发明授权
US07516898B2 Digital image capturing and processing system for producing and projecting a complex of coplanar illumination and imaging planes into a 3D imaging volume and controlling illumination control parameters in said system using the detected motion and velocity of object
失效
数字图像捕获和处理系统,用于产生和投影共面照明和成像平面的复合物到3D成像体积中并且使用检测到的物体的运动和速度来控制所述系统中的照明控制参数
- 专利标题: Digital image capturing and processing system for producing and projecting a complex of coplanar illumination and imaging planes into a 3D imaging volume and controlling illumination control parameters in said system using the detected motion and velocity of object
- 专利标题(中): 数字图像捕获和处理系统,用于产生和投影共面照明和成像平面的复合物到3D成像体积中并且使用检测到的物体的运动和速度来控制所述系统中的照明控制参数
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申请号: US11711907申请日: 2007-02-27
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公开(公告)号: US07516898B2公开(公告)日: 2009-04-14
- 发明人: C. Harry Knowles , Xiaoxun Zhu , Timothy Good , Tao Xian , Michael Veksland , Anatoly Kotlarsky , John Furlong , Mark Hernandez , Nicola Ciarlante , Mark Schmidt
- 申请人: C. Harry Knowles , Xiaoxun Zhu , Timothy Good , Tao Xian , Michael Veksland , Anatoly Kotlarsky , John Furlong , Mark Hernandez , Nicola Ciarlante , Mark Schmidt
- 申请人地址: US NJ Blackwood
- 专利权人: Metrologic Instruments, Inc.
- 当前专利权人: Metrologic Instruments, Inc.
- 当前专利权人地址: US NJ Blackwood
- 代理商 Thomas J. Perkowski, Esq., P.C.
- 主分类号: G06K7/10
- IPC分类号: G06K7/10
摘要:
A digital image capturing and processing system comprising a plurality of coplanar illumination and imaging stations for producing a plurality of coplanar linear illumination and imaging planes which intersect within a 3D imaging volume defined relative to an imaging window. Each station includes an array of planar illumination modules (PLIMs) for producing at least one substantially planar illumination beam (PLIB), and a linear image detection array having a field of view (FOV) on the linear image detection array and extending in substantially the same plane as the PLIB, to provide a coplanar illumination and imaging plane (PLIB/FOV). The PLIB/FOV is projected through the 3D imaging volume, for capturing linear (1D) digital images of an object passing therethrough, for subsequent processing and recognition of information graphically represented in the linear digital images. Each station also employs a local control subsystem for controlling at least one illumination parameter associated with the production of the PLIB, in response to the motion and velocity of objects detected within the 3D imaging volume during system operation. By virtue of the present invention, it is possible to optimally illuminate objects based on the velocity at which such objects pass through the 3D imaging volume, at point-of-sale (POS) stations and like retail environments. Such illumination control ensures the capture of high quality digital images of objects, resulting in improved image processing.
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