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    • 1. 发明专利
    • Image data processing method and image data processing device
    • 图像数据处理方法和图像数据处理装置
    • JP2014192659A
    • 2014-10-06
    • JP2013065502
    • 2013-03-27
    • Yutaka Yamamoto裕 山本
    • YAMAMOTO YUTAKAZENITANI KENGO
    • H04N7/01G06T7/60G09G3/20
    • PROBLEM TO BE SOLVED: To realize interlace release in which objective restoration performance is high, by rasing sureness in diagonal line determination to well restore a diagonal line part.SOLUTION: A diagonal line determination part sets a local circulation part comprising a plurality of pixels in upper and lower scan lines of an interpolation object pixel x, and calculates a total sum of differences between pixel values of two pixels in vertical direction while rotating one pixel by one pixel leftwise and rightwise respectively. An optimum rotation amount of a minimum total sum is obtained, and when a condition such as a difference between left and right optimum rotation amounts is a predetermined threshold value or larger is met, it is determined that there exists a diagonal line or a diagonal edge, and an inverse number of the optimum rotation amount is taken as extention direction of the diagonal line. If it is determined that there is no diagonal line, an interpolation value is obtained by a sample value Hlinear filter by using upper and lower pixels of the interpolation object pixel. If it is determined there is a diagonal line, an interpolation value is obtained by a simple linear interpolation in the extention direction of the diagonal line. Thus, since only a diagonal line of high sureness is extracted for interpolation in diagonal line extention direction, restoration performance is improved.
    • 要解决的问题:为了实现客观的恢复性能高的交错释放,通过在对角线确定中缓和确定性来恢复对角线部分。解决方案:对角线确定部分将包括多个像素的局部循环部分 插入对象像素x的上下扫描线,并且分别在左右一像素左右一像素的同时分别计算垂直方向上的两个像素的像素值之间的差的总和。 获得最小总和的最佳旋转量,并且当满足左右最佳旋转量之间的差异等条件为预定阈值或更大时,确定存在对角线或对角线边缘 ,并且将最佳旋转量的倒数作为对角线的延伸方向。 如果确定没有对角线,则通过使用插值对象像素的上部和下部像素,通过采样值H linear滤波器获得内插值。 如果确定存在对角线,则通过在对角线的延伸方向上的简单线性插值获得内插值。 因此,由于只有对角线延伸方向的内插提取了高可靠性的对角线,所以恢复性能得以提高。
    • 2. 发明专利
    • Dressmaking paper pattern preparing method
    • 连续纸图案制作方法
    • JP2014034749A
    • 2014-02-24
    • JP2012177676
    • 2012-08-10
    • Yutaka Yamamoto豊 山本
    • YAMAMOTO YUTAKA
    • A41H3/00A41H3/04A41H5/00
    • PROBLEM TO BE SOLVED: To provide a new paper pattern capable of enabling the provision of dress where matters such as "femininity" and a "function" are appropriately expressed.SOLUTION: A dressmaking paper pattern preparing method includes: drawing a basic pattern copied from a torso formed by the faithful reproduction of dimensions of a human body as a basic paper pattern based on planar drafting; performing development processing with respect to the basic pattern in order to add predetermined dimensions for "momentum" and "ease" to muscle portions, joint portions, or both of the portions expected to have extension/contraction on the basis of the exercise actuation of a human body; and developing a paper pattern to attain the recognition of elements of a "function" expressing the dynamic human motions.
    • 要解决的问题:提供一种能够适当表达诸如“女性气质”和“功能”之类的衣服的新纸张图案。解决方案:制衣纸图案制备方法包括:绘制从 由基于平面绘图的基于纸张图案的人体尺寸的忠实再现形成的躯干; 执行相对于基本图案的显影处理,以便基于运动激励来增加预期具有延伸/收缩的部分的肌肉部分,关节部分或两者的“动量”和“容易”的预定尺寸 人体; 并发展纸质模式,以表达对表达动态人类动议的“功能”要素的认可。
    • 3. 发明专利
    • Super resolution processing method and device
    • 超分辨处理方法和装置
    • JP2013033442A
    • 2013-02-14
    • JP2012025003
    • 2012-02-08
    • Yutaka Yamamoto裕 山本
    • YAMAMOTO YUTAKAZENITANI KENGO
    • G06T3/00G06T5/20H04N1/387
    • G06T3/4053
    • PROBLEM TO BE SOLVED: To provide a super resolution processing method whose sharpness is high in comparison with a conventional data interpolation method such as a Lanczos method, whose processing is easy in comparison with a TV regularization method, and by which real time processing is possible .SOLUTION: Super resolution processing is considered as interpolation processing between sample points, and super resolution processing is executed by a linear interpolation filter designed by using a sample value control theory. In an error system model in filter design, a pre-filter 19 is provided in front of a sampler 13 of a signal restoration system, a post-filter 17 is provided in the back of a zero-th hold 16, and gain of middle and high frequency band of characteristics K(z) of a digital filter 15 is raised by making at least either of characteristics Q(s) of the pre-filter 19 or characteristics P(s) of the post-filter 17 into low-pass characteristics. On the other hand, thus, linear interpolation is executed after dropping a high frequency band by passing a processing object image through a low-pass filter in an actual processing system in order to reduce generation of jaggy which tends to be conspicuous. Thus, a restoration image with high sharpness in which the jaggy is inconspicuous is obtained.
    • 要解决的问题:提供一种与诸如Lanczos方法的常规数据插值方法相比其清晰度高的超分辨率处理方法,其与TV正则化方法相比容易进行处理,并且通过实时 可以进行处理。 解决方案:超分辨率处理被认为是采样点之间的插值处理,超分辨率处理由使用样本值控制理论设计的线性插值滤波器执行。 在滤波器设计中的误差系统模型中,在信号恢复系统的采样器13的前方提供预滤波器19,后置滤波器17设置在第零个保持16的后面,中间的增益 并且通过使前置滤波器19的特性Q(s)或后置滤波器17的特性P(s)中的至少一个成为低通来提高数字滤波器15的特性K(z)的高频带 特点 另一方面,因此,通过在实际处理系统中通过低通滤波器使处理对象图像下降高频带之后执行线性插值,以便减少趋向于显着的锯齿的产生。 因此,获得具有高锐度的恢复图像,其中锯齿不显眼。 版权所有(C)2013,JPO&INPIT
    • 5. 发明专利
    • Band-division type encoding/decoding method and decoding device used for the same
    • 带状编码/解码方法和解码装置
    • JP2005057439A
    • 2005-03-03
    • JP2003285330
    • 2003-08-01
    • Akuseru:KkYutaka Yamamoto裕 山本株式会社アクセル
    • YAMAMOTO YUTAKA
    • H04N19/60G10L19/02G10L19/032H03H17/00H03H17/02H03M7/30H04N19/59H04N19/80G10L19/00H04N7/30
    • PROBLEM TO BE SOLVED: To provide a band-division type encoding/decoding method with which compressibility can be increased without deteriorating auditory sound quality so much or the auditory sound quality can be improved while nearly the same compressibility is maintained, and a decoding device used for the method. SOLUTION: An encoder-1 side performs down-sampling before band division to decrease the amount of data and a decoder-2 side performs up-sampling after band integration to restore a signal by a digital filter 24 designed under sample value H ∞ control. In a method for designing the filter, a conditional expression is so set that the error signal e c of the continuous time between a signal obtained by adding time delay to a signal generated by limiting the band of an input analog signal w e and the restored signal z c passed through an over-sampling D/A conversion part becomes small, and the conditional expression is converted into a finite-dimensional discrete time system to obtain an approximate calculation expression. After conditions of the filter etc., are determined, the calculation expression is solved as the problem of H ∞ control being one method of sample value designing. Consequently, a frequency component lost in the down-sampling can be restored to an extent where there is no auditory problem. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种能够提高压缩性而不会使听觉音质恶化或能够提高听觉音质,同时保持几乎相同的压缩性的频带分割型编码/解码方法, 解码装置用于该方法。 解决方案:编码器1侧在分频之前执行下采样以减少数据量,并且解码器2侧在频带积分之后执行上采样,以通过在采样值H下设计的数字滤波器24来恢复信号 控制。 在用于设计滤波器的方法中,条件表达式被设置为使得通过将时间延迟与通过限制输入的频带产生的信号相加而获得的信号之间的连续时间的误差信号e SB 通过过采样D / A转换部分的模拟信号w e 和恢复信号z c 变小,并将条件表达式转换为有限维离散 时间系统获得近似计算表达式。 在滤波器等的条件之后,确定了计算表达式,因为H 控制的问题是样本值设计的一种方法。 因此,下采样中丢失的频率分量可以恢复到没有听觉问题的程度。 版权所有(C)2005,JPO&NCIPI
    • 7. 发明授权
    • Fixing device and image forming apparatus having the same
    • 固定装置及其成像装置
    • US08615179B2
    • 2013-12-24
    • US12698383
    • 2010-02-02
    • Atsushi YamaguchiSeiichi KirikuboAkihiro HayashiYutaka YamamotoNaoto Sugaya
    • Atsushi YamaguchiSeiichi KirikuboAkihiro HayashiYutaka YamamotoNaoto Sugaya
    • G03G15/20
    • G03G15/2039
    • While a recording sheet is passing through a fixing nip formed between a heating roller 41 having a heating layer and a pressing roller 42 pressed against the roller 41, a coil 43 is exited by high-frequency power from a power source and causes the layer to generate heat. An unfixed image on the recording sheet is fixed by the heat. The power source detects a zero cross timing of a rectified alternating current, detects an instantaneous value at a point a predetermined period after the zero cross timing, calculates an effective power of the alternating current based on the instantaneous value, and controls the output power to be a desired value determined based on the effective power and the surface temperature of the roller 41. Thus power input to the power source can be quickly detected and power output to the coil can be quickly and stably controlled.
    • 当记录片材通过形成在具有加热层的加热辊41和压靠在辊41上的加压辊42之间的定影辊隙时,线圈43通过来自电源的高频电力而退出, 发热。 记录纸上的未固定图像由热量固定。 电源检测整流交流电的零交叉定时,在零交叉定时之后的预定时间段检测瞬时值,基于瞬时值计算交流电的有效功率,并将输出功率控制为 是基于辊41的有效功率和表面温度确定的期望值。因此,可以快速检测到电源的输入功率,并且能够快速且稳定地控制对线圈的功率输出。