Invention Grant
US09456172B2 System and method for correcting optical distortions when projecting 2D images onto 2D surfaces
有权
用于在将2D图像投影到2D表面上时校正光学失真的系统和方法
- Patent Title: System and method for correcting optical distortions when projecting 2D images onto 2D surfaces
- Patent Title (中): 用于在将2D图像投影到2D表面上时校正光学失真的系统和方法
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Application No.: US14405011Application Date: 2013-06-02
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Publication No.: US09456172B2Publication Date: 2016-09-27
- Inventor: Matan Naftali , Sharon Hornstein , Menashe Yehiel
- Applicant: MARADIN TECHNOLOGIES LTD.
- Applicant Address: IL Yoqne'am
- Assignee: MARADIN TECHNOLOGIES LTD.
- Current Assignee: MARADIN TECHNOLOGIES LTD.
- Current Assignee Address: IL Yoqne'am
- Agency: Browdy and Neimark, PLLC
- International Application: PCT/IL2013/050469 WO 20130602
- International Announcement: WO2013/179294 WO 20131205
- Main IPC: G03B21/00
- IPC: G03B21/00 ; H04N5/74 ; G03B21/14 ; G02B26/10 ; H04N9/31

Abstract:
A system for projecting 2D images, providing a computerized representation of a first, dense, grid of spatial 3D coordinates which respectively correspond to a set of time-points evenly distributed along a time-dimension with constant time-discretization; deriving a dense 2D representation of an image, whose coordinate pairs respectively correspond to said set of time-points; d. Defining a sparse 2D grid of second coordinate pairs, spaced such that distances between any two adjacent coordinate pairs along a row of said sparse 2D grid are constant; and finding, coordinate pairs closest to the second sparser grid to yield a third grid, and a laser controller to control the laser to project a digitally represented image, from said distance, timed to project pixels whose locations respectively correspond to the subset of uniformly distanced positions forming said third grid, thereby to prevent image distortion despite non-uniformity of micro-mirror's angular velocity.
Public/Granted literature
- US20150124174A1 SYSTEM AND METHOD FOR CORRECTING OPTICAL DISTORTIONS WHEN PROJECTING 2D IMAGES ONTO 2D SURFACES Public/Granted day:2015-05-07
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