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    • 2. 发明授权
    • Power management in a multi-device storage array
    • 多设备存储阵列中的电源管理
    • US09594421B2
    • 2017-03-14
    • US13042938
    • 2011-03-08
    • Robert P. Rossi
    • Robert P. Rossi
    • G06F1/32G06F3/06
    • G06F1/3268G06F3/0625G06F3/0634G06F3/0647G06F3/067G06F3/0689Y02D10/154
    • There is provided a method and apparatus for power management in a storage resource. The storage resource comprises at least one RAID array including a plurality of physical drives. The method comprises: determining a reduced number of physical drives within a RAID array upon which data is to be concentrated; moving data stored on said RAID array and/or targeting data written to said RAID array to one or more of said reduced number of physical drives such that said data is concentrated on said reduced number of physical drives in said RAID array; and selectively applying power management logic to enable, based on at least one power management criterion, one or more physical drives in said RAID array to be powered down or to be supplied with reduced power.
    • 提供了一种用于存储资源中的电力管理的方法和装置。 存储资源包括至少一个包括多个物理驱动器的RAID阵列。 该方法包括:确定数据集中在RAID阵列内的物理驱动器的数量减少; 将存储在所述RAID阵列上的数据和/或将写入所述RAID阵列的数据的数据移动到所述减少数量的物理驱动器中的一个或多个,使得所述数据集中在所述RAID阵列中所述减少数量的物理驱动器上; 以及选择性地施加电力管理逻辑以使得能够基于至少一个电力管理标准来使所述RAID阵列中的一个或多个物理驱动器断电或以降低的功率被提供。
    • 4. 发明授权
    • Method of, and apparatus for, adaptive sampling
    • 自适应采样的方法和装置
    • US09306828B2
    • 2016-04-05
    • US13941220
    • 2013-07-12
    • Xyratex Technology Limited
    • Farshad FahimiRoger Pimlott
    • G06F11/00H04L12/26G06F11/30G06F11/07G06N7/00H04L12/24
    • H04L43/103G06F11/0727G06F11/0766G06F11/30G06F11/3024G06F11/3034G06F11/3058G06F11/3089G06F11/3096G06N7/005H04L41/0695H04L41/142H04L43/04H04L43/0817
    • A method of sampling sensor data from a computing system is presented. The computing system includes a plurality of components and a sensor network for monitoring the computing system. The sensor network includes primary sensor nodes operable to obtain primary parameter data from a measurement of a primary parameter of the components, and secondary sensor nodes operable to obtain secondary parameter data from a measurement of secondary parameters of the components. The method includes: a) obtaining secondary parameter data from secondary sensor nodes relating to components; b) processing, in a computing device, the secondary parameter data; c) determining, based upon determined or pre-determined relationships between the secondary parameters and the primary parameter, a sample rate for the primary parameter data for the components; and d) obtaining primary parameter data from the primary sensor nodes relating to components at the determined sample rate.
    • 提出了一种从计算系统采样传感器数据的方法。 计算系统包括多个组件和用于监视计算系统的传感器网络。 所述传感器网络包括主要传感器节点,可操作以从所述组件的主要参数的测量获得主要参数数据,以及辅助传感器节点可操作以从所述组件的次要参数的测量获得次要参数数据。 该方法包括:a)从与组件有关的次级传感器节点获得次要参数数据; b)在计算设备中处理次要参数数据; c)基于所述次要参数和所述主要参数之间的确定或预定的关系来确定所述组件的主要参数数据的采样率; 以及d)从所述主要传感器节点获得与所确定的采样率相关的组件的主要参数数据。
    • 5. 发明授权
    • Method of, and apparatus for, detection of degradation on a storage resource
    • 用于检测存储资源上的劣化的方法和装置
    • US09239746B2
    • 2016-01-19
    • US13906195
    • 2013-05-30
    • Xyratex Technology Limited
    • Farshad FahimiMohsen MesgarpourChris Bloxham
    • G06F11/00G06F11/07G06F11/34
    • G06F11/0751G06F11/34G06F11/3409G06F11/3447G06F11/3452G06F11/3485
    • A method of monitoring the performance of a device is presented, each storage device being operable to receive storage requests and includes a queue for incoming storage requests and a physical storage medium, the method includes: a) obtaining data relating to the device parameters of: throughput of storage requests to the storage device; queue time for one or more requests on the storage device; and the time required to complete one or more storage requests on the storage device; b) generating a model relating to the expected distribution of the device parameters on the storage device during normal operation; c) monitoring the parameters during operation of the storage device; d) comparing the distribution of the monitored parameters during operation of the storage device with the expected distribution of the parameters; and e) identifying a fault on the storage device based on the comparison.
    • 提出了一种监视设备性能的方法,每个存储设备可操作以接收存储请求,并且包括用于传入存储请求的队列和物理存储介质,该方法包括:a)获得与以下设备参数有关的数据: 对存储设备的存储请求的吞吐量; 存储设备上的一个或多个请求的队列时间; 以及在存储设备上完成一个或多个存储请求所需的时间; b)在正常操作期间产生与存储设备上的设备参数的预期分布有关的模型; c)在存储设备的操作期间监视参数; d)比较存储设备运行期间监控参数的分布与参数的预期分布; 以及e)基于所述比较来识别所述存储设备上的故障。
    • 7. 发明申请
    • OPTICAL ALIGNMENT SYSTEM
    • 光学对准系统
    • US20150160420A1
    • 2015-06-11
    • US14098309
    • 2013-12-05
    • Xyratex Technology Limited
    • Alistair Allen MILLER
    • G02B6/42
    • G02B6/4226G02B6/3897G02B6/428
    • An optical alignment system for aligning an optical component is provided. The system includes an alignment component configured to be moveable in a plane and in a fixed relationship with the optical component. Typically the alignment component houses an optical fibre MT ferrule. One or more driving components are further provided typically in the form of a ball headed adjustment screw. The driving components are configured to be moveable, relative to the alignment component, in a first linear direction. At least a component of the first linear direction is parallel with the normal of the plane. The driving component, when forced along the first linear direction and in contact with the alignment component, imparts a force upon the alignment component, in the plane, to move the optical component in the plane. An alignment frame accommodating the driving components may also be provided.
    • 提供了一种用于对准光学部件的光学对准系统。 该系统包括配置成能够在与光学部件平面并且固定关系中可移动的对准部件。 通常,对准部件容纳光纤MT套圈。 通常以球头调节螺钉的形式进一步提供一个或多个驱动部件。 驱动部件被配置成相对于对准部件在第一线性方向上是可移动的。 至少第一线性方向的分量与平面的法线平行。 驱动部件沿着第一线性方向被迫并与对准部件接触时,在对准部件的平面中施加力以在光学部件中移动光学部件。 还可以提供容纳驱动部件的对准框架。