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    • 1. 发明授权
    • Image signal analyzing system and coding system
    • 图像信号分析系统和编码系统
    • US5613015A
    • 1997-03-18
    • US456607
    • 1995-06-01
    • Kazuhiro SuzukiYutaka KoshiSetsu KunitakeShunichi KimuraKoh Kamizawa
    • Kazuhiro SuzukiYutaka KoshiSetsu KunitakeShunichi KimuraKoh Kamizawa
    • G06T7/60G06T9/00G06K9/34
    • G06T7/60G06T9/007
    • An image signal analyzing system for analyzing a pattern of an image on the basis of the waveforms of the image signals. The system includes a block extracting section for sampling an image signal and dividing the sampled image signal into input pixel blocks each consisting of m.times.n pixels (m and n are positive integers), a mean value separating section for subtracting a mean value from each pixel in the pixel block, a first analyzing section for analyzing a feature quantity of the direction of the tone variation of a mean-value separated block obtained from the mean value separating section, a second analyzing section for analyzing a feature quantity of the direction of amplitude of the mean-value separated block, and a judging section for judging a feature of waveform of the input pixel block on the basis of the analysis results of the first analyzing section and the second analyzing section.
    • 一种用于基于图像信号的波形分析图像的图案的图像信号分析系统。 该系统包括块提取部分,用于对图像信号进行采样并将采样的图像信号分成由m×n个像素组成的输入像素块(m和n为正整数),平均值分离部分,用于从 像素块,用于分析从平均值分离部获得的平均值分离块的色调变化的方向的特征量的第一分析部,用于分析平均值分离部的振幅方向的特征量的第二分析部 平均值分离块,以及用于基于第一分析部分和第二分析部分的分析结果来判断输入像素块的波形特征的判断部分。
    • 2. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US5978561A
    • 1999-11-02
    • US728089
    • 1996-10-09
    • Shunichi KimuraAkihiro AndohSetsu KunitakeShinji ShishidoYutaka KoshiKoh Kamizawa
    • Shunichi KimuraAkihiro AndohSetsu KunitakeShinji ShishidoYutaka KoshiKoh Kamizawa
    • G03G15/01G06K15/00G06K15/12H04N1/00H04N1/04H04N1/387H04N1/411B41B15/00B41J2/385H04N1/417
    • G06K15/00G06K15/129G06K2215/0022G06K2215/0094
    • The memory capacity required for temporarily holding image data with respect to a printer is reduced, and loads involved in supplying image data, such as decoding and conversion processes, are dispersed and reduced. The apparatus divides image data in parallel with a main scanning direction by an image divider, stores the divided data in image data memory, and supplies the divided image data to image data temporary memory by an image data supply to perform a decoding process. In order to provide a matching with a process speed, the image data temporary memory temporarily retains the divided image data, and a printer prints an image on a sheet of paper on the basis of the divided image data stored in the image data temporary memory. A predictor predicts a supply process time by way of image data supply, and an image data supply control causes the image data supply to start the supply process of the divided image data at a time preceding the time for the start of the print process by the printer according to the time predicted.
    • 临时保存关于打印机的图像数据所需的存储器容量减少,并且分散和减少诸如解码和转换处理之类的提供图像数据所涉及的负载。 该装置通过图像分割器与主扫描方向并行地分割图像数据,将划分的数据存储在图像数据存储器中,并通过图像数据供给分割图像数据到图像数据临时存储器,以执行解码处理。 为了提供与处理速度的匹配,图像数据临时存储器暂时保留分割的图像数据,并且打印机基于存储在图像数据临时存储器中的分割图像数据在一张纸上打印图像。 预测器通过图像数据供给来预测供给处理时间,并且图像数据供给控制使图像数据供给在开始印刷处理的时间之前开始分割图像数据的供给处理 打印机根据时间预测。
    • 3. 发明授权
    • Image analysis method and device
    • 图像分析方法和装置
    • US06236756B1
    • 2001-05-22
    • US09210769
    • 1998-12-14
    • Shunichi KimuraSetsu KunitakeYutaka KoshiKoh Kamizawa
    • Shunichi KimuraSetsu KunitakeYutaka KoshiKoh Kamizawa
    • G06K946
    • G06T9/00
    • An image analysis device and method that have a mechanism for exactly predicting image quality determining factors and determine a coding parameter for an input image by combining plural different image quality determining factors, which does not deteriorate the image quality of the input image and raises the compression ratio as high as possible. In the image analysis device, an image extraction unit 102 extracts an image area to be analyzed from an input image 101. The extracted image area 102 is input to plural physical quantity calculating units 104. Each physical quantity calculating unit 104 calculates a physical quantity 105 independently of others and each of obtained physical quantities 105 is input to plural image quality determining factor calculating units 106. On receiving the plural physical quantities 105, each of the image quality determining factor calculating units 106 calculates an image quality determining factor 107. A coding parameter calculating unit 108 calculates a coding parameter based on the plural image quality determining factors 107 output from the plural image quality determining factor calculating units 106.
    • 一种图像分析装置和方法,具有用于精确地预测图像质量决定因素的机构,并且通过组合多个不同的图像质量确定因子来确定输入图像的编码参数,这不会降低输入图像的图像质量并提高压缩 比例尽可能高。 在图像分析装置中,图像提取单元102从输入图像101提取要分析的图像区域。提取图像区域102被输入到多个物理量计算单元104.每个物理量计算单元104计算物理量105 独立于其他,并且获得的每个物理量105被输入到多个图像质量确定因子计算单元106.在接收到多个物理量105时,每个图像质量确定因子计算单元106计算图像质量确定因子107.编码 参数计算单元108基于从多个图像质量确定因子计算单元106输出的多个图像质量确定因子107来计算编码参数。
    • 7. 发明授权
    • Markov model image encoding device and method
    • 马尔可夫模型图像编码装置及方法
    • US5987182A
    • 1999-11-16
    • US876484
    • 1997-06-16
    • Shunichi KimuraSetsu KunitakeTaro YokoseYutaka KoshiKoh Kamizawa
    • Shunichi KimuraSetsu KunitakeTaro YokoseYutaka KoshiKoh Kamizawa
    • H04N19/50G06T9/00H03M7/40H04N1/41H04N1/417H04N19/102H04N19/13H04N19/167H04N19/196H04N19/423H04N19/91G06K9/36
    • G06T9/00
    • A plurality of reference pixel extracting means check their corresponding reference pixel ranges and pixel values in predetermined auxiliary regions. Reference pixel range selecting means selects a reference pixel range based on the checked pixel values. When the number of types of pixel values for an input image is found to be locally low in the selected reference pixel range, the number of reference pixels is increased. On the other hand, when the number of types of the pixel values for the input image is found to be locally large, the number of reference pixels is decreased. As a result, states can be generated by a Markov model image encoding system capable of improving encoding efficiency without increasing the number of the states sharply. Owing to the above construction, even when the number of tones for the input image is high upon Markov model image encoding, the number of reference pixels can be increased without abruptly increasing the number of states later on to improve compression efficiency.
    • 多个参考像素提取装置在预定的辅助区域中检查其对应的参考像素范围和像素值。 参考像素范围选择装置基于所检查的像素值来选择参考像素范围。 当在所选择的参考像素范围中发现输入图像的像素值的数量在本地较低时,参考像素的数量增加。 另一方面,当发现输入图像的像素值的类型的数量局部地大时,参考像素的数量减少。 结果,可以通过能够提高编码效率的马尔可夫模型图像编码系统来生成状态,而不会急剧增加状态数。 由于上述结构,即使在马尔科夫模型图像编码时输入图像的色调数量高的情况下,也可以增加参考像素的数量而不会稍后突然增加状态数来提高压缩效率。
    • 8. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US5821969A
    • 1998-10-13
    • US728093
    • 1996-10-09
    • Yutaka KoshiShinji ShishidoSetsu KunitakeShunichi KimuraAkihiro AndohKoh Kamizawa
    • Yutaka KoshiShinji ShishidoSetsu KunitakeShunichi KimuraAkihiro AndohKoh Kamizawa
    • H04N1/60G06K15/02H04N1/46H03M1/82
    • G06K15/02G06K2215/0077
    • In an image forming apparatus, memory capacity necessary for temporarily retaining image data is reduced. A decoding process is carried out by diving image data for one frame into element data for each color component Y, M, C and K. The element data for each color component is stored in the temporary memory. A controller starts conveyance of recording media on the basis of estimation of the completion time of decoding processing by a decoding speed estimator, and controls the recorders for Y, M, C and K to execute the recording process of element data retained in the temporary memory. This results in an image being recorded on the recording medium for each element data retained in the temporary memory, such that the conveyance of the recording media and the supply of data to the recorders for Y, M, C and K are matched, and the data amount to be retained in the temporary memory is reduced.
    • 在图像形成装置中,减少了暂时保留图像数据所需的存储容量。 通过将一帧的图像数据潜入每个颜色分量Y,M,C和K的元素数据来进行解码处理。每个颜色分量的元素数据被存储在临时存储器中。 控制器基于解码速度估计器对解码处理的完成时间的估计开始传送记录介质,并且控制Y,M,C和K的记录器执行保存在临时存储器中的元素数据的记录处理 。 这导致在记录介质上记录保留在临时存储器中的每个元素数据的图像,使得记录介质的传送和向Y,​​M,C和K的记录器提供数据被匹配,并且 减少了要保存在临时存储器中的数据量。
    • 10. 发明授权
    • Apparatus for encoding an image signal
    • 用于编码图像信号的装置
    • US5598484A
    • 1997-01-28
    • US385204
    • 1995-02-08
    • Kazuhiro SuzukiKoh KamizawaYutaka KoshiSetsu Kunitake
    • Kazuhiro SuzukiKoh KamizawaYutaka KoshiSetsu Kunitake
    • G06T9/00H04N7/26H04N7/28H04N7/30G06K9/36G06K9/46
    • H04N19/59H04N19/14H04N19/154H04N19/176H04N19/18H04N19/94H04N19/124H04N19/132H04N19/60
    • Apparatus for encoding an image signal which is capable of improving the quality of a reproduced image with respect to not only a general image in which electric power is concentrated in low-frequency region coefficients but also an image where the electric power is concentrated in a high-frequency region. The apparatus comprises a blocking device in which a rectangular area in an image is detected from a digital image signal as a pixel block, and is subjected to an orthogonal transform by a converter to obtain a transformed coefficient. In addition, an activity calculator calculates the variance of the image within the block, and electric power to be preserved during encoding is determined by a power-preservation-rate determining device on the basis of the variance determined. An optimum mask is selected by a mask selector on the basis of a transformed coefficient from the converter and a power preservation rate from the power-preservation-rate determining device, and the selection of the transformed coefficient is performed by a coefficient selector by means of this mask. The transformed coefficient after being selected is quantized by a quantizer, is encoded to be outputted through a transmission line.
    • 用于对图像信号进行编码的装置,其不仅能够相对于电力集中在低频区域系数的一般图像而且能够将电力集中在高的图像中来提高再现图像的质量 频区。 该装置包括阻挡装置,其中从数字图像信号中检测图像中的矩形区域作为像素块,并且通过转换器进行正交变换以获得变换的系数。 此外,活动计算器计算块内的图像的方差,并且根据确定的方差由电力保存率确定装置确定编码期间要保留的电力。 基于来自转换器的变换系数和来自保存速率确定装置的保存速率,通过掩模选择器选择最佳掩模,并且变换系数的选择由系数选择器通过 这个面具。 选择后的变换后的系数由量化器量化,被编码为通过传输线输出。