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    • 1. 发明授权
    • Allocating a task to a computer based on determined resources
    • 根据确定的资源将任务分配到计算机
    • US09396026B2
    • 2016-07-19
    • US13877696
    • 2010-12-16
    • Yujiro IchikawaYoshifumi TakamotoTakashi Tameshige
    • Yujiro IchikawaYoshifumi TakamotoTakashi Tameshige
    • G06F9/46G06F9/50G06F9/48
    • G06F9/50G06F9/4881G06F9/505G06F2209/485
    • A processing control method whereby a management server: assigns work to and executes said work on a computer; sets the processing start time and the processing end time for the aforementioned work as task execution information; sets a first physical resource amount, which is the amount of the physical resources of the aforementioned computer needed for execution of the aforementioned processing; acquires a second physical resource amount, which is the amount of the physical resources of the aforementioned computer that are being used; updates the processing start time for the aforementioned work to a time that is close to the current time when the aforementioned computer has the physical resources of the sum of the aforementioned first physical resource amount and the aforementioned second physical resources; and instructs the aforementioned computer to begin the aforementioned processing when the current time reaches the aforementioned processing start time.
    • 一种处理控制方法,其中管理服务器:在计算机上分配工作并执行所述工作; 将上述工作的处理开始时间和处理结束时间设定为任务执行信息; 设置第一物理资源量,其为执行上述处理所需的上述计算机的物理资源量; 获取作为正在使用的上述计算机的物理资源量的第二物理资源量; 将上述工作的处理开始时间更新为当上述计算机具有上述第一物理资源量和上述第二物理资源之和的物理资源时接近当前时间的时间; 并且当当前时间达到上述处理开始时间时,指示上述计算机开始上述处理。
    • 3. 发明授权
    • Computer resource distribution method based on prediction
    • 基于预测的计算机资源分配方法
    • US08195800B2
    • 2012-06-05
    • US12334736
    • 2008-12-15
    • Takashi TameshigeYoshifumi Takamoto
    • Takashi TameshigeYoshifumi Takamoto
    • G06F15/16G06F15/173G06Q10/10
    • G06F9/5011G06F9/5083G06F2209/5019
    • A resource distribution method capable of lending surplus resources among a plurality of services and reducing the maintenance cost of the surplus resources is provided. Computer resources in the standby system have a dead standby state in which at least an application is not installed. A plurality of services or a plurality of users share the computer resources in the standby system. As a result, improvement of the utilization factor of idle computer resources and server integration are implemented, and the cost required to maintain the computer resources is reduced. Furthermore, load prediction is conducted as regards individual services by using past operation history. Idle computer resources secured from services having surplus and maintained are thrown in according to a result of the prediction.
    • 提供了能够在多个服务中借出剩余资源并降低剩余资源的维护成本的资源分配方法。 备用系统中的计算机资源具有至少未安装应用程序的死待命状态。 多个服务或多个用户共享备用系统中的计算机资源。 结果,实现了空闲计算机资源利用率的提高和服务器集成,降低了维护计算机资源所需的成本。 此外,通过使用过去的操作历史来进行关于个体服务的负载预测。 根据预测的结果,投入了从具有剩余和维护的服务中获得的空闲计算机资源。
    • 6. 发明授权
    • Computer resource distribution method based on prediction
    • 基于预测的计算机资源分配方法
    • US07500001B2
    • 2009-03-03
    • US10951813
    • 2004-09-29
    • Takashi TameshigeYoshifumi Takamoto
    • Takashi TameshigeYoshifumi Takamoto
    • G06F15/173
    • G06F9/5011G06F9/5083G06F2209/5019
    • A resource distribution method capable of lending surplus resources among a plurality of services and reducing the maintenance cost of the surplus resources is provided. Computer resources in the standby system have a dead standby state in which at least an application is not installed. A plurality of services or a plurality of users share the computer resources in the standby system. As a result, improvement of the utilization factor of idle computer resources and server integration are implemented, and the cost required to maintain the computer resources is reduced. Furthermore, load prediction is conducted as regards individual services by using past operation history. Idle computer resources secured from services having surplus and maintained are thrown in according to a result of the prediction.
    • 提供了能够在多个服务中借出剩余资源并降低剩余资源的维护成本的资源分配方法。 备用系统中的计算机资源具有至少未安装应用程序的死待命状态。 多个服务或多个用户共享备用系统中的计算机资源。 结果,实现了空闲计算机资源利用率的提高和服务器集成,降低了维护计算机资源所需的成本。 此外,通过使用过去的操作历史来进行关于个体服务的负载预测。 根据预测的结果,投入了从具有剩余和维护的服务中获得的空闲计算机资源。
    • 7. 发明授权
    • Data sharing method among remote computer systems and disk control device thereof
    • 远程计算机系统及其磁盘控制装置之间的数据共享方法
    • US07219191B2
    • 2007-05-15
    • US10650828
    • 2003-08-29
    • Yoshifumi TakamotoTakashi Tameshige
    • Yoshifumi TakamotoTakashi Tameshige
    • G06F13/00
    • G06F3/065G06F3/0617G06F3/0689
    • A data sharing method and disk control device are ideal for running applications to process large amounts of data on remote computers in the same manner as in a database system. A disk control device contains a management table for showing the relation between a remote access identifier, a remote disk control device identifier, and command transfer control information for the remote disk control device to the disk identifier used by the host device, When a write command to write data on a designated disk is received from the host computer, the disc controller executes both a write process for writing data on a designated disk and a command transfer process for transferring a write command to the remote disk controller in accordance with command transfer control information in the management table.
    • 数据共享方法和磁盘控制设备是以与数据库系统相同的方式运行应用程序来处理远程计算机上的大量数据的理想选择。 磁盘控制装置包含用于显示远程访问标识符,远程磁盘控制设备标识符和用于远程磁盘控制设备的命令传送控制信息与主机设备使用的磁盘标识符之间的关系的管理表,当写命令 从主计算机接收到在指定盘上写入数据时,盘控制器执行用于在指定盘上写入数据的写入处理和用于根据命令传送控制将写命令传送到远程盘控制器的命令传送处理 信息在管理表中。
    • 9. 发明授权
    • Computer system and availability method thereof
    • 计算机系统及其可用性方法
    • US08874952B2
    • 2014-10-28
    • US13388948
    • 2010-03-05
    • Takashi TameshigeYoshifumi TakamotoKeisuke Hatasaki
    • Takashi TameshigeYoshifumi TakamotoKeisuke Hatasaki
    • G06F11/00G06F9/50
    • G06F9/5077Y02D10/22Y02D10/36
    • High availability computer system and fault correction method. If a fault occurs in the current-system physical device allocated to the current-system virtual device of the virtual server, the virtualization mechanism of the physical server configures, for the standby-system virtual device of the virtual server, the standby-system physical device, as a physical device which is used at a high priority, and the virtualization mechanism distributes the request issued from the standby-system virtual device of another virtual server to a standby-system physical device, but, when such a standby-system physical device does not exist, the virtualization mechanism distributes the request to a standby-system physical device configured for high priority usage.
    • 高可用性计算机系统和故障校正方法。 如果分配给虚拟服务器的当前系统虚拟设备的当前系统物理设备出现故障,则物理服务器的虚拟化机制配置虚拟服务器的备用系统虚拟设备的备用系统物理 设备,作为高优先级使用的物理设备,并且虚拟化机制将从另一虚拟服务器的备用系统虚拟设备发出的请求分发到备用系统物理设备,但是当这种备用系统物理 设备不存在,虚拟化机制将请求分配给配置为高优先级使用的备用系统物理设备。
    • 10. 发明授权
    • Method of deploying a production environment using a development environment
    • 使用开发环境部署生产环境的方法
    • US08554890B2
    • 2013-10-08
    • US11527495
    • 2006-09-27
    • Takashi TameshigeYoshifumi Takamoto
    • Takashi TameshigeYoshifumi Takamoto
    • G06F15/173
    • H04L41/02G06F8/61G06F8/63G06F9/4411
    • Provided is a computer system, including: at least one storage system providing at least one logical volume, at least one host computer including an I/O device, and a management computer, in which the management computer creates a virtual computer within a network segment to which the management computer belongs, the virtual computer including an I/O device that is the same as the I/O device of the host computer in number and type, defines a connection between the logical volume and the virtual computer, stores a program in the logical volume connected to the virtual computer, sets identification information on the host computer in the virtual computer, releases the connection between the logical volume that stores the program and the virtual computer, and defines a connection between the logical volume whose connection has been released and the host computer.
    • 提供了一种计算机系统,包括:提供至少一个逻辑卷的至少一个存储系统,包括I / O设备和管理计算机的至少一个主计算机,其中管理计算机在网段内创建虚拟计算机 管理计算机所属的虚拟计算机包括与主计算机的I / O设备的数量和类型相同的I / O设备的虚拟计算机定义了逻辑卷和虚拟计算机之间的连接,存储程序 在连接到虚拟计算机的逻辑卷中,在虚拟计算机中的主计算机上设置识别信息,释放存储程序的逻辑卷与虚拟计算机之间的连接,并定义连接已经被连接的逻辑卷之间的连接 发布和主机。