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    • 1. 发明授权
    • Apparatus for detecting television image movement
    • 用于检测电视图像移动的装置
    • US4779131A
    • 1988-10-18
    • US889224
    • 1986-07-25
    • Kunio MatsumotoTadao FujitaKenji TakanashiYutaka TanakaToshiro OhmuraTaiichiro KuritaYoshimichi OhtsukaTaiji NishizawaYuichi Ninomiya
    • Kunio MatsumotoTadao FujitaKenji TakanashiYutaka TanakaToshiro OhmuraTaiichiro KuritaYoshimichi OhtsukaTaiji NishizawaYuichi Ninomiya
    • G06T7/20H04N5/14H04N7/18
    • H04N5/144G06T7/2053
    • In an apparatus for detecting movement of a television image in response to frame difference data corresponding to a difference between present frame data and previous frame data, a video signal is divided into a plurality of segmental areas for each frame, a pixel or picture element is selected to represent each of the segmental areas, frame difference data are produced for each of the segmental areas by calculating differences in the position or coordinates of a pixel representative of a segmental area of a previous frame from the respective picture element of the corresponding segmental area in the present frame, and each of the calculated differences smaller than a predetermined magnitude, and which would be characteristic of a stationary background portion of the television image, is omitted from the frame difference data. This is effective to improve the movement vector detection accuracy. The apparatus has a circuit for zeroing the frame difference data, and thereby improving, the movement vector detection reliability when the number of the calculated differences omitted from the frame difference data exceeds a predetermined value.
    • 在用于根据与当前帧数据和先前帧数据之间的差对应的帧差数据来检测电视图像的移动的装置中,视频信号被划分成每个帧的多个分段区域,像素或像素是 被选择为表示每个分段区域,通过计算代表先前帧的分段区域的像素的位置或坐标的差异,从而对于每个分段区域产生帧差数据,该像素与相应分段区域的相应像素 在帧差中,从帧差数据中省略计算出的差异小于规定大小,并且将是电视图像的静止背景部分的特征的各个。 这对于提高运动矢量检测精度是有效的。 该装置具有用于使帧差分数据归零的电路,从而提高当从帧差数据中省略的计算出的差异的数量超过预定值时的运动矢量检测可靠性。
    • 4. 发明授权
    • Motion-compensated interframe coding system
    • 运动补偿帧间编码系统
    • US4307420A
    • 1981-12-22
    • US155786
    • 1980-06-02
    • Yuichi NinomiyaYoshimichi Ohtsuka
    • Yuichi NinomiyaYoshimichi Ohtsuka
    • G06T7/20G06T9/00H04N7/26H04N7/32H04N7/36H04M7/12
    • G06T7/2013H04N19/124H04N19/50H04N19/51G06T2207/10016
    • An interframe coding system provided for highly efficient transmission of coded television picture signal is improved by compensating prediction error of predicted picture motion in response to interframe correlation detected by shifting moving blocks in a direction opposite to a motion vector detected for predicting interframe picture motion in order to reduce an amount of coded signals to be transmitted, and further improved regarding the detection of motion vector by examining interframe correlation referred to accumulated logarithms of absolute values of interframe differential picture element signals, and still further improved regarding the compensation of predicted picture motion by changing a coding threshold level in response to picture motion and further by effecting more exact secondary prediction of picture motion. According to these improvements, an extremely high efficiency of transmission of precisely and correctly coded interframe picture signal can be attained.
    • 提供用于编码电视图像信号的高效传输的帧间编码系统通过补偿预测的图像运动的预测误差来补偿预测图像运动的预测误差,该帧间相关检测是通过沿与检测到的运动矢量相反的方向移动运动块来检测的,以预测帧间图像运动 为了减少要发送的编码信号的数量,并且通过检查涉及帧间差分图像信号的绝对值的累积对数的帧间相关性来检测运动矢量,并进一步改进,并且关于预测图像运动的补偿进一步改进 响应于图像运动改变编码阈值水平,并进一步通过对图像运动进行更准确的二次预测。 根据这些改进,可以获得精确和正确编码的帧间图像信号的极高的传输效率。
    • 9. 发明授权
    • Four phase PSK demodulator
    • 四相PSK解调器
    • US4757272A
    • 1988-07-12
    • US880836
    • 1986-07-01
    • Yukihiro OkadaYuichi NinomiyaYoshimichi OhtsukaYoshinori IzumiSei'ichi Goushi
    • Yukihiro OkadaYuichi NinomiyaYoshimichi OhtsukaYoshinori IzumiSei'ichi Goushi
    • H04L27/227H03D3/18H03D3/24H03K9/04H04L7/04
    • H04L27/2277
    • A demodulator for regenerating and demodulating a carrier signal from a four-phase PSK received signal having a data symbol preamble and a fixed phase (one of four phases) of a particular time width using a synchronous detection type demodulating system (remodulation type demodulating system). The demodulator includes an orthogonal demodulating circuit and a remodulating circuit for regenerating a carrier signal which is the data signal during a preamble transmission period from a received modulated signal. The remodulating circuit includes a demodulator having an AFC circuit for detecting a frequency change using a narrow band filter, means for suppressing frequency changes of the four-phase PSK modulated signal received and means for rendering constant the frequency of the regenerated carrier signal passing through the narrow band filter.
    • 一种用于使用同步检测型解调系统(再调制型解调系统)从具有数据符号前导码和特定时间宽度的固定相位(四相一个)的四相PSK接收信号再生和解调载波信号的解调器, 。 解调器包括正交解调电路和再生电路,用于在从接收的调制信号的前导码传输周期期间再生作为数据信号的载波信号。 再调制电路包括具有用于使用窄带滤波器检测频率变化的AFC电路的解调器,用于抑制接收的四相PSK调制信号的频率变化的装置,以及用于使再生的载波信号的频率恒定的装置, 窄带滤波器。