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    • 32. 发明授权
    • Error detecting apparatus
    • 错误检测装置
    • US5488618A
    • 1996-01-30
    • US263527
    • 1994-06-22
    • Tetsujiro KondoHideo Nakaya
    • Tetsujiro KondoHideo Nakaya
    • H04N5/92G06F11/267H04N7/18H04N19/00H04N19/102H04N19/134H04N19/136H04N19/189H04N19/19H04N19/196H04N19/423H04N19/50H04N19/80H04N19/85H04N19/94H04N19/98G06F7/02
    • G06F11/2221
    • A least square calculating circuit receives a plurality of past normal pixel data and class information. The calculating circuit predicts future pixel data corresponding to a linear coupling of the past pixel data and the coefficients for a class. At this time, the calculating circuit determines coefficients where the square of an error becomes minimum. The learnt coefficients are stored in a coefficient memory. An estimation value generating circuit generates an estimated value corresponding to the coefficients and the past pixel data. A subtracting circuit generates a difference value between the estimated value and the real value. The difference value is supplied to an error determining circuit. When the difference value largely deviates from the estimated value and when the number of such pixels that take place in a predetermined time period is larger than a predetermined threshold value, an error is detected.
    • 最小二乘计算电路接收多个过去的正常像素数据和类信息。 计算电路预测与过去像素数据的线性耦合和类的系数相对应的未来像素数据。 此时,计算电路确定误差的平方成为最小的系数。 所学习的系数存储在系数存储器中。 估计值产生电路产生对应于系数和过去像素数据的估计值。 减法电路产生估计值和实际值之间的差值。 差值被提供给误差确定电路。 当差值大大偏离估计值时,并且当在预定时间段内发生的像素数量大于预定阈值时,检测到错误。
    • 34. 发明授权
    • Learning device and learning method for image signal processing
    • 用于图像信号处理的学习装置和学习方法
    • US07512267B2
    • 2009-03-31
    • US11122177
    • 2005-05-04
    • Tetsujiro KondoHideo NakayaTakashi Sawao
    • Tetsujiro KondoHideo NakayaTakashi Sawao
    • G06K9/00
    • H04N9/045H04N19/59H04N19/98H04N2209/046
    • An image signal generated by a CCD image sensor is processed by the block-generating section 28 provided in an image-signal processing section 25. A class tap and a prediction tap are thereby extracted. The class tap is output to an ADRC process section 29, and the prediction tap is output to an adaptation process section 31. The ADRC process section 29 performs an ADRC process on the input image signal, generating characteristic data. A classification process section 30 generates a class code corresponding to the characteristic data thus generated and supplies the same to an adaptation process section 31. The adaptation process section 31 reads, from a coefficient memory 32, the set of prediction coefficients which corresponds to the class code. The set of prediction coefficients and the prediction tap are applied, thereby generating all color signals, i.e., R, G and B signals, at the positions of the pixels which are to be processed.
    • 由CCD图像传感器生成的图像信号由设置在图像信号处理部分25中的块生成部分28处理。由此提取类别抽头和预测抽头。 类别抽头输出到ADRC处理部分29,并且预测抽头被输出到自适应处理部分31.ADRC处理部分29对输入图像信号执行ADRC处理,产生特征数据。 分类处理部分30产生与这样生成的特征数据相对应的类别代码,并将其提供给自适应处理部分31.适应处理部分31从系数存储器32读取对应于类别的一组预测系数 码。 应用该组预测系数和预测抽头,从而在要处理的像素的位置处产生所有颜色信号,即R,G和B信号。
    • 35. 发明授权
    • Integrated circuit and information signal processing apparatus having multiple processing portions
    • 具有多个处理部分的集成电路和信息信号处理装置
    • US07403235B2
    • 2008-07-22
    • US10762996
    • 2004-01-22
    • Hideo NakayaTetsujiro Kondo
    • Hideo NakayaTetsujiro Kondo
    • H04N7/01G06K9/32
    • H04N7/0125H04N7/0137H04N7/0145
    • An image signal processing apparatus having three processing portions. A first processing portion generates a motion class that corresponds to a target position in an output image signal based on an input image signal. A second portion generates a space class corresponding to the target position based on the input image signal and synthesizes the space class and the motion class to generate one class. A third portion selects multiple items of pixel data positioned in a periphery of this target position based on the input image signal and generates pixel data of the target position in the output image signal according to an estimate equation using the multiple items of pixel data and coefficient data corresponding to the class. These processing portions are respectively constituted of integrated circuits (ICs) having the same configuration. These ICs have first and second functional blocks. Each of the functional blocks changes its functionality according to setting.
    • 一种具有三个处理部分的图像信号处理装置。 第一处理部分基于输入图像信号产生对应于输出图像信号中的目标位置的运动类别。 第二部分基于输入图像信号产生与目标位置对应的空间类别,并且合成空间类别和运动类别以生成一个类别。 第三部分基于输入图像信号选择位于该目标位置周边的多个像素数据,并根据使用多个像素数据和系数的估计方程生成输出图像信号中的目标位置的像素数据 对应类的数据。 这些处理部分分别由具有相同结构的集成电路(IC)构成。 这些IC具有第一和第二功能块。 每个功能块根据设置改变其功能。