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    • 1. 发明授权
    • Component-based application constructing method
    • 基于组件的应用程序构建方法
    • US07703072B2
    • 2010-04-20
    • US11070499
    • 2005-03-03
    • Tomohiro NakamuraHiroaki FujiiToshihiro EguchiChiaki KatoKazuya HisakiMasaru Takeuchi
    • Tomohiro NakamuraHiroaki FujiiToshihiro EguchiChiaki KatoKazuya HisakiMasaru Takeuchi
    • G06F9/44G06F17/00G06N5/02
    • G06F11/008G06F11/0727G06F11/0793
    • Reliability is evaluated in constructing a component based-on application and an application for realizing reliability required can be constructed efficiently. A run-time history such as an occurrence frequency of errors, a recovery time required at error occurrence, and a processing capacity at preventive maintenance is added per software component to a run-time history list having been recoded per execution environment such as an application ID, combined component IDs, and executed hardware ID. From these pieces of information, an interval of performing preventive maintenance recommended per software component during system construction is calculated. By comparing reliability per software component and reliability required for the system, advisability is determined and conformance is evaluated. An execution schedule for preventive maintenance and a processing capability are calculated about the entire component-based application created by combining the software components. By calculating the reliability and the processing capability in the entire system to be compared to those required for the entire system, advisability is determined and conformance is evaluated.
    • 在构建基于组件的应用程序中评估可靠性,并且可以有效地构建用于实现所需可靠性的应用。 每个软件组件将每个执行环境例如应用程序重新编码的运行时历史列表添加诸如错误发生频率,错误发生时所需的恢复时间和预防性维护处理能力的运行时历史 ID,组合组件ID和执行的硬件ID。 从这些信息中,计算在系统构造期间对每个软件组件推荐的间隔执行预防性维护。 通过比较每个软件组件的可靠性和系统所需的可靠性,确定可靠性并评估一致性。 计算关于通过组合软件组件创建的整个基于组件的应用程序的预防性维护执行计划和处理能力。 通过计算整个系统的可靠性和处理能力与整个系统所需的可靠性和处理能力进行比较,确定可靠性并评估一致性。
    • 2. 发明申请
    • Component-based application constructing method
    • 基于组件的应用程序构建方法
    • US20060085664A1
    • 2006-04-20
    • US11070499
    • 2005-03-03
    • Tomohiro NakamuraHiroaki FujiiToshihiro EguchiChiaki KatoKazuya HisakiMasaru Takeuchi
    • Tomohiro NakamuraHiroaki FujiiToshihiro EguchiChiaki KatoKazuya HisakiMasaru Takeuchi
    • G06F11/00
    • G06F11/008G06F11/0727G06F11/0793
    • Reliability is evaluated in constructing a component based-on application and an application for realizing reliability required can be constructed efficiently. A run-time history such as an occurrence frequency of errors, a recovery time required at error occurrence, and a processing capacity at preventive maintenance is added per software component to a run-time history list having been recoded per execution environment such as an application ID, combined component IDs, and executed hardware ID. From these pieces of information, an interval of performing preventive maintenance recommended per software component during system construction is calculated. By comparing reliability per software component and reliability required for the system, advisability is determined and conformance is evaluated. An execution schedule for preventive maintenance and a processing capability are calculated about the entire component-based application created by combining the software components. By calculating the reliability and the processing capability in the entire system to be compared to those required for the entire system, advisability is determined and conformance is evaluated.
    • 在构建基于组件的应用程序中评估可靠性,并且可以有效地构建用于实现所需可靠性的应用。 每个软件组件将每个执行环境例如应用程序重新编码的运行时历史列表添加诸如错误发生频率,错误发生时所需的恢复时间和预防性维护处理能力的运行时历史 ID,组合组件ID和执行的硬件ID。 从这些信息中,计算在系统构造期间对每个软件组件推荐的间隔执行预防性维护。 通过比较每个软件组件的可靠性和系统所需的可靠性,确定可靠性并评估一致性。 计算关于通过组合软件组件创建的整个基于组件的应用程序的预防性维护执行计划和处理能力。 通过计算整个系统的可靠性和处理能力与整个系统所需的可靠性和处理能力进行比较,确定可靠性并评估一致性。
    • 6. 发明授权
    • Endoscope optical system and endoscope
    • 内镜光学系统和内窥镜
    • US08767320B2
    • 2014-07-01
    • US13984169
    • 2012-02-07
    • Hiroaki Fujii
    • Hiroaki Fujii
    • G02B21/02G02B13/04G02B9/34G02B23/24
    • G02B23/243A61B1/00163A61B1/00174G02B9/34G02B13/0015G02B13/04G02B23/2423G02B23/2438
    • An endoscope optical system, including a front group and a rear group arranged in this order from an object side such that an aperture stop is arranged between the front and rear groups, wherein the front group includes a negative lens and a positive lens arranged in this order from the object side, the rear group includes a positive lens and a cemented lens arranged in this order from the object side, and when f (unit: mm) denotes a focal length of an entire endoscope optical system, EX (unit: mm) denotes a distance (which takes a minus sign on the object side with respect to an image plane) from the image plane to an exit pupil, and f2 (unit: mm) denotes a focal length of the rear group, the endoscope optical system satisfies conditions: −10
    • 一种内窥镜光学系统,包括从物体侧依次排列的前组和后组,使得前组和后组之间布置孔径光阑,其中前组包括负透镜和布置在该组中的正透镜 从物体侧起,后组包括从物体侧依次排列的正透镜和胶合透镜,并且当f(单位:mm)表示整个内窥镜光学系统的焦距时,EX(单位:mm )表示从图像平面到出射光瞳的距离(相对于像面在物体侧取负号),f2(单位:mm)表示后组的焦距,内窥镜光学系统 满足条件:-10
    • 10. 发明申请
    • IMAGE RECORDING APPARATUS AND STORAGE MEDIUM STORING PROGRAM
    • 图像记录设备和存储介质存储程序
    • US20100165365A1
    • 2010-07-01
    • US12607906
    • 2009-10-28
    • Hiroaki Fujii
    • Hiroaki Fujii
    • G06F15/00G06F3/041
    • H04N1/2307H04N1/00411H04N1/00424H04N1/00442H04N1/00456H04N1/233H04N1/2338H04N1/2369H04N1/2384H04N1/2392H04N2201/0094
    • An image recording apparatus including: a storing portion configured to store first image data based on which recording is performed on one of recording surfaces of a recording medium and second image data based on which the recording is performed on the other surface; a first density adjusting section configured to make an adjustment to a recording density for at least part of the first image data on the basis of an input of a user; a second density adjusting section configured to make an adjustment to a recording density for at least part of the second image data, the adjustment being reverse to the adjustment by the first density adjusting section; and a recording section configured to perform the recording on the basis of the first image data adjusted by the first density adjusting section and the second image data adjusted by the second density adjusting section.
    • 一种图像记录装置,包括:存储部分,被配置为存储基于在记录介质的记录表面上的哪个记录执行的第一图像数据和在另一个表面上执行记录的第二图像数据; 第一浓度调整部,被配置为基于用户的输入对所述第一图像数据的至少一部分的记录密度进行调整; 第二浓度调节部,被配置为对所述第二图像数据的至少一部分进行记录密度的调整,所述调整与所述第一浓度调节部的调整相反; 以及记录部,被配置为基于由第一浓度调节部调节的第一图像数据和由第二浓度调节部调节的第二图像数据执行记录。