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    • 9. 发明授权
    • Load state monitoring apparatus and load state monitoring method
    • 负载状态监测装置和负载状态监测方法
    • US08046769B2
    • 2011-10-25
    • US11061777
    • 2005-02-22
    • Mineyoshi MasudaMasashi EgiToshiaki Tarui
    • Mineyoshi MasudaMasashi EgiToshiaki Tarui
    • G06F9/46G06F15/173G06F11/30
    • G06F11/3409G06F11/3433G06F11/3495G06F2201/81G06F2201/88
    • A load monitoring apparatus is provided to monitor a load state of one or more information processing apparatuses in a network and to control the load of such an information processing apparatus based on the monitoring result. Such a load monitoring apparatus comprises a measured value storage unit which stores both measured values and measurement time of performance information (for example, a queue length, a response time and the like) of each information processing apparatus; a fluctuation calculation unit which reads a plurality of measured values measured in a given time from the measured value storage unit for each information processing apparatus, and calculates a fluctuation of the plurality of measured values; and a load state judgment unit which compares the fluctuation calculated with a given threshold to judge the load state of each information processing apparatus. Using a fluctuation, the load state of an information processing apparatus in the network can be detected more accurately.
    • 提供一种负载监视装置,用于监视网络中一个或多个信息处理装置的负载状态,并根据监视结果控制这种信息处理装置的负载。 这种负载监视装置包括测量值存储单元,其存储每个信息处理设备的性能信息(例如,队列长度,响应时间等)的测量值和测量时间; 波动计算单元,从每个信息处理设备的测量值存储单元读取在给定时间内测量的多个测量值,并计算多个测量值的波动; 以及负载状态判断单元,其将所计算的波动与给定阈值进行比较,以判断每个信息处理设备的负载状态。 使用波动,可以更准确地检测网络中的信息处理装置的负载状态。
    • 10. 发明授权
    • Management server, management method, and management program for execution on a management server
    • 管理服务器,管理方法和管理程序,用于在管理服务器上执行
    • US08825725B2
    • 2014-09-02
    • US13390949
    • 2010-06-16
    • Kentaro WatanabeMineyoshi Masuda
    • Kentaro WatanabeMineyoshi Masuda
    • G06F17/30
    • G06F3/0644G06F3/0608G06F3/0643G06F3/0664G06F3/0671
    • A file system corresponding to virtual hard disk files is identified, and a file size of the virtual hard disk files after optimization is calculated from the size of the volume in use of the file system so that a volume size can be ensured by the optimization is calculated. Specifically, a management server performs the above-described processing, and has the following structure. The management server is connected to a physical server that is virtually composed of virtual servers including virtual hard disks. The management server comprises a volume acquiring unit that acquires the volume in use of a first file system on the virtual hard disks; a file size acquiring unit that acquires the file size of virtual hard disk files corresponding to the first file system; and a calculating unit that calculates an optimized file size of the virtual hard disk files on the basis of a difference between the acquired volume in use and the file size.
    • 识别与虚拟硬盘文件相对应的文件系统,根据使用文件系统的卷的大小计算优化后的虚拟硬盘文件的文件大小,以便可以通过优化确保卷大小 计算。 具体而言,管理服务器进行上述处理,具有以下结构。 管理服务器连接到由虚拟服务器虚拟组成的物理服务器,包括虚拟硬盘。 管理服务器包括:体积获取单元,其在虚拟硬盘上获取使用第一文件系统的卷; 文件大小获取单元,其获取与所述第一文件系统相对应的虚拟硬盘文件的文件大小; 以及计算单元,其基于所获取的使用量和文件大小之间的差异来计算虚拟硬盘文件的优化文件大小。