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    • 4. 发明申请
    • SPATIALLY MODIFYING POLARIZATION STATE OF LIGHT
    • 空间修正光的极化状态
    • US20130088688A1
    • 2013-04-11
    • US13805044
    • 2011-06-29
    • Steven Charles ReadJohn William
    • Steven Charles ReadJohn William
    • G02B27/26G03B21/14
    • G02B27/26G02B27/286G03B21/008G03B21/14G03B21/206H04N9/3167H04N9/3197H04N13/337H04N13/341H04N13/363
    • Systems and methods configured for outputting light having a polarization state distribution that is spatially uniform by applying a correction to, for example, a beam of light with a spatially uniform polarization state distribution that has been altered (unintentionally or otherwise) to become spatially non-uniform are described. A projection system can include an optical element and a polarization-altering device (PAD). The optical element can cause a polarization of light in the projection system to be spatially non-uniform. The PAD can change the polarization state distribution of the light spatially based on an amount of spatial non-uniformity on the light caused by the optical element and before the light enters the optical element. The projection system can output the light having a spatially uniform polarization state distribution.
    • 用于输出具有空间均匀的偏振状态分布的光的系统和方法,通过对具有空间均匀的偏振状态分布的光束施加校正,所述偏振状态分布已被改变(无意或否则) 描述了制服。 投影系统可以包括光学元件和偏振改变装置(PAD)。 光学元件可能导致投影系统中的光的偏振在空间上不均匀。 PAD可以基于由光学元件引起的光在光入射到光学元件之前的空间不均匀性的量来改变光的空间极化状态分布。 投影系统可以输出具有空间均匀偏振状态分布的光。
    • 7. 发明授权
    • Hybrid image decomposition and projection
    • 混合图像分解和投影
    • US09305384B2
    • 2016-04-05
    • US14238585
    • 2012-08-14
    • Weining TanSteven Charles Read
    • Weining TanSteven Charles Read
    • G06T11/60G06T5/00G06T3/00G06T11/00H04N9/31
    • H04N9/3185G06T3/0093G06T5/002G06T5/007G06T11/001G06T11/60H04N9/3147H04N9/3182
    • Hybrid image projection systems and methods can superimpose image components of an input image. An input image can be divided into smaller regions and at least one parameter of each region can be determined. The input image can be decomposed based on the parameter of each region into multiple, less correlated, orthogonal or quasi-orthogonal image components. Each projector can display respective image components so that the images projected may be optically superimposed on a screen. The superposition of orthogonal or quasi-orthogonal image components can result in superposition of images in an existing multi-projector image systems being more insensitive to inter-projector image misalignment. Superimposing orthogonal or quasi-orthogonal images can be used to avoid visible image degradation, and provide more robust image quality in a multiple projector system implementation.
    • 混合图像投影系统和方法可以叠加输入图像的图像分量。 可以将输入图像分割成更小的区域,并且可以确定每个区域的至少一个参数。 输入图像可以基于每个区域的参数分解为多个,较少相关的,正交的或准正交的图像分量。 每个投影仪可以显示相应的图像分量,使得投影的图像可以光学地叠加在屏幕上。 正交或准正交图像分量的叠加可以导致在现有的多投影图像系统中的图像的叠加对于投影机之间的图像失准更不敏感。 可以使用叠加正交或准正交图像来避免可见的图像劣化,并且在多投影仪系统实现中提供更加鲁棒的图像质量。
    • 8. 发明申请
    • Hybrid Image Decomposition and Protection
    • 混合图像分解和保护
    • US20140192076A1
    • 2014-07-10
    • US14238585
    • 2012-08-14
    • Weining TanSteven Charles Read
    • Weining TanSteven Charles Read
    • G06T11/60G06T5/00G06T3/00G06T11/00
    • H04N9/3185G06T3/0093G06T5/002G06T5/007G06T11/001G06T11/60H04N9/3147H04N9/3182
    • Hybrid image projection systems and methods can superimpose image components of an input image. An input image can be divided into smaller regions and at least one parameter of each region can be determined. The input image can be decomposed based on the parameter of each region into multiple, less correlated, orthogonal or quasi-orthogonal image components. Each projector can display respective image components so that the images projected may be optically superimposed on a screen. The superposition of orthogonal or quasi-orthogonal image components can result in superposition of images in an existing multi-projector image systems being more insensitive to inter-projector image misalignment. Superimposing orthogonal or quasi-orthogonal images can be used to avoid visible image degradation, and provide more robust image quality in a multiple projector system implementation.
    • 混合图像投影系统和方法可以叠加输入图像的图像分量。 可以将输入图像分割成更小的区域,并且可以确定每个区域的至少一个参数。 输入图像可以基于每个区域的参数分解为多个,较少相关的,正交的或准正交的图像分量。 每个投影仪可以显示相应的图像分量,使得投影的图像可以光学地叠加在屏幕上。 正交或准正交图像分量的叠加可以导致在现有的多投影图像系统中的图像的叠加对于投影机之间的图像失准更不敏感。 可以使用叠加正交或准正交图像来避免可见的图像劣化,并且在多投影仪系统实现中提供更加鲁棒的图像质量。
    • 9. 发明授权
    • Equipment and methods for the display of high resolution images using multiple projection displays
    • 使用多个投影显示器显示高分辨率图像的设备和方法
    • US08251512B2
    • 2012-08-28
    • US11631585
    • 2005-07-07
    • Sean M. AdkinsSteven Charles Read
    • Sean M. AdkinsSteven Charles Read
    • G03B21/14
    • H04N9/3147
    • The present invention discloses systems, equipment and methods that allow the improved tiling of multiple projections displays in order to create higher resolution images. Equipment and methods are disclosed for improved blending of the seam by optical means where edge blending masks are employed to create a brightness ramp in the blending region. Equipment and methods are also disclosed for the correction of artifacts in an optically blended seam by modifying the brightness of image pixels in the overlap or blend region. Equipment, systems, and techniques are disclosed for preserving the resolution and uniformity of the image across each seam by actively controlling the position of each display using a servo controlled lens mount for the positioning of each projected image in conjunction with a real time image analysis system.
    • 本发明公开了允许改进的多个投影显示器的平铺以便产生更高分辨率图像的系统,设备和方法。 公开了用于通过光学装置改进接缝的混合的设备和方法,其中采用边缘混合掩模以在混合区域中产生亮度斜坡。 还公开了通过修改重叠或混合区域中的图像像素的亮度来校正光学混合接缝中的假象的设备和方法。 公开了设备,系统和技术,以通过主动地使用伺服控制的透镜安装座来控制每个显示器的位置来保持每个接缝上的图像的分辨率和均匀性,以便与实时图像分析系统一起定位每个投影图像 。
    • 10. 发明申请
    • Equipment and Methods for the Display of High Resolution Images Using Multiple Projection Displays
    • 使用多个投影显示器显示高分辨率图像的设备和方法
    • US20080259223A1
    • 2008-10-23
    • US11631585
    • 2005-07-07
    • Steven Charles ReadSean M. Adkins
    • Steven Charles ReadSean M. Adkins
    • H04N9/31G03B21/14
    • H04N9/3147
    • The present invention discloses systems, equipment and methods that allow the improved tiling of multiple projections displays in order to create higher resolution images. Equipment and methods are disclosed for improved blending of the seam by optical means where edge blending masks are employed to create a brightness ramp in the blending region. Equipment and methods are also disclosed for the correction of artifacts in an optically blended seam by modifying the brightness of image pixels in the overlap or blend region. Equipment, systems, and techniques are disclosed for preserving the resolution and uniformity of the image across each seam by actively controlling the position of each display using a servo controlled lens mount for the positioning of each projected image in conjunction with a real time image analysis system.
    • 本发明公开了允许改进的多个投影显示器的平铺以便产生更高分辨率图像的系统,设备和方法。 公开了用于通过光学装置改进接缝的混合的设备和方法,其中采用边缘混合掩模以在混合区域中产生亮度斜坡。 还公开了通过修改重叠或混合区域中的图像像素的亮度来校正光学混合接缝中的伪像的设备和方法。 公开了设备,系统和技术,以通过主动地使用伺服控制的透镜安装座来控制每个显示器的位置来保持每个接缝上的图像的分辨率和均匀性,以便与实时图像分析系统一起定位每个投影图像 。