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    • 1. 发明授权
    • Techniques for managing data storage systems using energy information
    • 用于管理使用能量信息的数据存储系统的技术
    • US08595535B1
    • 2013-11-26
    • US12928649
    • 2010-12-16
    • Ashok TamilarasanJoseph PerryJames W. Espy
    • Ashok TamilarasanJoseph PerryJames W. Espy
    • G06F11/30G06F1/00G06F1/26G06F1/28G05D23/00
    • G11B19/02G06F11/3034G06F11/3062
    • Described are techniques for managing a data storage system. First energy information for each of one or more enclosures of the data storage system is determined. Second energy information for the data storage system based on information including the first energy information for the one or more enclosures is determined. It is determined whether any of the first energy information for each of the one or more enclosures and the second energy information for the data storage system are within a predetermined amount of one or more associated thresholds. If it is determined that any of the first energy information for each of the one or more enclosures and the second energy information for the data storage system are within a predetermined amount of one or more associated thresholds, one or more actions are taken prior to reaching the one or more associated thresholds.
    • 描述了用于管理数据存储系统的技术。 确定数据存储系统的一个或多个外壳中的每一个的第一能量信息。 确定基于包括一个或多个外壳的第一能量信息的信息的数据存储系统的第二能量信息。 确定一个或多个外壳中的每一个的第一能量信息和用于数据存储系统的第二能量信息中的任何一个是否在一个或多个关联阈值的预定量内。 如果确定用于一个或多个外壳中的每一个的任何第一能量信息和数据存储系统的第二能量信息都在一个或多个相关阈值的预定量内,则在到达之前采取一个或多个动作 一个或多个相关联的阈值。
    • 4. 发明授权
    • Dynamically upgradeable disk array chassis and method for dynamically
upgrading a data storage system utilizing a selectively switchable shunt
    • 动态可升级的磁盘阵列机箱和方法,用于使用可选择切换的分流器动态升级数据存储系统
    • US5890214A
    • 1999-03-30
    • US748884
    • 1996-11-14
    • James W. EspyJeffrey A. BrownScott J. BleiweissThomas B. Hawkins
    • James W. EspyJeffrey A. BrownScott J. BleiweissThomas B. Hawkins
    • G06F11/30G06F13/40H04L5/20G06F13/00G06F11/20
    • H04L5/20G06F11/3034G06F11/3044G06F11/3051G06F11/3058G06F13/409
    • A dynamically upgradeable disk array chassis, and a method for dynamically upgrading a data storage system. The dynamically upgradeable disk array chassis includes a serial bus having a first bus for passing data in one direction and a second bus for passing data in the opposite direction. A shunt connects the first and second buses in a normal state. The shunt has a switched state in which each of the first and second buses is coupled to a separate output from the chassis. The chassis includes an environmental monitor connected to a communication path. Upon connecting a new disk array chassis to an active disk array chassis, the environmental monitor communicates through the communication path before switching the shunt to connect the serial bus with the serial bus of the new disk array chassis. The disk array chassis may include a diplexer for connecting the communication path to the separate outputs of the shunt and for combining the communication path signals with the serial path signals in one direction and for separating these signals in the other direction. The environmental monitor path communications and the serial bus communications can take place over a single twinax cable.
    • 动态可升级的磁盘阵列机箱,以及动态升级数据存储系统的方法。 动态可升级的磁盘阵列机箱包括具有用于在一个方向上传递数据的第一总线的串行总线和用于相反方向传递数据的第二总线。 分流器在正常状态下连接第一和第二总线。 分流器具有开关状态,其中第一和第二总线中的每一个耦合到与机架的单独输出。 底盘包括连接到通信路径的环境监视器。 在将新的磁盘阵列机箱连接到活动磁盘阵列机箱之后,环境监视器在切换分流器之前通过通信路径进行通信,以将串行总线与新磁盘阵列机箱的串行总线连接。 盘阵列机箱可以包括用于将通信路径连接到分流器的单独输出的双工器,并且用于将通信路径信号与一个方向上的串行路径信号组合,并且用于在另一个方向上分离这些信号。 环境监控通道和串行总线通信可以通过单个双芯电缆进行。
    • 7. 发明授权
    • Methods and apparatus for reconfiguring a storage system
    • 用于重新配置存储系统的方法和装置
    • US07529972B2
    • 2009-05-05
    • US11324728
    • 2006-01-03
    • Mikhail ZelikovStephen J. ToddJeffrey A. BrownJames W. Espy
    • Mikhail ZelikovStephen J. ToddJeffrey A. BrownJames W. Espy
    • G06F11/00
    • G06F11/2089G06F11/201
    • One embodiment relates to a computer system comprising at least one host, at least one object addressable storage (OAS) system and at least one communication medium that couples the at least one host to the at least one OAS system. The at least one OAS system has a plurality of storage devices and stores a plurality of content units on the plurality of storage devices. Each of the at least one host and the at least one OAS system has software that provides a OAS interface so that each one of the content units stored on the OAS system may be identified between the at least one host and the at least one OAS using an object identifier. The computer system maps the object identifier for a first of the plurality of content units to at least one of the plurality of storage devices over at least one first path. In response to a failure that prevents the at least one host from accessing the first content unit via the at least one first path, the computer system is automatically reconfigured to establish at least one previously non-established second path that enables the at least one host to access the first content unit using the object identifier for the first content unit.
    • 一个实施例涉及包括至少一个主机,至少一个对象可寻址存储(OAS)系统和将至少一个主机耦合到至少一个OAS系统的至少一个通信介质的计算机系统。 至少一个OAS系统具有多个存储设备,并且在多个存储设备上存储多个内容单元。 所述至少一个主机和所述至少一个OAS系统中的每一个具有提供OAS接口的软件,使得可以在所述至少一个主机和所述至少一个OAS之间识别存储在所述OAS系统上的每个内容单元,所述内容单元使用 对象标识符。 计算机系统通过至少一个第一路径将多个内容单元中的第一个的对象标识符映射到多个存储设备中的至少一个。 响应于防止至少一个主机经由至少一个第一路径访问第一内容单元的故障,计算机系统被自动重新配置以建立至少一个先前未建立的第二路径,其使能至少一个主机 使用第一内容单元的对象标识符访问第一内容单元。