an environment are described. A computing device is used to capture an image of a real-world environment; for example including a feature-rich planar surface. One or more virtual objects which do not exist in the real-world environment are displayed in the image, such as by being positioned in a manner that they appear to be resting on the planar surface, based at least on a sensor bias value and scale information obtained by capturing multiple image views of the real-world environment.
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公开(公告)号:US10339714B2
公开(公告)日:2019-07-02
申请号:US15590889
申请日:2017-05-09
Applicant: A9.com, Inc.
Inventor: Nicholas Corso , Michael Patrick Cutter , Yu Lou , Sean Niu , Shaun Michael Post , Colin Jon Taylor , Mark Scott Waldo
Abstract: Systems and methods for a markerless approach to displaying an image of a virtual object in an environment are described. A computing device is used to capture an image of a real-world environment; for example including a feature-rich planar surface. One or more virtual objects which do not exist in the real-world environment are displayed in the image, such as by being positioned in a manner that they appear to be resting on the planar surface, based at least on a sensor bias value and scale information obtained by capturing multiple image views of the real-world environment.
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公开(公告)号:US10762702B1
公开(公告)日:2020-09-01
申请号:US16015997
申请日:2018-06-22
Applicant: A9.com, Inc.
Inventor: Arnab Dhua , Xing Zhang , Karl Hillesland , Himanshu Arora , Nicholas Corso , Brian Graham , Jesse Chang , Jason Canada
Abstract: A complex three-dimensional virtual representation of an object can be rendered. Virtual images can be captured representing a plurality of views of the complex virtual representation. The virtual images can be converted into binary masks depicting the object pixels and non-object pixels in the virtual images. The binary masks can be used to create a three-dimensional representation of the object having lower complexity than the first three-dimensional virtual representation of the object. In embodiments, the low complexity three-dimensional virtual representation of the object and the virtual images are sent to a mobile device to render a low payload representation of the object on the mobile device.
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公开(公告)号:US20190236846A1
公开(公告)日:2019-08-01
申请号:US16384059
申请日:2019-04-15
Applicant: A9.com, Inc.
Inventor: Nicholas Corso , Michael Patrick Cutter , Yu Lou , Sean Niu , Shaun Michael Post , Colin Jon Taylor , Mark Scott Waldo
Abstract: Systems and methods for a markerless approach to displaying an image of a virtual object in an environment are described. A computing device is used to capture an image of a real-world environment; for example including a feature-rich planar surface. One or more virtual objects which do not exist in the real-world environment are displayed in the image, such as by being positioned in a manner that they appear to be resting on the planar surface, based at least on a sensor bias value and scale information obtained by capturing multiple image views of the real-world environment.
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