Projector positioning

US9316890B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9316890-B2
Application numberUS-201213563941-A
CountryUS
Kind codeB2
Filing dateAug 1, 2012
Priority dateAug 1, 2012
Publication dateApr 19, 2016
Grant dateApr 19, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A method and apparatus is provided for identifying information to facilitate adjusting a projector's position to achieve a specified projected image on a projection surface. In an embodiment, a computing device comprising one or more sensors, which have a known spatial relationship with a projector, includes a position adjustment service configured to identify, based at least in part on the known spatial relationship between the one or more sensors and the projector, a current position of the projector relative to positions of a plurality of reference points that define a projection surface. The position adjustment service is further configured to determine a target position for the projector, determine differences between the current position of the projector and the target position for the projector, and perform one or more actions based upon the determined differences between the current position of the projector and the target position for the projector.

First claim

Opening claim text (preview).

What is claimed is: 1. A computing device comprising: one or more sensors that have a known spatial relationship with a projector; and a position adjustment service configured to: identify, based at least in part on the known spatial relationship between the one or more sensors and the projector, a current position of the projector relative to positions of a plurality of reference points that define a projection surface, determine a target position for the projector, determine one or more differences between the current position of the projector and the target position for the projector, perform one or more actions based upon the determined one or more differences between the current position of the projector and the target position for the projector, and retrieve information indicating a center of projection for the projector, wherein identifying the target position for the projector is based on the current position of the projector, and the information indicating the center of projection for the projector. 2. The computing device of claim 1 , wherein: the computing device is communicatively coupled to a display device; and the one or more actions comprise: formulating one or more instructions for adjusting the current position of the projector to the target position for the projector based, at least in part, on the determined one or more differences between the current position of the projector and the target position for the projector; and causing the one or more instructions to be displayed at the display device. 3. The computing device of claim 1 , wherein: the computing device is communicatively coupled to the projector; and the one or more actions comprise: formulating one or more instructions for adjusting the current position of the projector to the target position for the projector based, at least in part, on the determined one or more differences between the current position of the projector and the target position for the projector; capturing the one or more instructions in an instructions image; and causing the instructions image to be projected by the projector. 4. The computing device of claim 1 , wherein: the computing device is communicatively coupled to a projector position adjusting robot; and the one or more actions comprise instructing the projector position adjusting robot to adjust the current position of the projector to be the target position for the projector based, at least in part, on the determined one or more differences between the current position of the projector and the target position for the projector. 5. The computing device of claim 1 , wherein: the computing device further comprises a projector position adjusting robot; and the one or more actions comprise causing the projector position adjusting robot to adjust the current position of the projector to be the target position for the projector based, at least in part, on the determined one or more differences between the current position of the projector and the target position for the projector. 6. A computing device comprising: one or more sensors that have a known spatial relationship with a projector; and a position adjustment service configured to: identify, based at least in part on the known spatial relationship between the one or more sensors and the projector, a current position of the projector relative to positions of a plurality of reference points that define a projection surface, determine a target position for the projector, determine one or more differences between the current position of the projector and the target position for the projector, and perform one or more actions based upon the determined one or more differences between the current position of the projector and the target position for the projector; wherein the one or more sensors are embedded in a projector stand; and wherein the projector stand comprises a projector-stabilizing member configured to maintain the projector in the known spatial relationship with the one or more sensors. 7. A computing device comprising: one or more sensors that have a known spatial relationship with a projector; and a position adjustment service configured to: identify, based at least in part on the known spatial relationship between the one or more sensors and the projector, a current position of the projector relative to positions of a plurality of reference points that define a projection surface, determine a target position for the projector, determine one or more differences between the current position of the projector and the target position for the projector, and perform one or more actions based upon the determined one or more differences between the current position of the projector and the target position for the projector; wherein the target position comprises an optimal distance attribute that indicates an optimal distance between the projector and the projection surface; and wherein the position adjustment service is further configured to: retrieve projector information indicating: a maximum size of a projected image for the projector, and a certain distance between the projection surface and the projector for the maximum size of the projected image; calculate a bounding box for the projected image based, at least in part, on the positions of the plurality of reference points that define the projection surface; identify a target area, for the projected image, that is within the bounding box; wherein the target area is at most the maximum size of the projected image; and calculate the optimal distance attribute of the target position based, at least in part, on the target area for the projected image and the certain distance in the retrieved projector information. 8. The computing device of claim 7 , wherein the target position is a position at which a projected image from the projector has the largest possible size, which is less than a maximum size of a projected image for the projector and within the bounding box calculated, based, at least in part, on the positions of the plurality of reference points that define the projection surface. 9. One or more non-transitory computer-readable media storing instructions which, when processed by one or more processors, cause: a position adjustment service executing on a computing device to: identify, based at least in part on a known spatial relationship between one or more sensors and a projector, a current position of the projector relative to positions of a plurality of reference points that define a projection surface, determine a target position for the projector, determine one or more differences between the current position of the projector and the target position for the projector, perform one or more actions based upon the determined one or more differences between the current position of the projector and the target position for the projector, and retrieve information indicating a center of projection for the projector, wherein identifying the target position for the projector is based on the current position of the projector, and the information indicating the center of projection for the projector. 10. The one or more non-transitory computer-readable media of claim 9 , wherein: the computing device is communicatively coupled to a display device; and the one or more actions comprise: formulating one or more instructions for adjusting the current position of the projector to the target position for the projector based, at least in part, on the determined one or more differences between the current position of the projector and the target position for the projector; and causing the one or more instructions to be displ

Assignees

Inventors

Classifications

  • Geometric adjustment, e.g. keystone or convergence (optical or mechanical adjustment of convergence H04N9/317; using scanning means H04N3/22; optical or mechanical adjustments of projectors not peculiar to the presence of an electronic spatial light modulator G03B21/14) · CPC title

  • Housing details, e.g. position adjustments thereof · CPC title

  • G03B21/142Primary

    Adjusting of projection optics · CPC title

  • including sensor feedback · CPC title

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What does patent US9316890B2 cover?
A method and apparatus is provided for identifying information to facilitate adjusting a projector's position to achieve a specified projected image on a projection surface. In an embodiment, a computing device comprising one or more sensors, which have a known spatial relationship with a projector, includes a position adjustment service configured to identify, based at least in part on the kno…
Who is the assignee on this patent?
Motoyama Tetsuro, Shimizu Tomohito, Ricoh Co Ltd
What technology area does this patent fall under?
Primary CPC classification G03B21/142. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Apr 19 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).