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    • 31. 发明申请
    • HOME-VIDEO DIGITAL-MASTER PACKAGE
    • 家庭影音数码包
    • WO2008103677A1
    • 2008-08-28
    • PCT/US2008/054322
    • 2008-02-19
    • PIXARSAYRE, Rick
    • SAYRE, Rick
    • H04N7/16
    • H04N7/17318H04N9/8707H04N9/873H04N19/86H04N21/2343H04N21/234309H04N21/234363H04N21/2383H04N21/41407
    • A method for determining digital video data includes receiving digital data comprising a plurality of digital images, wherein each digital image is encoded in a first color space, determining a plurality of color-graded digital images in response to the plurality of digital images and in response to color grading input data, wherein each color-graded digital image is encoded in a second color space, and wherein the second color space is associated with HD video, encoding each color-graded image with a compression encoding substantially independent of integer pixel translation of the plurality of color-graded digital images to form encoded image data package, storing the encoded image data package in a tangible media, and determining the digital video data for a video display device in a remote server in response to the encoded image data package.
    • 一种用于确定数字视频数据的方法包括接收包括多个数字图像的数字数据,其中每个数字图像被编码在第一颜色空间中,响应于多个数字图像确定多个颜色分级数字图像,并且作为响应 对颜色分级输入数据进行分色,其中每个颜色分级数字图像被编码在第二颜色空间中,并且其中第二颜色空间与HD视频相关联,其中编码每个色彩分级图像的压缩编码基本上不依赖于整数像素平移 多个彩色分级数字图像以形成编码图像数据包,将编码图像数据包存储在有形介质中,以及响应于编码图像数据包确定远程服务器中的视频显示设备的数字视频数据。
    • 33. 发明专利
    • Magnetic recording and playback device
    • 磁记录和回放装置
    • JPS5750189A
    • 1982-03-24
    • JP12508080
    • 1980-09-09
    • Sony Corp
    • KAMINAGA KOUZOUSUZUKI YOSHINORIWAKIZAKA YOSHIAKI
    • G11B5/588H04N9/79H04N9/85H04N9/86H04N9/873H04N9/896
    • H04N9/873
    • PURPOSE: To change the output of an inertia circuit and to prevent phase detection error, by forecasting discontinuous phase through the movement of ±2n from a circuit which detects the movement from a present playback track number 0 to the track number of ±2n (where; n is an integer).
      CONSTITUTION: A video signal applied to an input terminal 1 is separated into a horizontal synchronizing signal H and a burst signal SB at the synchronizing separation circuit 2. An AFC3 produces a horizontal scanning signal fH and chrominance subcarrier wave f
      sc from a synchronizing signal H. An APC4 produces a subcarrier wave f'
      sc through phase matching with the signal SB. A subcarrier wave read-in circuit 5 reads in high or low of the subcarrier wave f'
      sc in the timing of one wave of the signal SB. The horizontal scanning signal fH is multiplied by 1/2 at a magnification device 8 and outputted at an output terminal 9. When a detection signal B in ±2n is applied to a control terminal 11 from a VTR, the phase of output of the magnifier 8 is inverted, the output signal is changed as C
      2 , and error due to discontinuous phase can be prevented.
      COPYRIGHT: (C)1982,JPO&Japio
    • 目的:为了改变惯性电路的输出并防止相位检测错误,通过从检测从当前重放轨道号0到轨道号+的运动的电路+ +或-2n的移动来预测不连续相位 -2n(其中; n是整数)。 构成:施加到输入端子1的视频信号在同步分离电路2处被分离为水平同步信号H和突发信号SB .AFC3从同步信号H产生水平扫描信号fH和色度副载波fsc。 APC4通过与信号SB的相位匹配产生子载波f'sc。 子载波波读入电路5在信号SB的一个波的定时读入副载波f'sc的高或低。 水平扫描信号fH在放大装置8处乘以1/2,并在输出端子9输出。当从VTR向控制端子11施加+或-2n的检测信号B时,输出的相位 放大器8反转,输出信号变为C2,可以防止由不连续相引起的误差。
    • 35. 发明授权
    • Image processing system, transmitting-side device and receiving-side device
    • 图像处理系统,发送侧设备和接收侧设备
    • US09307211B2
    • 2016-04-05
    • US14564312
    • 2014-12-09
    • FUJIFILM Corporation
    • Kenkichi Hayashi
    • H04N9/64H04N1/64H04N9/04H04N9/65H04N9/873H04N5/77H04N9/793H04N9/804
    • H04N9/646H04N1/648H04N5/77H04N9/045H04N9/65H04N9/793H04N9/8042H04N9/873
    • Provided is an image processing system capable of coping with data which is obtained in a new color filter array, and making full use of the performance of a receiving-side device by reducing the influence of a difference in the performance of the receiving-side device on an image quality. An image processing system 100 includes a transmitting-side device 101 and a receiving-side device 102. The transmitting-side device 101 generates intermediate data by preprocessing RAW data, generates three-plane color data by processing synchronization of the intermediate data, and outputs placement information for specifying pixel positions corresponding to the three-plane color data and the intermediate data. The receiving-side device 102 restores the intermediate data using the three-plane color data and the placement information from the transmitting-side device 101, and generates the three-plane color data from the restored intermediate data.
    • 提供了一种图像处理系统,其能够应对在新的滤色器阵列中获得的数据,并且通过减少接收侧设备的性能的差异的影响来充分利用接收侧设备的性能 对图像质量。 图像处理系统100包括发送侧设备101和接收侧设备102.发送侧设备101通过预处理RAW数据生成中间数据,通过处理中间数据的同步来生成三平面彩色数据,并输出 用于指定对应于三平面彩色数据和中间数据的像素位置的放置信息。 接收侧设备102使用来自发送侧设备101的三平面颜色数据和布局信息来恢复中间数据,并且从恢复的中间数据生成三平面颜色数据。