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    • 1. 发明申请
    • IMAGE FORMING SYSTEM AND MAINTENANCE EXECUTION PROGRAM
    • 图像形成系统和维护执行程序
    • US20080310876A1
    • 2008-12-18
    • US12195677
    • 2008-08-21
    • Kiyoshi OKAMOTONorifumi MIYAKETomokazu NAKAMURAKiyoshi WATANABETakayuki FUJIIHitoshi KATO
    • Kiyoshi OKAMOTONorifumi MIYAKETomokazu NAKAMURAKiyoshi WATANABETakayuki FUJIIHitoshi KATO
    • G03G15/00
    • G03G15/55
    • There is provided an image forming system that are capable of preventing a user or operator from forgetting to carry out a maintenance operation based on required sub-maintenance items after execution of a maintenance operation based on an associated maintenance item, such as component replacement, cleaning, or adjustment. A table of maintenance items and sub-maintenance items associated with respective ones of the maintenance items is stored in a ROM. When a CPU determines that a maintenance operation based on a selected one of the maintenance items has been completed, the CPU determines whether or not there is any sub-maintenance item associated with the selected maintenance item, by referring to the table. When it is determined that there is one or more sub-maintenance items associated with the selected maintenance item, a CPU provides control to display the sub-maintenance item or items in an operating/display unit.
    • 提供了一种图像形成系统,其能够基于相关联的维护项目(诸如部件更换,清洁)而在执行维护操作之后基于所需的子维护项目而忘记使用者或操作者进行维护操作 ,或调整。 与各个维护项目相关联的维护项目和子维护项目的表存储在ROM中。 当CPU确定基于所选择的一个维护项目的维护操作已经完成时,CPU通过参考该表来确定是否存在与所选择的维护项目相关联的任何子维护项目。 当确定存在与所选择的维护项目相关联的一个或多个子维护项目时,CPU提供控制以在操作/显示单元中显示子维护项目。
    • 2. 发明申请
    • IMAGE FORMING SYSTEM AND MAINTENANCE EXECUTION PROGRAM
    • 图像形成系统和维护执行程序
    • US20100226679A1
    • 2010-09-09
    • US12784778
    • 2010-05-21
    • Kiyoshi OKAMOTONorifumi MIYAKETomokazu NAKAMURAKiyoshi WATANABETakayuki FUJIIHitoshi KATO
    • Kiyoshi OKAMOTONorifumi MIYAKETomokazu NAKAMURAKiyoshi WATANABETakayuki FUJIIHitoshi KATO
    • G03G15/00G06F3/12
    • G03G15/55
    • There is provided an image forming system that are capable of preventing a user or operator from forgetting to carry out a maintenance operation based on required sub-maintenance items after execution of a maintenance operation based on an associated maintenance item, such as component replacement, cleaning, or adjustment. A table of maintenance items and sub-maintenance items associated with respective ones of the maintenance items is stored in a ROM. When a CPU determines that a maintenance operation based on a selected one of the maintenance items has been completed, the CPU determines whether or not there is any sub-maintenance item associated with the selected maintenance item, by referring to the table. When it is determined that there is one or more sub-maintenance items associated with the selected maintenance item, a CPU provides control to display the sub-maintenance item or items in an operating/display unit.
    • 提供了一种图像形成系统,其能够基于相关联的维护项目(诸如部件更换,清洁)而在执行维护操作之后基于所需的子维护项目而忘记使用者或操作者进行维护操作 ,或调整。 与各个维护项目相关联的维护项目和子维护项目的表存储在ROM中。 当CPU确定基于所选择的一个维护项目的维护操作已经完成时,CPU通过参考该表来确定是否存在与所选择的维护项目相关联的任何子维护项目。 当确定存在与所选择的维护项目相关联的一个或多个子维护项目时,CPU提供控制以在操作/显示单元中显示子维护项目。
    • 3. 发明申请
    • IMAGE PROCESSING APPARATUS, IMAGE CAPTURING APPARATUS, IMAGE PROCESSING METHOD AND RECORDING MEDIUM
    • 图像处理设备,图像捕获设备,图像处理方法和记录介质
    • US20090087099A1
    • 2009-04-02
    • US12234669
    • 2008-09-21
    • Tomokazu NAKAMURA
    • Tomokazu NAKAMURA
    • G06K9/46
    • G06K9/00281G06K9/00315H04N5/23212H04N5/23219H04N5/23222H04N5/772H04N9/804
    • Frame images captured in a continuous manner are acquired, and temporarily stored. Characteristic points of faces in the acquired frame images are extracted. A sum (expression change amount) of distances between characteristic points of the face (face parts) in a current frame and the characteristic points of a preceding frame is calculated. The target frame image in which the expression change amount is largest, and m frame images preceding and following the target frame image in which the expression change amount is largest are extracted as best image candidates. A best shot image is extracted from the best image candidates and stored in a storage medium. Thus, only an image (best shot image) which contains a face which a user wishes to record can be efficiently extracted from among images captured in a continuous manner, and stored.
    • 获取以连续方式捕获的帧图像,并临时存储。 提取所获取的帧图像中的面部特征点。 计算当前帧中的面部(面部部分)的特征点与前一帧的特征点之间的距离的和(表达式变化量)。 表达式变化量最大的目标帧图像和表达式变化量最大的目标帧图像之前和之后的m帧图像被提取为最佳图像候选。 从最佳图像候选中提取最佳拍摄图像并存储在存储介质中。 因此,可以从连续地拍摄的图像中有效地提取包含用户想要记录的面部的图像(最佳拍摄图像)并被存储。
    • 6. 发明申请
    • APPARATUS FOR DETECTING BLINKING STATE OF EYE
    • 用于检测眼睛闪烁状态的装置
    • US20080252745A1
    • 2008-10-16
    • US12101766
    • 2008-04-11
    • Tomokazu NAKAMURA
    • Tomokazu NAKAMURA
    • H04N5/228
    • H04N5/232H04N5/23219H04N5/23245
    • A state-of-eye distinguishing means calculates a feature value that represents a state of an eye, for an eye-area based on pixel data of pixels that constitute the eye-area. A threshold value setting means calculates a first threshold value representing a feature value at a first transition point from an open state to a closed state and a second threshold value representing a feature value at a second transition point from the closed state to the open state, based on a feature value calculated for a targeted eye when the targeted eye is open. A blinking state detection means detects the blinking state of the eye corresponding to the eye-area, by sequentially comparing feature values which are sequentially calculated for a series of frame images by the state-of-eye distinguishing means with one of the first threshold value and the second threshold value.
    • 眼睛辨别手段基于构成眼睛区域的像素的像素数据,计算表示眼睛的状态的特征量,对于眼睛区域。 阈值设定装置计算表示从打开状态到关闭状态的第一转变点处的特征量的第一阈值和表示从关闭状态到打开状态的第二转变点的特征值的第二阈值, 基于当目标眼睛打开时针对目标眼睛计算的特征值。 闪烁状态检测装置通过将通过眼睛辨别装置依次计算的一系列帧图像的特征值与第一阈值之一顺序地比较来检测与眼睛区域相对应的眼睛的闪烁状态 和第二阈值。
    • 8. 发明申请
    • IMAGE PROCESSING METHOD, APPARATUS AND COMPUTER PROGRAM PRODUCT, AND IMAGING APPARATUS, METHOD AND COMPUTER PROGRAM PRODUCT
    • 图像处理方法,装置和计算机程序产品,成像装置,方法和计算机程序产品
    • US20090002519A1
    • 2009-01-01
    • US12163773
    • 2008-06-27
    • Tomokazu NAKAMURA
    • Tomokazu NAKAMURA
    • H04N9/73
    • H04N9/735
    • An appropriate white balance coefficient is calculated using an evaluation value of a specific chromaticity or an imaging condition, in addition to face area detection information, in the following manner. A first white balance coefficient is calculated by a first white balance coefficient calculation unit based on a color image, and a second white balance coefficient is calculated by a second white balance coefficient calculation unit based on a specific subject of the color image. Then, a third white balance coefficient is calculated by a white balance combining unit by weighting the first white balance coefficient and the second white balance coefficient based on an evaluation result of a specific chromaticity evaluation unit or an imaging condition of an imaging condition control unit.
    • 除了面部区域检测信息之外,使用特定色度或成像条件的评估值,以下列方式计算适当的白平衡系数。 第一白平衡系数由第一白平衡系数计算单元基于彩色图像计算,并且第二白平衡系数由第二白平衡系数计算单元基于彩色图像的特定对象计算。 然后,通过白平衡组合单元通过基于特定色度评估单元的评估结果或成像条件控制单元的成像条件对第一白平衡系数和第二白平衡系数进行加权来计算第三白平衡系数。