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    • 4. 发明申请
    • STORAGE CONTROL SYSTEM AND CONTROL METHOD FOR STORAGE CONTROL SYSTEM
    • 存储控制系统存储控制系统及其控制方法
    • US20080177906A1
    • 2008-07-24
    • US11968207
    • 2008-01-02
    • Hiroshi SUZUKIHiromi MatsushigeTetsuya InoueMasato OgawaTomokazu Yokoyama
    • Hiroshi SUZUKIHiromi MatsushigeTetsuya InoueMasato OgawaTomokazu Yokoyama
    • G06F3/00
    • G06F11/201G06F11/2005
    • A storage control system of the present invention can carry out settings for a storage device using redundantly configured access channels. A controller of the storage control system can access a storage device using a plurality of access channels of system A and system B. Respective I/F control units each comprise a plurality of normally open-type switches. The switches of system A and the switches of system B are respectively wired-OR connected. A disk control unit outputs a control signal to an I/F control unit on the basis of a setting table. When a failure occurs in an I/F control unit of system A, the output signals of the respective switches transfer to a high-impedance state. Therefore, a storage device can be set by outputting, from an I/F control unit of system B, a signal corresponding to a desired operational mode and identification information.
    • 本发明的存储控制系统可以使用冗余配置的访问信道来执行存储设备的设置。 存储控制系统的控制器可以使用系统A和系统B的多个存取通道访问存储设备。各个I / F控制单元各自包括多个常开型开关。 系统A的开关和系统B的开关分别与线或线连接。 盘控制单元根据设定表将控制信号输出到I / F控制单元。 当在系统A的I / F控制单元发生故障时,各开关的输出信号转移到高阻抗状态。 因此,可以通过从系统B的I / F控制单元输出与期望的操作模式和识别信息对应的信号来设置存储装置。
    • 5. 发明申请
    • STORAGE SUBSYSTEM AND CONTROL METHOD THEREFOF
    • 存储子系统及其控制方法
    • US20090204743A1
    • 2009-08-13
    • US12100569
    • 2008-04-10
    • Tetsuya INOUEHiroshi SUZUKITsutomu KOGA
    • Tetsuya INOUEHiroshi SUZUKITsutomu KOGA
    • G06F12/00
    • G06F11/201G06F11/2089
    • Provided is a storage subsystem capable of inhibiting the deterioration in system performance to a minimum while improving reliability and availability. This storage subsystem includes a first controller for controlling multiple drive units connected via multiple first switch devices, and a second controller for controlling the multiple drive units connected via multiple second switch devices associated with the multiple first switch devices. This storage subsystem also includes a connection path that mutually connects the multiple first switch devices and the corresponding multiple second switch devices. When the storage [sub]system detects the occurrence of a failure, it identifies the fault site in the connection path, and changes the connection configuration of the switch device so as to circumvent the fault site.
    • 提供了一种能够在提高可靠性和可用性的同时将系统性能的恶化最小化的存储子系统。 该存储子系统包括用于控制经由多个第一开关装置连接的多个驱动单元的第一控制器,以及用于控制通过与多个第一开关装置相关联的多个第二开关装置连接的多个驱动单元的第二控制器。 该存储子系统还包括连接多个第一交换设备和相应的多个第二交换设备的连接路径。 当存储[sub]系统检测到故障发生时,会识别连接路径中的故障现场,并更改交换机设备的连接配置,以规避故障现场。
    • 9. 发明申请
    • IMAGING APPARATUS, IMAGE PROCESSING METHOD AND COMPUTER-READABLE STORAGE MEDIUM
    • 成像装置,图像处理方法和计算机可读存储介质
    • US20120127338A1
    • 2012-05-24
    • US13302180
    • 2011-11-22
    • Hiroshi SUZUKITakanori ISHIHAMA
    • Hiroshi SUZUKITakanori ISHIHAMA
    • H04N5/235
    • H04N5/361
    • An imaging apparatus includes an image sensor, a shutter, a memory, a temperature acquisition unit, a determination unit, and an acquisition controller. The image sensor includes an effective pixel region and an optical black region. The memory temporarily stores photoelectric-converted image data after the shutter is opened. The temperature acquisition unit acquires an ambient temperature when the temperature is determined to be equal to or more than a threshold value when the image data is stored in the memory. The acquisition controller makes control for shutting the shutter and for acquiring photoelectric-converted image data at that time when the temperature is equal to or more than the threshold value. The writing unit cuts out image data of the effective pixel region from the acquired image data. Difference in optical black level is corrected using the cut-out image data.
    • 成像装置包括图像传感器,快门,存储器,温度获取单元,确定单元和采集控制器。 图像传感器包括有效像素区域和光学黑色区域。 存储器在快门打开后临时存储光电转换的图像数据。 当将图像数据存储在存储器中时,当温度被确定为等于或大于阈值时,温度获取单元获取环境温度。 当温度等于或大于阈值时,采集控制器进行关闭快门和用于在此时获取光电转换图像数据的控制。 写入单元从获取的图像数据中切出有效像素区域的图像数据。 使用切出的图像数据来校正光学黑色电平的差异。