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    • 1. 发明授权
    • Image capturing device and image capturing method
    • 图像捕获装置和图像捕获方法
    • US08670654B2
    • 2014-03-11
    • US13879823
    • 2011-10-13
    • Kouji TanakaTakashi KiyofujiNorio Kurashige
    • Kouji TanakaTakashi KiyofujiNorio Kurashige
    • H04N5/917
    • H04N19/00012H04N19/149H04N19/197H04N19/198H04N19/593
    • An image capturing device (100) is provided with: an image capturing unit (102) which generates, by continuous image capturing, a plurality of pieces of image data which are continuous in the time direction; an image processing unit which corrects a compression rate of the image data on the basis of a correction factor for correcting the image data, and performs compression coding by use of an intra-frame predictive coding system; a data control unit (124) which stores the image data, which has been subjected to the compression coding, in an image storage unit; a current compression rate derivation unit (130) which derives a current compression rate which is an actual compression rate of the image data which has been subjected to the compression coding; a current compression rate holding unit (132) which holds a plurality of current compression rates continuous in the time direction; a subsequent compression rate prediction unit (134) which predicts a subject compression rate, which is a compression rate of image data to be subjected to the subsequent compression coding next time, from the plurality of current compression rates which are held, or from the plurality of current compression rates which are held and the compression rate of the image data to be subjected to the current compression coding this time; and a correction factor derivation unit which derives the correction factor on the basis of the subsequent compression rate.
    • 一种图像拍摄装置(100)具有:图像拍摄单元,通过连续图像捕获生成在时间方向上连续的多个图像数据; 图像处理单元,其基于用于校正图像数据的校正因子校正图像数据的压缩率,并且使用帧内预测编码系统进行压缩编码; 数据控制单元,其将经过压缩编码的图像数据存储在图像存储单元中; 当前压缩率导出单元(130),其导出作为已进行了压缩编码的图像数据的实际压缩率的当前压缩率; 当前压缩率保持单元(132),其保持在时间方向上连续的多个当前压缩率; 一个后续的压缩率预测单元(134),其从所保持的多个当前压缩率或从多个预定压缩率预测作为下一次压缩编码的图像数据的压缩率的对象压缩率 保持当前的压缩率以及本次要进行当前压缩编码的图像数据的压缩率; 以及校正因子导出单元,其基于随后的压缩率导出校正因子。
    • 2. 发明申请
    • IMAGE CAPTURING DEVICE AND IMAGE CAPTURING METHOD
    • 图像捕获设备和图像捕获方法
    • US20130202266A1
    • 2013-08-08
    • US13879823
    • 2011-10-13
    • Kouji TanakaTakashi KiyofujiNorio Kurashige
    • Kouji TanakaTakashi KiyofujiNorio Kurashige
    • H04N7/26
    • H04N19/00012H04N19/149H04N19/197H04N19/198H04N19/593
    • An image capturing device (100) is provided with: an image capturing unit (102) which generates, by continuous image capturing, a plurality of pieces of image data which are continuous in the time direction; an image processing unit which corrects a compression rate of the image data on the basis of a correction factor for correcting the image data, and performs compression coding by use of an intra-frame predictive coding system; a data control unit (124) which stores the image data, which has been subjected to the compression coding, in an image storage unit; a current compression rate derivation unit (130) which derives a current compression rate which is an actual compression rate of the image data which has been subjected to the compression coding; a current compression rate holding unit (132) which holds a plurality of current compression rates continuous in the time direction; a subsequent compression rate prediction unit (134) which predicts a subject compression rate, which is a compression rate of image data to be subjected to the subsequent compression coding next time, from the plurality of current compression rates which are held, or from the plurality of current compression rates which are held and the compression rate of the image data to be subjected to the current compression coding this time; and a correction factor derivation unit which derives the correction factor on the basis of the subsequent compression rate.
    • 一种图像拍摄装置(100)具有:图像拍摄单元,通过连续图像捕获生成在时间方向上连续的多个图像数据; 图像处理单元,其基于用于校正图像数据的校正因子校正图像数据的压缩率,并且使用帧内预测编码系统进行压缩编码; 数据控制单元,其将经过压缩编码的图像数据存储在图像存储单元中; 当前压缩率导出单元(130),其导出作为已进行了压缩编码的图像数据的实际压缩率的当前压缩率; 当前压缩率保持单元(132),其保持在时间方向上连续的多个当前压缩率; 一个后续的压缩率预测单元(134),其从所保持的多个当前压缩率或从多个预定压缩率预测作为下一次压缩编码的图像数据的压缩率的对象压缩率 保持当前的压缩率以及本次要进行当前压缩编码的图像数据的压缩率; 以及校正因子导出单元,其基于随后的压缩率导出校正因子。
    • 3. 发明授权
    • Method of superimposing data of character on video data
    • 将字符数据叠加在视频数据上的方法
    • US5301027A
    • 1994-04-05
    • US35776
    • 1993-03-23
    • Takashi KiyofujiHiroshi YamadaKohsuke KinoshitaToshihiko Monma
    • Takashi KiyofujiHiroshi YamadaKohsuke KinoshitaToshihiko Monma
    • H04N5/765H04N5/278H04N5/91H04N5/92
    • H04N19/467H04N5/278
    • In a method of superimposing data of a character (mark) on video data, the superimposed video data being subjected to a data compression processing for extracting video data within each of blocks from one frame of the superimposed video data and for data-compressing the extracted video data, the blocks forming one frame, the each block including a predetermined number of two-dimensionally arranged pixels of the superimposed video data, a position of the character superimposed on the video data with respect to a lump of the blocks, where the character is to be imposed, is determined such that the number of blocks over which the character spreads is minimized when a size and a shape of the character or the mark are unchanged. In the method, at least a portion of a body of the character at a middle portion of the block and an outline of the character near a boundary of the block are arranged, or a horizontal (vertical) size of the character in accordance with a natural number times the number of horizontally (vertically) arranged pixels out of the two-dimensionally arranged pixels within the block. Thus, noise occurring around the character at blocks where the character exists is made inconspicuous.
    • 在将字符(标记)的数据叠加在视频数据上的方法中,叠加的视频数据经受数据压缩处理,用于从叠加的视频数据的一帧中提取每个块内的视频数据,并对所提取的视频数据进行数据压缩 视频数据,形成一帧的块,每个块包括叠加的视频数据的预定数量的二维排列的像素,相对于块的块,叠加在视频数据上的字符的位置,其中字符 被确定为当字符或标记的大小和形状不变时字符扩展的块的数量被最小化。 在该方法中,在块的中间部分处的字符的主体的至少一部分和在块的边界附近的字符的轮廓被布置,或者根据a的字符的水平(垂直)尺寸 自然数乘以块内的二维排列像素中的水平(垂直)排列像素的数量。 因此,在字符存在的块处的字符周围发生的噪声变得不显眼。
    • 4. 发明授权
    • Automatic equalization system
    • 自动均衡系统
    • US06295316B1
    • 2001-09-25
    • US09081671
    • 1998-05-20
    • Junichiro TonamiTakashi Kiyofuji
    • Junichiro TonamiTakashi Kiyofuji
    • H03H740
    • H04W52/30G11B20/10009G11B20/10425G11B20/22H03L7/091H03M7/4006H03M13/23H03M13/2903H03M13/2993H03M13/6356H03M13/6362H04B7/2628H04B10/25754H04J13/0077H04J13/16H04L1/0066H04L1/0068H04L25/03038H04L25/497H04L51/04H04L51/28H04L51/38H04L65/1006H04L65/1016H04N19/109H04N19/139H04N19/625H04N19/91H04W4/12H04W4/14H04W8/26H04W72/042H04W76/12H04W88/085Y10S370/906Y10S370/907
    • An automatic equalization system includes an analog-to-digital converter for periodically sampling an analog signal representative of digital information in response to a sampling clock signal, and for converting every sample of the analog signal into a corresponding digital sample to convert the analog signal into a corresponding digital signal. A first device operates for detecting a phase error of the sampling clock signal in response to a correlation between samples of the digital signal generated by the analog-to-digital converter. A second device operates for controlling a frequency of the sampling clock signal in response to the phase error detected by the first device. A variable filter operates for subjecting the digital signal generated by the analog-to-digital converter to a variable filtering process to convert the digital signal generated by the analog-to-digital converter into a filtering-resultant signal. The filtering process corresponds to a waveform equalization process. A third device operates for detecting an amplitude error of the digital signal generated by the analog-to-digital converter in response to a correlation between samples of the filtering-resultant signal generated by the variable filter. A fourth device operates for controlling the filtering process implemented by the variable filter in response to the amplitude error detected by the third device. The analog-to-digital converter, the first device, and the second device compose a phase locked loop while the variable filter, the third device, and the fourth device compose an amplitude error correcting loop separate from the phase locked loop.
    • 一种自动均衡系统包括一个模数转换器,用于响应采样时钟信号对表示数字信息的模拟信号进行周期性采样,并将模拟信号的每个样本转换成相应的数字样本,以将模拟信号转换为 相应的数字信号。 响应于由模数转换器产生的数字信号的采样之间的相关性,第一装置用于检测采样时钟信号的相位误差。 第二装置用于响应于由第一装置检测到的相位误差来控制采样时钟信号的频率。 可变滤波器用于对由模拟 - 数字转换器产生的数字信号进行可变滤波处理,以将由模数转换器产生的数字信号转换为滤波结果信号。 滤波处理对应于波形均衡处理。 第三装置用于响应于由可变滤波器产生的滤波结果信号的采样之间的相关性,检测由模数转换器产生的数字信号的振幅误差。 第四装置用于响应于由第三装置检测到的振幅误差来控制由可变滤波器实现的滤波处理。 模数转换器,第一器件和第二器件组成锁相环,而可变滤波器,第三器件和第四器件构成与锁相环分离的幅度误差校正回路。
    • 5. 发明授权
    • Digital signal processing system for color camera apparatus including
separate delays for color signal and brightness signal processing
    • 用于彩色摄像机设备的数字信号处理系统包括用于彩色信号和亮度信号处理的单独延迟
    • US5293225A
    • 1994-03-08
    • US889567
    • 1992-05-28
    • Hiroshi NishiyamaShozo YokoyamaMasanori KubotaTakashi KiyofujiMamoru Miyashita
    • Hiroshi NishiyamaShozo YokoyamaMasanori KubotaTakashi KiyofujiMamoru Miyashita
    • H04N1/64H04N5/208H04N9/64H04N9/07H04N9/04H04N9/077
    • H04N5/208H04N1/64H04N9/646H04N2209/046
    • A color camera apparatus comprises an image pickup element having a stripe/mosaic type color filter and photo-electrically converting an arriving optical image so as to obtain at least a signal including a brightness component and a color component multiplexed with each other. And, the apparatus comprises an A/D converter for digitizing above multiplexed signal, and a brightness signal processing circuit which separates the brightness component from the multiplexed signal and carries out an aperture correction by means of a delay element having a delay amount corresponding to two horizontal scanning period. And further, the apparatus comprises a color signal processing circuit which separates the color component from the multiplexed signal so as to obtain two line-sequential color difference components through a predetermined arithmetic procedure. And, the color signal processing circuit not only carries out a circular-type noise removal processing operation by means of the delay element having the delay amount corresponding to two horizontal scanning periods, but carries out a rearrangement of said line-sequential color difference components by use of the same delay line.
    • 彩色照相机装置包括具有条纹/马赛克型滤色器的图像拾取元件,并对到达的光学图像进行光电转换,以至少获得包括彼此复用的亮度分量和颜色分量的信号。 并且,该装置包括用于数字化上述复用信号的A / D转换器和亮度信号处理电路,该亮度信号处理电路将亮度分量与多路复用信号分离,并通过具有对应于两个的延迟量的延迟元件执行孔径校正 水平扫描周期。 此外,该装置包括一个颜色信号处理电路,该彩色信号处理电路将彩色分量与多路复用信号分离,以便通过预定的算术程序获得两个线序色差分量。 并且,彩色信号处理电路不仅通过具有对应于两个水平扫描周期的延迟量的延迟元件进行圆形噪声去除处理操作,而且通过以下方式执行所述行顺序色差分量的重新排列 使用相同的延迟线。