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    • 9. 发明授权
    • Fast scan image registration method and apparatus for high addressable video systems
    • 用于高可寻址视频系统的快速扫描图像配准方法和装置
    • US06778293B1
    • 2004-08-17
    • US09204395
    • 1998-12-02
    • Aron Nacman
    • Aron Nacman
    • G01D1516
    • H04N1/047H04N1/1135H04N2201/02439H04N2201/0471H04N2201/04732H04N2201/04744H04N2201/04781H04N2201/04784H04N2201/04786H04N2201/04794
    • Multiple components of an image produced by an image output device including a raster output scanner are registered by delaying an output high addressable bit stream for a time following each raster start of scan. A multiplicity of error values are added resulting in a total error integer component and a factional component. Following the start of scan, a line sync generator delays for a number of first clock signals proportional to the integer component. After the delay, the line sync generator signals a buffer to input a video input byte. A parallel to serial shift register converts the input video byte into a high addressable bit stream. A delay register further delays the bit stream by the fractional component, which further refines where, along the raster, the bit stream will commence. Suitably, the system corrects for the errors in run time as the fast scan line is scanned.
    • 通过在扫描的每个光栅开始一段时间后延迟输出高可寻址位流来登记由包括光栅输出扫描器的图像输出装置产生的图像的多个分量。 添加多个错误值,导致总误差整数分量和派系分量。 在扫描开始之后,行同步发生器延迟与整数分量成比例的多个第一时钟信号。 在延迟之后,线路同步发生器发送一个缓冲器来输入一个视频输入字节。 并行串行移位寄存器将输入视频字节转换为高可寻址位流。 延迟寄存器进一步将比特流延迟小数分量,这进一步优化沿着光栅的比特流将开始的位置。 适当地,系统在扫描快速扫描线时纠正运行时间中的错误。
    • 10. 发明授权
    • High quality digital scaling using image tags
    • 使用图像标签的高质量数字缩放
    • US06754401B2
    • 2004-06-22
    • US10371748
    • 2003-02-21
    • Aron NacmanRamesh NagarajanWilliam A. Cook
    • Aron NacmanRamesh NagarajanWilliam A. Cook
    • G06K932
    • G06T3/4007H04N1/3935
    • A system and method for selective scaling of an image by selective implementation of a window averaging processing technique or an interpolation processing technique. For enlargement scaling, the interpolation processor is implemented. For reduction scaling, the window averaging processor is implemented. For anamorphic scaling, the window averaging processor may be selected and implemented for reduction processing pursuant to a two-pass processing technique wherein the interpolator processing will be implemented thereafter. Image tags are provided for selective scaling of each area of an image according to the type of content of each area by selective implementation of a window averaging processing technique or an interpolation processing technique. The interpolation processor is implemented for line drawing areas of an image, and the window averaging processor is implemented for contone areas of the image. For anamorphic scaling with image tags, a two-pass system is provided which performs a first-pass reduction in one direction followed by a second-pass enlargement in the remaining direction, wherein the reduction is performed in the manner described for reduction scaling. A one-pass system is also provided which provides a second serially connected interpolator so that the aforementioned reduction can be performed on one dimension in a first step, followed by enlargement in the remaining direction in a following step on the same pass.
    • 一种用于通过选择性地实现窗口平均处理技术或内插处理技术来选择性地缩放图像的系统和方法。 对于放大缩放,实现插值处理器。 为了缩小缩放,实现了窗口平均处理器。 对于变形缩放,可以根据二次处理技术来选择和实现窗口平均处理器以进行缩小处理,其中将在其后实施内插器处理。图像标签被提供用于根据类型对图像的每个区域进行选择性缩放 通过选择性地实现窗口平均处理技术或内插处理技术来实现每个区域的内容。 内插处理器被实现用于图像的绘制区域,并且窗口平均处理器被实现用于图像的连续色调区域。 对于具有图像标签的变形缩放,提供了一个双通道系统,其在一个方向上执行第一遍次的减小,然后在剩余方向上进行二次通过放大,其中以所述的减小缩放的方式执行缩小。 还提供一通系统,其提供第二串联内插器,使得可以在第一步骤中在一维上执行上述缩小,随后在相同的遍次中在随后的步骤中在剩余方向上放大。