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    • 3. 发明授权
    • Image reader
    • 图像阅读器
    • US5191445A
    • 1993-03-02
    • US563923
    • 1990-08-07
    • Hiromitsu KurokawaTadayoshi MiyoshiTakashi KuriyamaIchiro Shishido
    • Hiromitsu KurokawaTadayoshi MiyoshiTakashi KuriyamaIchiro Shishido
    • H04N1/401H04N5/335H04N5/361H04N5/365H04N5/372H04N5/378
    • H04N1/401
    • There is provided an improved image reader. In the image reader, light from an object is converted into an analog signal by a photoelectric converter. The signal is quantized by an A/D converter on the basis of top and bottom reference voltages to produce a digital picture signal. A digital picture signal corresponding to a dark current flowing to the photoelectric converter is stored in a memory as a dark current data. Also a digital picture signal corresponding to the optical strength of predetermined level is stored in another memory as a white level data. Then, the top and bottom reference voltages are produced which correspond to the top and bottom quantization-threshold values on the basis of the dark current and white level data, respectively. The top and bottom reference voltages are then respectively applied to the A/D converter to produce the digital picture signal without signal distortion.
    • 提供了一个改进的图像阅读器。 在图像读取器中,来自物体的光由光电转换器转换为模拟信号。 信号由A / D转换器基于顶部和底部参考电压量化,以产生数字图像信号。 对应于流向光电转换器的暗电流的数字图像信号作为暗电流数据存储在存储器中。 此外,与预定水平的光强度相对应的数字图像信号也作为白电平数据存储在另一存储器中。 然后,分别基于暗电流和白电平数据产生对应于顶部和底部量化阈值的顶部和底部参考电压。 然后将顶部和底部参考电压分别施加到A / D转换器以产生没有信号失真的数字图像信号。
    • 4. 发明授权
    • Method and apparatus for processing color signals to convert between
colorimetric systems
    • 用于处理颜色信号以在比色系统之间转换的方法和装置
    • US5264927A
    • 1993-11-23
    • US658141
    • 1991-02-20
    • Tadayoshi MiyoshiTakashi KuriyamaIchiro ShishidoMasaru OsadaKaoru Kitami
    • Tadayoshi MiyoshiTakashi KuriyamaIchiro ShishidoMasaru OsadaKaoru Kitami
    • H04N1/60H04N1/46
    • H04N1/6016
    • A first set of different color signals represented in a colorimetric system is converted into a second set of different color signals represented in another colorimetric system. Predetermined main parts of the second set of the color signals are determined in response to predetermined first portions of the first set of the color signals. Calculation coefficients are determined in response to the first portions of the first set of the color signals. Predetermined subordinate parts of the second set of the color signals are calculated from predetermined second portions of the first set of the color signals and the calculation coefficients according to an interpolation. The determined main parts of the second set of the color signals and the calculated subordinate parts of the second set of the color signals are combined into a whole of the second set of the color signals. The calculation coefficients are designed so that, if the color signals in the first set vary by equal values, achromatic color data which results from the calculation lies on an achromatic color axis in a color space defined with respect to the readout data of the main parts of the second set of the color signals, and that the sum of squared errors of color conversion is minimized.
    • 在比色系统中表示的第一组不同颜色信号被转换成另一个比色系统中表示的不同颜色信号的第二组。 响应于第一组颜色信号的预定的第一部分来确定第二组颜色信号的预定主要部分。 响应于第一组颜色信号的第一部分来确定计算系数。 根据插值,从第一组彩色信号的预定第二部分和计算系数计算第二组彩色信号的预定次级部分。 第二组颜色信号的确定的主要部分和第二组彩色信号的计算的下属部分组合成第二组彩色信号的整体。 计算系数被设计成使得如果第一组中的颜色信号变化相等的值,则由计算产生的无彩色数据位于相对于主要部分的读出数据定义的颜色空间中的无彩色轴上 的第二组颜色信号,并且颜色转换的平方误差之和被最小化。
    • 5. 发明申请
    • ITEM SELECTING APPARATUS, ITEM SELECTING METHOD AND ITEM SELECTING PROGRAM
    • 项目选择装置,项目选择方法和项目选择计划
    • US20130046766A1
    • 2013-02-21
    • US13642024
    • 2011-04-21
    • Ichiro ShishidoKonosuke Matsushita
    • Ichiro ShishidoKonosuke Matsushita
    • G06F17/30
    • G06N5/04G06F17/30752G06Q30/00G06Q30/02
    • In an item selecting apparatus performing a selection of an item to be recommended for each user, it is performed to calculate, with respect to each usage registration of an item by a user, an elapsed value as a difference between a time point of creating the item or staring providing of the item and a predetermined time point, acquire a usage characteristics of each user based on the elapsed value and calculate a freshness value representing a degree of freshness about each item. Further, using correspondence rules of different characteristics corresponding to the usage characteristics, it is performed to calculate a novelty index by applying the freshness value of each item on the correspondence rule corresponding to the usage characteristics of each user (S420), calculate a priority of the item for each user, based on the novelty index (S430) and performing a selection of the item (S440).
    • 在执行对每个用户推荐的项目的选择的项目选择装置中,执行关于用户对项目的每次使用登记的过程值,作为创建时间点的时间差 项目或凝视提供项目和预定时间点,基于经过值获取每个用户的使用特征,并计算表示每个项目的新鲜程度的新鲜度值。 此外,使用与使用特性相对应的不同特征的对应规则,通过将每个项目的新鲜度值应用于与每个用户的使用特性相对应的对应规则来执行新颖性指标(S420),计算优先级 基于新颖性指标(S430),对每个用户的项目进行项目的选择(S440)。
    • 7. 发明授权
    • Music-piece classifying apparatus and method, and related computer program
    • 乐器分类装置及方法及相关计算机程序
    • US07544881B2
    • 2009-06-09
    • US11544864
    • 2006-10-10
    • Masaaki MakinoIchiro Shishido
    • Masaaki MakinoIchiro Shishido
    • G10H1/00G10H1/18
    • G11B27/28G06F17/30743G06F17/30749G11B27/105G11B27/3027
    • A bibliographic-information impression word is generated from a bibliographic information segment about selected one of music pieces. An acoustic feature quantity of an audio signal representing the selected music piece is calculated. A feature-quantity impression word is generated from the calculated acoustic feature quantity. A degree of conformity between the bibliographic-information impression word and the feature-quantity impression word is determined. Both the bibliographic-information impression word and the feature-quantity impression word are selected as final impression words when the determined conformity degree is greater than a predetermined threshold value. One is selected from the bibliographic-information impression word and the feature-quantity impression word as a final impression word when the determined conformity degree is not greater than the predetermined threshold value. A signal representing the final impression word or words is stored into a storage in relation to the selected music piece.
    • 书目信息印象词从关于所选音乐片段的书目信息片段生成。 计算表示所选乐曲的音频信号的声学特征量。 从计算的声学特征量生成特征量印象词。 确定书目信息印象词与特征量印象词之间的一致性程度。 当确定的一致度大于预定阈值时,书目信息印象词和特征量印象词都被选择为最终印象词。 当确定的一致性程度不大于预定阈值时,从书目信息印象词和特征量印象词中选择一个作为最终印象词。 表示最终印象词或词的信号被存储在与所选乐曲相关的存储器中。
    • 8. 发明授权
    • Item selecting apparatus, item selecting method and item selecting program
    • 项目选择装置,项目选择方法和项目选择程序
    • US08972419B2
    • 2015-03-03
    • US13642024
    • 2011-04-21
    • Ichiro ShishidoKonosuke Matsushita
    • Ichiro ShishidoKonosuke Matsushita
    • G06F17/30G06Q30/00G06Q30/02
    • G06N5/04G06F17/30752G06Q30/00G06Q30/02
    • In an item selecting apparatus performing a selection of an item to be recommended for each user, it is performed to calculate, with respect to each usage registration of an item by a user, an elapsed value as a difference between a time point of creating the item or staring providing of the item and a predetermined time point, acquire a usage characteristics of each user based on the elapsed value and calculate a freshness value representing a degree of freshness about each item. Further, using correspondence rules of different characteristics corresponding to the usage item on the correspondence rule corresponding to the usage characteristics of each user, calculate a priority of the item for each user, based on the novelty index and performing a selection of the item.
    • 在执行对每个用户推荐的项目的选择的项目选择装置中,执行关于用户对项目的每次使用登记的过程值,作为创建时间点的时间差 项目或凝视提供项目和预定时间点,基于经过值获取每个用户的使用特征,并计算表示每个项目的新鲜程度的新鲜度值。 此外,使用对应于与每个用户的使用特性相对应的对应规则上的使用项目的不同特征的对应规则,基于新颖性索引来计算每个用户的项目的优先级,并且对项目进行选择。
    • 9. 发明授权
    • Music-piece classification based on sustain regions and sound thickness
    • 基于维持区域和声音厚度的音乐片段分类
    • US08438013B2
    • 2013-05-07
    • US12929711
    • 2011-02-10
    • Ichiro Shishido
    • Ichiro Shishido
    • G10H2240/075G10L11/00G10L19/02
    • G10H1/0008G10H2210/066G10H2240/081G10H2250/235G10L25/90
    • Audio data representative of a music piece is converted into data components in respective different frequency bands for every unit time interval to generate time frequency data pieces assigned to the respective different frequency bands. From the generated time frequency data pieces, detection is made as to each sustain region in which an effective data component in one of the frequency bands continues to occur during a reference time interval or longer. A feature quantity is calculated from at least one of (1) a number of the detected sustain regions and (2) magnitudes of the effective data components in the detected sustain regions. The music piece is classified in response to the calculated feature quantity.
    • 代表乐曲的音频数据在每个单位时间间隔被转换成各个不同频带的数据分量,以产生分配给各个不同频带的时间频率数据。 从所生成的时间频率数据中,对参考时间间隔或更长时间内持续发生频带中的一个频带中的有效数据分量的每个维持区域进行检测。 从(1)检测到的维持区域的数量和(2)检测到的维持区域中的有效数据分量的大小中的至少一个计算特征量。 乐曲根据计算的特征量进行分类。
    • 10. 发明申请
    • Music-piece classifying apparatus and method, and related computed program
    • 乐器分类装置和方法,以及相关的计算程序
    • US20110132173A1
    • 2011-06-09
    • US12929711
    • 2011-02-10
    • Ichiro Shishido
    • Ichiro Shishido
    • G10H7/00
    • G10H1/0008G10H2210/066G10H2240/081G10H2250/235G10L25/90
    • Audio data representative of a music piece is converted into data components in respective different frequency bands for every unit time interval to generate time frequency data pieces assigned to the respective different frequency bands. From the generated time frequency data pieces, detection is made as to each sustain region in which an effective data component in one of the frequency bands continues to occur during a reference time interval or longer. A feature quantity is calculated from at least one of (1) a number of the detected sustain regions and (2) magnitudes of the effective data components in the detected sustain regions. The music piece is classified in response to the calculated feature quantity.
    • 代表乐曲的音频数据在每个单位时间间隔被转换成各个不同频带的数据分量,以产生分配给各个不同频带的时间频率数据。 从所生成的时间频率数据中,对参考时间间隔或更长时间内持续发生频带中的一个频带中的有效数据分量的每个维持区域进行检测。 从(1)检测到的维持区域的数量和(2)检测到的维持区域中的有效数据分量的大小中的至少一个计算特征量。 乐曲根据计算的特征量进行分类。