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公开(公告)号:US10594937B2
公开(公告)日:2020-03-17
申请号:US16231448
申请日:2018-12-22
Applicant: Amazon Technologies, Inc.
Inventor: Scott Raymond Harris , Ishay Kamon , Joshua John Watson
Abstract: An aerial vehicle may include a first sensor, such as a digital camera, having a lens or other component that includes a second sensor mounted thereto. Information or data, such as digital images, captured using the second sensor may be used to determine or predict motion of the lens, which may include components of translational and/or rotational motion. Once the motion of the lens has been determined or predicted, such motion may be used to stabilize information or data, such as digital images, captured using the first sensor, according to optical or digital stabilization techniques. Where operations of the first sensor and the second sensor are synchronized, motion of the second sensor may be modeled based on information or data captured thereby, and imputed to the first sensor.
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公开(公告)号:US20190149735A1
公开(公告)日:2019-05-16
申请号:US16231448
申请日:2018-12-22
Applicant: Amazon Technologies, Inc.
Inventor: Scott Raymond Harris , Ishay Kamon , Joshua John Watson
Abstract: An aerial vehicle may include a first sensor, such as a digital camera, having a lens or other component that includes a second sensor mounted thereto. Information or data, such as digital images, captured using the second sensor may be used to determine or predict motion of the lens, which may include components of translational and/or rotational motion. Once the motion of the lens has been determined or predicted, such motion may be used to stabilize information or data, such as digital images, captured using the first sensor, according to optical or digital stabilization techniques. Where operations of the first sensor and the second sensor are synchronized, motion of the second sensor may be modeled based on information or data captured thereby, and imputed to the first sensor.
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公开(公告)号:US11493938B1
公开(公告)日:2022-11-08
申请号:US16578256
申请日:2019-09-20
Applicant: Amazon Technologies, Inc.
Inventor: Scott Raymond Harris , Peter Joseph Williams
Abstract: Image data is used to determine wind speed and wind direction during takeoff and landing by an unmanned aerial vehicle (UAV). The flight data, including image data, may be received using sensors onboard the UAV and/or the flight data may be received from other sources, such as nearby anemometer, cameras, other UAVs, other vehicles, and/or local weather stations. Machine learning models may train using the flight data gathered by the UAVs to determine the wind velocity based on image data. The UAV may adjust flight control settings to generate side forces to overcome the predicted wind velocity.
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公开(公告)号:US11238603B2
公开(公告)日:2022-02-01
申请号:US16886328
申请日:2020-05-28
Applicant: Amazon Technologies, Inc.
Inventor: Scott Raymond Harris , Barry James O'Brien , Joshua John Watson
Abstract: This disclosure describes a configuration of an aerial vehicle, such as an unmanned aerial vehicle (“UAV”), that includes a plurality of cameras that may be selectively combined to form a stereo pair for use in obtaining stereo images that provide depth information corresponding to objects represented in those images. Depending on the distance between an object and the aerial vehicle, different cameras may be selected for the stereo pair based on the baseline between those cameras and a distance between the object and the aerial vehicle. For example, cameras with a small baseline (close together) may be selected to generate stereo images and depth information for an object that is close to the aerial vehicle. In comparison, cameras with a large baseline may be selected to generate stereo images and depth information for an object that is farther away from the aerial vehicle.
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公开(公告)号:US10212346B2
公开(公告)日:2019-02-19
申请号:US15177194
申请日:2016-06-08
Applicant: Amazon Technologies, Inc.
Inventor: Scott Raymond Harris , Ishay Kamon , Joshua John Watson
Abstract: An aerial vehicle may include a first sensor, such as a digital camera, having a lens or other component that includes a second sensor mounted thereto. Information or data, such as digital images, captured using the second sensor may be used to determine or predict motion of the lens, which may include components of translational and/or rotational motion. Once the motion of the lens has been determined or predicted, such motion may be used to stabilize information or data, such as digital images, captured using the first sensor, according to optical or digital stabilization techniques. Where operations of the first sensor and the second sensor are synchronized, motion of the second sensor may be modeled based on information or data captured thereby, and imputed to the first sensor.
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公开(公告)号:US09994316B1
公开(公告)日:2018-06-12
申请号:US15381601
申请日:2016-12-16
Applicant: Amazon Technologies, Inc.
Inventor: Amir Navot , Scott Raymond Harris , Daniel Buchmueller
CPC classification number: B64C39/024 , B64C39/02 , B64C2201/024 , B64C2201/027 , B64C2201/127 , B64C2201/141 , B64C2201/145 , B64D45/00 , B64D2045/0085 , G01C21/005 , G01C23/00 , G05D1/0088 , G05D1/0202 , G05D1/0808 , H04L67/12
Abstract: Described are methods and apparatuses for synchronizing two or more sensors of an UAV. In the implementations described, a synchronization event is performed such that identifiable signals of the synchronization event can be collected by each sensor of the UAV. The synchronization event may be generated by a synchronization event component that generates multiple output signals (e.g., audio, visual, and physical) at approximately the same time so that different sensors can each collect and store at least one of the output signals. The collected signals are then compared and the sensors are adjusted to align the signals.
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公开(公告)号:US09984579B1
公开(公告)日:2018-05-29
申请号:US15195695
申请日:2016-06-28
Applicant: Amazon Technologies, Inc.
Inventor: Scott Raymond Harris , Barry James O'Brien , Jason Leonard Peacock , Joshua John Watson , Scott Michael Wilcox
IPC: G06G7/70 , G08G5/00 , G06K9/00 , B64C39/02 , B64D47/06 , G05D1/10 , G06Q50/28 , H04L12/58 , H04W4/02
CPC classification number: G08G5/0069 , B64C39/024 , B64C2201/128 , B64D47/06 , G05D1/101 , G06K9/00369 , G06Q50/28 , H04L51/20 , H04W4/021
Abstract: An unmanned aerial vehicle (UAV) may provide an approach notification to enable people to understand and interpret actions by the UAV, such as an intention to land or deposit a package at a particular location. The UAV may communicate a specific intention of the UAV and/or communicate a request to a person. The UAV may monitor the person or data signals for a response from the person, such as movement of the person that indicates a response. The UAV may be equipped with hardware and/or software configured to provide notifications and/or exchange information with a person at or near a destination. The UAV may include lights, a speaker, and possibly a projector to enable the UAV to project information and/or text on a surface. The UAV may control a moveable mechanism to “point” toward the person, at an object, or in another direction.
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公开(公告)号:US09764829B1
公开(公告)日:2017-09-19
申请号:US14734823
申请日:2015-06-09
Applicant: Amazon Technologies, Inc.
Inventor: Brian C. Beckman , Michael John Elzinga , Scott Raymond Harris , Louis LeRoi LeGrand, III , Frederik Schaffalitzky
CPC classification number: B64C27/22 , B64C15/14 , B64C27/08 , B64C27/12 , B64C27/52 , B64C29/0033 , B64C39/024 , B64C2201/027 , B64C2201/104 , B64C2201/108 , B64C2201/128 , B64C2201/141
Abstract: A configuration of a multirotor aircraft that will facilitate enhanced yaw control includes one or more adjustable members that will twist the frame of the multirotor aircraft, thereby adjusting the orientation of the motors and propellers and enhancing the yaw control of the multirotor aircraft. In some implementations, the adjustable member(s) are passive and twist in response to differential thrusts generated by the propellers. In other implementations, the adjustable members are active and twist in response to a yaw command from the multirotor aircraft control system.
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公开(公告)号:US11377232B2
公开(公告)日:2022-07-05
申请号:US16525271
申请日:2019-07-29
Applicant: Amazon Technologies, Inc.
Inventor: Scott Raymond Harris , Barry James O'Brien , Joshua John Watson
IPC: B64D47/08 , H04N5/33 , G08G5/04 , B64C39/02 , H04N13/239 , G06T7/593 , G06K9/00 , H04N13/271 , H04N13/25 , H04N13/243 , G06V20/13 , G06V10/10 , G06V20/10
Abstract: Described is an imaging component for use by an unmanned aerial vehicle (“UAV”) for object detection. As described, the imaging component includes one or more cameras that are configured to obtain images of a scene using visible light that are converted into a depth map (e.g., stereo image) and one or more other cameras that are configured to form images, or thermograms, of the scene using infrared radiation (“IR”). The depth information and thermal information are combined to form a representation of the scene based on both depth and thermal information.
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公开(公告)号:US10854096B1
公开(公告)日:2020-12-01
申请号:US16039469
申请日:2018-07-19
Applicant: Amazon Technologies, Inc.
Inventor: Scott Raymond Harris , Benjamin Griffin Novak , Joshua John Watson
Abstract: Described are systems, methods, and apparatus for detecting objects within a distance of an aerial vehicle, and developing a three-dimensional model or representation of those objects. Rather than attempting to use stereo imagery to determine distances and/or depth of objects, the described implementations utilize range-gating, or time-gating, and the known position of the aerial vehicle to develop a three-dimensional representation of objects. For example, when the aerial vehicle is at a first position it may use range-gating to detect an object at a defined distance from the vehicle. The aerial vehicle may then alter its position and use range-gating to detect an object that is the defined distance from the vehicle at the new position. This may be done at several different positions and the resulting information and aerial vehicle position information combined to form a three-dimensional representation of those objects.
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