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    • 61. 发明授权
    • Storage system, backup storage apparatus, and backup control method
    • 存储系统,备份存储设备和备份控制方法
    • US08862843B2
    • 2014-10-14
    • US12684016
    • 2010-01-07
    • Zhongzhong MinKoji Uchida
    • Zhongzhong MinKoji Uchida
    • G06F13/00G06F11/20
    • G06F11/2058G06F11/2064G06F11/2066G06F11/2074
    • A storage system includes a first storage apparatus and a second storage apparatus including a second controller for sequentially transferring a copy of the part of the segments of data from a second buffer into a second storage device segment by segment in the same sequence as the second buffer have received a copy of the part of segments of data from a first buffer of the first storage apparatus. The second controller producing a backup copy in a backup data storage portion by copying a copy of one of the segments of the data stored in the second storage device that has been transferred from the second buffer into the second storage device while transferring a copy of the subsequent segment of the data next to said one of the segments of the data in the sequence from the second buffer to the second storage device.
    • 存储系统包括第一存储装置和第二存储装置,该第二存储装置包括第二控制器,用于将数据段的一部分的副本从第二缓冲器顺序地以与第二缓冲器相同的顺序分段传送到第二存储装置 已经从第一存储装置的第一缓冲器接收到数据段的一部分的副本。 第二控制器通过将存储在第二存储装置中的第二存储装置中的数据的一个段的副本拷贝到第二存储装置中而在备份数据存储部分中产生备份副本,同时转移副本 在从第二缓冲器到第二存储设备的序列中的所述数据段之一的旁边的数据的后续段。
    • 67. 发明授权
    • Disk array device memory having areas dynamically adjustable in size
    • 磁盘阵列设备存储器具有动态可调节的尺寸
    • US07558937B2
    • 2009-07-07
    • US11045103
    • 2005-01-31
    • Kazuo NakashimaOsamu KimuraKoji UchidaAkihito Kobayashi
    • Kazuo NakashimaOsamu KimuraKoji UchidaAkihito Kobayashi
    • G06F12/00G06F13/00G06F13/28
    • G06F3/0656G06F3/0608G06F3/0631G06F3/0683G06F12/0866
    • A disk array device having a plurality of hard disk units has a large-capacity memory mounted on a controller module which controls the whole device. The large-capacity memory has a system area managed by an OS and a cache area serving as a cache memory, and in addition, it has a table area which stores management/control information of the device and whose area size is changeable at an arbitrary instance. Therefore, it is possible to change the table area according to the state of the device in an active state without ON/OFF of a power source, so that an area not in use in the table area can be released for use as the cache memory. This makes it possible to appropriately varying the sizes of the table area and the cache area in an active state while the device is in operation, thereby realizing effective use of the large-capacity memory.
    • 具有多个硬盘单元的磁盘阵列装置具有安装在控制整个装置的控制器模块上的大容量存储器。 大容量存储器具有由OS管理的系统区域和用作高速缓冲存储器的高速缓存区域,并且还具有存储设备的管理/控制信息的表区域,并且其区域大小可任意改变 实例。 因此,可以根据设备的状态在没有电源的ON / OFF的状态下改变表区域,从而可以释放在表区域中不使用的区域作为高速缓冲存储器 。 这使得可以在设备运行时在活动状态下适当地改变表区域和高速缓存区域的大小,从而实现大容量存储器的有效使用。
    • 68. 发明授权
    • Nondestructive inspection device and crane equipped with nondestructive inspection device
    • 非破坏性检测装置和起重机配备无损检测装置
    • US07420174B2
    • 2008-09-02
    • US11029353
    • 2005-01-06
    • Koichi KuritaMasanori MasumotoToshiyuki KusanoKoji Uchida
    • Koichi KuritaMasanori MasumotoToshiyuki KusanoKoji Uchida
    • G01F23/00G01N23/04
    • G01V5/0016
    • An object is to provide a nondestructive inspection device of a low equipment cost, and a crane equipped with the nondestructive inspection device. The nondestructive inspection device is provided for a quay crane, on a transporting route of the container. The nondestructive inspection device irradiates radiation from radiation sources to a container which has entered into an inspection area, and detects radiation that has transmitted through the container using the same detector, and nondestructively inspects the entire inside of the container based on information of intensity of the radiation and information of detection position of the radiation. The nondestructive inspection device is provided with; a modulation device which assigns different modulations to each radiation emitted from each of the radiation sources, and an identification device that distinguishes the modulation assigned to the radiation incident on the detector based on the output of the detector, and identifies which one of the radiation sources this radiation has been emitted from.
    • 目的是提供一种设备成本低的非破坏性检查装置,以及配备有非破坏性检查装置的起重机。 该非破坏性检查装置用于码头起重机,在容器的运输路线上。 非破坏性检查装置将辐射源的辐射照射到进入检查区域的容器中,并且使用相同的检测器来检测已经透过容器的辐射,并基于信号的强度来非破坏性地检查容器的内部 辐射和辐射的检测位置的信息。 提供非破坏性检测装置; 调制装置,其对从每个辐射源发射的每个辐射分配不同的调制;以及识别装置,其基于检测器的输出区分分配给入射在检测器上的辐射的调制,并识别哪个辐射源 这种辐射已经从中排出。
    • 69. 发明授权
    • Crane equipped with inspection device
    • 起重机配有检查装置
    • US07216548B2
    • 2007-05-15
    • US11029460
    • 2005-01-06
    • Koichi KuritaMasanori MasumotoToshiyuki KusanoKoji Uchida
    • Koichi KuritaMasanori MasumotoToshiyuki KusanoKoji Uchida
    • G01L1/24
    • G01V5/0008B66C13/46B66C15/06
    • The invention aims at providing a crane equipped with an inspection device that can maintain excellent inspection conditions without decreasing cargo transporting efficiency. On a container transporting route of a quay crane, a truck (position adjustment device), is provided moveably in a direction across this transporting route. An inspection device, which inspects the container, is provided on this truck. An upper part frame, which projects above the inspection device, and a lower part frame, which projects under the inspection device, are provided on the truck. An upside position detector, which detects the relative position of the container and the inspection device in the direction of movement of the truck, is provided in a position higher than that of the inspection device of the upper frame. A control device is provided, which controls operation of the position adjustment device based on detection results of the upside position detector so that the inspection device and the container are positioned appropriately for inspection.
    • 本发明的目的在于提供一种具有检测装置的起重机,其能够在不降低货物运输效率的情况下保持优良的检查条件。 在码头起重机的集装箱运输路线上,卡车(位置调整装置)沿着该运送路线的方向可动地设置。 在该卡车上设置检查容器的检查装置。 在检测装置上方突出的上部框架和在检查装置下方突出的下部框架设置在卡车上。 检测容器和检查装置在卡车移动方向上的相对位置的上侧位置检测器设置在比上框架的检查装置的位置更高的位置。 提供一种控制装置,其基于上侧位置检测器的检测结果来控制位置调整装置的操作,使得检查装置和容器适当地定位用于检查。