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    • 4. 发明申请
    • STORAGE SYSTEM, CONTROL METHOD OF STORAGE DEVICE
    • 存储系统,存储设备的控制方法
    • US20110016336A1
    • 2011-01-20
    • US12602691
    • 2009-07-15
    • Hajime MoriKatsumi OuchiYuichi Taguchi
    • Hajime MoriKatsumi OuchiYuichi Taguchi
    • G06F1/32G06F1/26G06F12/00
    • G06F3/0634G06F3/0625G06F3/067G06F3/0674Y02D10/154
    • The present invention provides a technique that enables, in an environment in which an upper limit of electric energy consumption is prescribed for a specific period, operations of a storage device while keeping the electric energy consumption within the prescribed upper limit and, at the same time, maintaining operations of a disk device of a storage device necessary for providing services to a user. A storage system according to the present invention includes a storage device having one or more energized parts and a management device that manages operations of the storage device. The management device acquires electric energy consumption of the energized part and controls the operational state of the energized part so that the electric energy consumption of the storage device over a predetermined period does not exceed a prescribed upper limit.
    • 本发明提供一种技术,其能够在将电能消耗保持在规定上限的同时,在一定时间内规定电能消耗的上限的环境中进行存储装置的动作,同时, 维护为用户提供服务所必需的存储设备的磁盘设备的操作。 根据本发明的存储系统包括具有一个或多个通电部件的存储装置和管理该存储装置的操作的管理装置。 管理装置取得通电部的电能消耗,控制通电部的动作状态,使得在规定期间内的存储装置的电能消耗不超过规定的上限。
    • 8. 发明申请
    • Automatic analyzer
    • 自动分析仪
    • US20060177344A1
    • 2006-08-10
    • US11132301
    • 2005-05-19
    • Katsumi OuchiHiroshi Mitsumaki
    • Katsumi OuchiHiroshi Mitsumaki
    • G01N35/00
    • G01N35/1002G01N35/025G01N2035/00772G01N2035/00851Y10T436/11Y10T436/113332Y10T436/115831Y10T436/12
    • An automatic analyzer capable of performing analysis in terms of a number of analysis items with high reliability through a simple operation. The automatic analyzer comprises a probe adapted to be moved on a circular arc path and capable of sucking or discharging a sample or reagent, a plurality of sample containers disposed at different positions on the path of the probe and containing different analyte samples, and a rotor capable of carrying a plurality of reagent cartridges. Each of the reagent cartridges comprises a photometric cuvette that is empty when not in use, and a reagent cuvette in which a reagent used for a particular analysis item is hermetically sealed. A two-dimensional code with information regarding the analyte type and analysis conditions, for example, is affixed to the reagent cartridge. The two-dimensional code information is read by a reading unit. Based on the information read from the reagent cartridge, a control unit identifies the sample container in which a analyte sample required by a particular reagent cartridge is contained, and causes the probe to be moved to that sample container. The sample in the sample container is sucked and then discharged into the photometric cuvette of the reagent cartridge. The control unit also causes the probe to suck the reagent in the reagent cuvette of the reagent cartridge and then causes the reagent to be discharged into the photometric cuvette.
    • 一种能够通过简单的操作以高可靠性对多个分析项进行分析的自动分析装置。 自动分析仪包括适于在圆弧路径上移动并能够抽吸或排出样品或试剂的探针,设置在探针路径上的不同位置并包含不同分析物样品的多个样品容器和转子 能够携带多个试剂盒。 每个试剂盒包括不使用时为空的测光反应杯,其中用于特定分析项目的试剂被密封的试剂试管。 例如,具有关于分析物类型和分析条件的信息的二维码被附加到试剂盒。 二维码信息由读取单元读取。 基于从试剂盒读取的信息,控制单元识别其中容纳特定试剂盒所需的分析物样品的样品容器,并使探针移动到该样品容器。 将样品容器中的样品吸入,然后排出到试剂盒的测光反应杯中。 控制单元还使探针吸取试剂盒的试剂池中的试剂,然后使试剂排出到测光反应杯中。
    • 10. 发明申请
    • STORAGE SYSTEM
    • 存储系统
    • US20110264854A1
    • 2011-10-27
    • US12527448
    • 2009-03-24
    • Katsumi Ouchi
    • Katsumi Ouchi
    • G06F12/06G06F12/00
    • G06F3/0653G06F1/3268G06F3/0616G06F3/0625G06F3/0634G06F3/0689G06F11/3423G06F11/3485Y02D10/154Y02D10/34
    • To maintain reliability even when the repetition of the power saving control for storage systems occurs frequently due to the access from the host computer. During the course of controlling the operation mode of the drives, the controller measures the start/stop cycle count and the load/unload cycle count, calculates the S/S wear-out rate showing the ratio of the measured value of the start/stop cycle count to the first upper limit value and the L/U wear-out rate showing the ratio of the measured value of the load/unload cycle count to the second upper limit value, and for the drives in the idle operation mode, selects the low-speed rotation operation mode if the S/S wear-out rate is greater than the L/U wear-out rate, or selects the standby operation mode if the S/S wear-out rate is less than the L/U wear-out rate.
    • 为了保持可靠性,即使当存储系统的节电控制的重复由于从主计算机的访问而频繁地发生时。 在控制驱动器的运行模式的过程中,控制器测量起动/停止循环次数和加载/卸载循环次数,计算出S / S磨损率,显示起动/停止的测量值的比值 循环计数到第一上限值,L / U磨损率表示加载/卸载循环次数的测量值与第二上限值的比率,并且对于空转操作模式中的驱动器,选择 如果S / S磨损率大于L / U磨损率,则低速旋转运行模式,或者如果S / S磨损率小于L / U磨损,则选择待机运行模式 - 速率。