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    • 3. 发明授权
    • Electronic memory state reallocation system for improving the resolution
of color coding video systems
    • 电子记忆状态重新分配系统,用于提高彩色编码视频系统的分辨率
    • US5051929A
    • 1991-09-24
    • US109951
    • 1987-10-19
    • Timothy T. TuttWayne D. JungRaphael K. Tam
    • Timothy T. TuttWayne D. JungRaphael K. Tam
    • G09G5/02
    • G09G5/02
    • The present invention provides means and methods for generating high resolution color computer generated graphic elements, such as lines, circles and curves, using a modified color-under coding system. A portion of the original luminance grey scale is reassigned or reallocated for substitution with data for high resolution graphic elements. High resolution graphic data are introduced by a user-operated input device via a control device such as a computer. The input luminance signal is digitally limited and stored in video random access memory (VRAM). A level detector detects the Y signal level to determine the presence of certain Y signal levels. Memory look-up tables provide appropriate user-determined substitute values for the Y, I and Q data values where certain, preselected Y signal levels are detected.
    • 本发明提供了使用修改后的颜色编码系统来生成高分辨率彩色计算机生成的图形元素(如线,圆和曲线)的方法和方法。 原始亮度灰度的一部分被重新分配或重新分配以替代用于高分辨率图形元素的数据。 高分辨率图形数据由用户操作的输入设备经由诸如计算机的控制设备引入。 输入亮度信号被数字限制并存储在视频随机存取存储器(VRAM)中。 电平检测器检测Y信号电平以确定某些Y信号电平的存在。 存储器查找表为Y,I和Q数据值提供适当的用户确定的替代值,其中检测到某些预选的Y信号电平。
    • 6. 发明授权
    • Electronic image compression method and apparatus using interlocking
digitate geometric sub-areas to improve the quality of reconstructed
images
    • 电子图像压缩方法和装置使用联锁数字化几何子区域来提高重建图像的质量
    • US5093872A
    • 1992-03-03
    • US349959
    • 1989-05-02
    • Timothy T. Tutt
    • Timothy T. Tutt
    • G06T9/00H04N1/41H04N7/26
    • H04N1/41H04N19/00
    • A method and apparatus for compressing digital image data using interlocking digitate geometric sub-areas. The digital picture elements, or PELs, representing the image are divided into interlocking digitate sub-areas, which, in the preferred embodiment, are of substantially the same size and shape. Data compression is achieved for the PELs within a sub-area by first sorting the values of the PELs within the sub-area by magnitude. Depending upon the magnitudes of the PELs in the sub-area relative to the magnitudes of the other PELs in the sub-area, the PELs in the sub-area are either coded solid tone, with each PEL in the sub-area having the same tone, or coded bi-tonal, with each PEL in the sub-area having either one of two tones. A smoothing process is utilized to reduce undesireable effects at the edges of the sub-area.
    • 一种使用互锁数字化几何子区域压缩数字图像数据的方法和装置。 表示图像的数字图像元素或PEL被划分成互锁的数字子区域,在优选实施例中,它们具有基本上相同的尺寸和形状。 通过首先对子区域内的PEL的值进行排序来对子区域内的PEL进行数据压缩。 根据相对于子区域中其他PEL的幅度的子区域中的PEL的大小,子区域中的PEL是编码固音,子区域中的每个PEL都具有相同的 音调或编码双色调,子区域中的每个PEL具有两个音调之一。 利用平滑处理来减少在子区域边缘的不希望的影响。
    • 7. 发明授权
    • Optical position location apparatus
    • 光学位置定位装置
    • US4420261A
    • 1983-12-13
    • US183357
    • 1980-09-02
    • Gordon A. BarlowTimothy T. TuttRichard A. KarlinJohn R. Krutsch
    • Gordon A. BarlowTimothy T. TuttRichard A. KarlinJohn R. Krutsch
    • G05D3/12G01B11/00G01B11/03G06F3/033G06F3/042G01B11/14G02B5/00G02B27/17
    • G06F3/0423G01B11/002
    • An optical position location apparatus for locating the position of an object in one or more dimensions, which relies upon one or more sources of radiant energy and distributor devices to disburse such radiant energy over a location region or window. Integrated collector assemblies positioned opposite to the distributors receive and collect the transmission of the distributed radiant energy and through reflection or refraction, transfer radiant energy to a minimum of detection locations to monitor the absence or alteration thereof. A rotating optical scanner and a detector are utilized with a continuous stationary light source to successively monitor specific location-coordinate-related portions of transmitted radiant energy and through electronic circuitry, a signal is developed to disclose, with accuracy, the location of objects within the location region "window", as well as other parameters including object size. In other embodiments, an apparatus with elements cooperating along two dimensions is capable of yielding three-dimensional object parameter information.
    • 一种光学位置定位装置,用于在一个或多个维度上定位物体的位置,其依赖于一个或多个辐射能源和分配器装置以在位置区域或窗口上散发这种辐射能量。 与分配器相对设置的集成集电器组件接收和收集分布的辐射能量的传输并通过反射或折射,将辐射能传递到最小的检测位置以监测其不存在或改变。 旋转的光学扫描器和检测器与连续的固定光源一起使用,以连续地监测所发射的辐射能的特定位置坐标相关部分,并且通过电子电路,开发出信号来精确地公开物体在 位置区域“窗口”,以及包括对象大小的其他参数。 在其他实施例中,具有沿着二维配合的元件的装置能够产生三维对象参数信息。