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    • 24. 发明申请
    • STORAGE SYSTEM AND STORAGE MIGRATION METHOD
    • 存储系统和存储迁移方法
    • US20080177947A1
    • 2008-07-24
    • US11970249
    • 2008-01-07
    • Yoshiaki EGUCHIYasutomo YamamotoAi Satoyama
    • Yoshiaki EGUCHIYasutomo YamamotoAi Satoyama
    • G06F12/00G06F12/16
    • G06F3/0647G06F3/061G06F3/0614G06F3/067
    • The present invention proposes a storage system and storage migration method where migration may be carried out to an access destination of a host apparatus without stopping the exchange of data between the host apparatus and the storage apparatus.This system is provided with a host apparatus inputting and outputting requests for data, a migration source storage apparatus having logical unit(s) correlated to storage regions of physical devices for storing the data, a migration destination storage apparatus having logical unit(s), an editing unit for editing configuration control information relating to the logical unit(s) for the migration source so as to match with settings for the migration destination storage apparatus, an importing unit for importing edited configuration control information to the migration destination storage apparatus, and a mapping unit for mapping the logical unit(s) of the migration source to the logical unit(s) of the migration destination.
    • 本发明提出一种存储系统和存储迁移方法,其中可以在不停止主机设备和存储设备之间的数据交换的情况下向主机设备的接入目的地进行迁移。 该系统设置有输入和输出数据请求的主机设备,具有与用于存储数据的物理设备的存储区域相关联的逻辑单元的迁移源存储设备,具有逻辑单元的迁移目的地存储设备, 编辑单元,用于编辑与用于迁移源的逻辑单元相关的配置控制信息,以便与用于迁移目的地存储设备的设置相匹配;导入单元,用于将编辑的配置控制信息导入到迁移目的地存储设备;以及 映射单元,用于将迁移源的逻辑单元映射到迁移目的地的逻辑单元。
    • 27. 发明授权
    • Device for performance tuning in a system
    • 用于系统中性能调整的设备
    • US07809906B2
    • 2010-10-05
    • US10855356
    • 2004-05-28
    • Yoshiaki EguchiYasutomo YamamotoAi SatoyamaAkinobu Shimada
    • Yoshiaki EguchiYasutomo YamamotoAi SatoyamaAkinobu Shimada
    • G06F12/00
    • G06F3/0653G06F3/061G06F3/0631G06F3/0635G06F3/0647G06F3/067G06F11/3485G06F2206/1012Y10S707/99932
    • In a storage subsystem, performance tuning is performed with respect to whole logical devices including external storage subsystems that are not directly connected to host computers.Physical storage units presented by the external storage subsystems are defined as logical devices of the storage subsystem itself, and I/O processing requests from the host computers are relayed to those logical devices. At the time of relaying, I/O processing conditions are monitored. When there exists an external storage subsystem whose load is high, then, operating conditions of ports and processors are examined. In the case where the load can be reduced by changing the configuration of those ports and processors, the configuration is changed to reduce the load. In the case where the load can not be reduced, data is migrated from a logical device having a high load to a logical device having a sufficient performance.
    • 在存储子系统中,对于整个逻辑设备执行性能调整,包括不直接连接到主机的外部存储子系统。 由外部存储子系统呈现的物理存储单元被定义为存储子系统本身的逻辑设备,并且来自主计算机的I / O处理请求被中继到这些逻辑设备。 在中继时,监视I / O处理条件。 当存在负载高的外部存储子系统时,检查端口和处理器的工作条件。 在通过改变这些端口和处理器的配置可以减少负载的情况下,改变配置以减少负载。 在负载不能减小的情况下,数据从具有高负载的逻辑设备迁移到具有足够性能的逻辑设备。
    • 30. 发明授权
    • Installation method of new storage system into a computer system
    • 将新存储系统安装到计算机系统中
    • US07177991B2
    • 2007-02-13
    • US10636758
    • 2003-08-08
    • Yasutomo YamamotoYoshiaki EguchiAi SatoyamaHiroshi Ohno
    • Yasutomo YamamotoYoshiaki EguchiAi SatoyamaHiroshi Ohno
    • G06F12/00
    • G06F3/0607G06F3/0604G06F3/0631G06F3/0632G06F3/0637G06F3/0647G06F3/067
    • A new storage unit is installed such that installation costs are suppressed and functions of the new storage unit can be utilized sufficiently. An access right is changed such that the new storage unit (second storage unit) can access an existing first storage unit (S502). A logical device relating to a storage device of the first storage unit is assigned to a logical device of the second storage unit (S503). Path definition and device recognition in a host computer are performed such that the host computer can access the assigned logical device of the second storage unit (S504, 505). Input-output setting of the host computer is changed such that processing of an input-output from the host computer to the device of the first storage unit is requested to the second storage unit (S506). Seleted figure: FIG. 5.
    • 安装新的存储单元,从而可以抑制安装成本,并且可以充分利用新的存储单元的功能。 改变访问权限,使得新存储单元(第二存储单元)可以访问现有的第一存储单元(S 502)。 与第一存储单元的存储装置相关的逻辑设备被分配给第二存储单元的逻辑设备(S 503)。 执行主计算机中的路径定义和设备识别,使得主计算机可以访问第二存储单元的分配的逻辑设备(S 504,505)。 更改主计算机的输入输出设置,使得向第二存储单元请求从主计算机到第一存储单元的设备的输入输出的处理(S 506)。 分离图: 5