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    • 93. 发明授权
    • Logical partitioning in redundant systems
    • 冗余系统中的逻辑分区
    • US07185223B2
    • 2007-02-27
    • US10675323
    • 2003-09-29
    • Yu-Cheng HsuRichard Anthony Ripberger
    • Yu-Cheng HsuRichard Anthony Ripberger
    • G06F11/00
    • G06F11/2056G06F3/0617G06F3/065G06F11/2069
    • Provided are a method, system, and article of manufacture, wherein a plurality of processing nodes in a storage system are partitioned into a plurality of logical processing units, and wherein the plurality of logical processing units can respond to I/O requests from a host coupled to the storage system. At least two logical processing units are grouped, wherein data in a first storage coupled to a first logical processing unit of the least two logical processing units is mirrored by data in a second storage coupled to the second logical processing unit of the at least two logical processing units. In response to a failure of the first logical processing unit, an I/O request from the host is responded to via the second logical processing unit.
    • 提供了一种方法,系统和制品,其中存储系统中的多个处理节点被划分为多个逻辑处理单元,并且其中所述多个逻辑处理单元可以响应来自主机的I / O请求 耦合到存储系统。 至少两个逻辑处理单元被分组,其中耦合到所述至少两个逻辑处理单元的第一逻辑处理单元的第一存储器中的数据被耦合到所述至少两个逻辑处理单元的第二逻辑处理单元的第二存储器中的数据镜像 处理单位。 响应于第一逻辑处理单元的故障,经由第二逻辑处理单元响应来自主机的I / O请求。
    • 94. 发明申请
    • DISK-DRIVE SYSTEMS WITH A VARYING NUMBER OF SPARES FOR DIFFERENT EXPECTED LIFETIMES AND METHOD
    • 具有不同数量的不同预期生命和方法的磁盘驱动系统
    • US20070035880A1
    • 2007-02-15
    • US11537610
    • 2006-09-30
    • Jonathan HallDaniel McCormickEric WendelCharles Lemaire
    • Jonathan HallDaniel McCormickEric WendelCharles Lemaire
    • G11B15/10G11B33/14
    • G11B33/08G06F11/2015G06F11/2056G11B33/128G11B33/142
    • A system and method for an improved multiple hard-disk-drive data-storage enclosure. Some embodiments position drives in counter-rotating pairs, each simultaneously accessing half the data, such that seek-caused actuator rotational-acceleration vibration cause simultaneous canceling rotational torque. Some embodiments position the edge of a first drive (or drive pair) at an angle to the actuator midpoint of a nearby second drive (or drive pair), such that rotational-acceleration vibration from a seek-caused actuator rotation in the first drive does not cause a rotational movement into the second drive that affects the tracking or seek operation. Some further embodiments position drives in a herringbone pattern to redirect air flow in addition to reducing rotational-acceleration vibration interaction. Other embodiments include a printed wire circuit board mounted to reduce the rotational-acceleration vibration interaction.
    • 一种用于改进多个硬盘驱动器数据存储机箱的系统和方法。 一些实施例将反向旋转对中的驱动器定位,每个同时访问数据的一半,使得寻求致动的致动器旋转加速度振动导致同时取消旋转扭矩。 一些实施例将第一驱动器(或驱动对)的边缘定位成与附近的第二驱动器(或驱动对)的致动器中点成一定角度,使得来自第一驱动器中的寻求致动器的旋转的旋转加速度振动 不会导致影响跟踪或寻找操作的第二驱动器的旋转运动。 一些另外的实施例除了降低旋转加速度振动相互作用之外,还将人造角定位为人字形图案以重定向气流。 其他实施例包括安装成减少旋转加速度振动相互作用的印刷线路板。
    • 95. 发明申请
    • DISK-DRIVE ENCLOSURE HAVING DRIVES IN A HERRINGBONE PATTERN TO IMPROVE AIRFLOW AND METHOD
    • 驱动装置在HERRINGBONE PATTERN以改善气流和方法的驱动装置
    • US20070035873A1
    • 2007-02-15
    • US11537598
    • 2006-09-29
    • Jonathan HallDaniel McCormickEric WendelCharles Lemaire
    • Jonathan HallDaniel McCormickEric WendelCharles Lemaire
    • G11B33/14G11B7/085
    • G11B33/08G06F11/2015G06F11/2056G11B33/128G11B33/142
    • A system and method for an improved multiple hard-disk-drive data-storage enclosure. Some embodiments position drives in counter-rotating pairs, each simultaneously accessing half the data, such that seek-caused actuator rotational-acceleration vibration cause simultaneous canceling rotational torque. Some embodiments position the edge of a first drive (or drive pair) at an angle to the actuator midpoint of a nearby second drive (or drive pair), such that rotational-acceleration vibration from a seek-caused actuator rotation in the first drive does not cause a rotational movement into the second drive that affects the tracking or seek operation. Some further embodiments position drives in a herringbone pattern to redirect air flow in addition to reducing rotational-acceleration vibration interaction. Other embodiments include a printed wire circuit board mounted to reduce the rotational-acceleration vibration interaction.
    • 一种用于改进多个硬盘驱动器数据存储机箱的系统和方法。 一些实施例将反向旋转对中的驱动器定位,每个同时访问数据的一半,使得寻求致动的致动器旋转加速度振动引起同时取消旋转扭矩。 一些实施例将第一驱动器(或驱动对)的边缘定位成与附近的第二驱动器(或驱动对)的致动器中点成一定角度,使得来自第一驱动器中的寻求致动器的旋转的旋转加速度振动 不会导致影响跟踪或寻找操作的第二驱动器的旋转运动。 一些另外的实施例除了降低旋转加速度振动相互作用之外,还将人造角定位为人字形图案以重定向气流。 其他实施例包括安装成减少旋转加速度振动相互作用的印刷线路板。
    • 96. 发明申请
    • POROUS LIGHT-EMITTING DISPLAY WITH AIR FLOW THROUGH DISPLAY, ITS USE IN A DISK-DRIVE SYSTEM AND METHOD
    • 具有通过显示器的空气流动的多孔发光显示器,其在盘驱动系统和方法中的使用
    • US20070030644A1
    • 2007-02-08
    • US11537613
    • 2006-09-30
    • Jonathan HallDaniel McCormickEric WendelCharles Lemaire
    • Jonathan HallDaniel McCormickEric WendelCharles Lemaire
    • G06F1/16
    • G11B33/08G06F11/2015G06F11/2056G11B33/128G11B33/142
    • A system and method for an improved multiple hard-disk-drive data-storage enclosure. Some embodiments position drives in counter-rotating pairs, each simultaneously accessing half the data, such that seek-caused actuator rotational-acceleration vibration cause simultaneous canceling rotational torque. Some embodiments position the edge of a first drive (or drive pair) at an angle to the actuator midpoint of a nearby second drive (or drive pair), such that rotational-acceleration vibration from a seek-caused actuator rotation in the first drive does not cause a rotational movement into the second drive that affects the tracking or seek operation. Some further embodiments position drives in a herringbone pattern to redirect air flow in addition to reducing rotational-acceleration vibration interaction. Other embodiments include a printed wire circuit board mounted to reduce the rotational-acceleration vibration interaction.
    • 一种用于改进多个硬盘驱动器数据存储机箱的系统和方法。 一些实施例将反向旋转对中的驱动器定位,每个同时访问数据的一半,使得寻求致动的致动器旋转加速度振动导致同时取消旋转扭矩。 一些实施例将第一驱动器(或驱动对)的边缘定位成与附近的第二驱动器(或驱动对)的致动器中点成一定角度,使得来自第一驱动器中的寻求致动器的旋转的旋转加速度振动 不会导致影响跟踪或寻找操作的第二驱动器的旋转运动。 一些另外的实施例除了降低旋转加速度振动相互作用之外,还将人造角定位为人字形图案以重定向气流。 其他实施例包括安装成减少旋转加速度振动相互作用的印刷线路板。
    • 97. 发明申请
    • DISK-DRIVE ENCLOSURE HAVING ROWS OF ALTERNATELY FACING PARALLEL DRIVES TO REDUCE VIBRATION AND METHOD
    • 具有平行驱动并行驱动的方式的磁盘驱动装置降低振动和方法
    • US20070030642A1
    • 2007-02-08
    • US11537605
    • 2006-09-29
    • Jonathan HallDaniel McCormickEric WendelCharles Lemaire
    • Jonathan HallDaniel McCormickEric WendelCharles Lemaire
    • G06F1/16
    • G11B33/08G06F11/2015G06F11/2056G11B33/128G11B33/142
    • A system and method for an improved multiple hard-disk-drive data-storage enclosure. Some embodiments position drives in counter-rotating pairs, each simultaneously accessing half the data, such that seek-caused actuator rotational-acceleration vibration cause simultaneous canceling rotational torque. Some embodiments position the edge of a first drive (or drive pair) at an angle to the actuator midpoint of a nearby second drive (or drive pair), such that rotational-acceleration vibration from a seek-caused actuator rotation in the first drive does not cause a rotational movement into the second drive that affects the tracking or seek operation. Some further embodiments position drives in a herringbone pattern to redirect air flow in addition to reducing rotational-acceleration vibration interaction. Other embodiments include a printed wire circuit board mounted to reduce the rotational-acceleration vibration interaction.
    • 一种用于改进多个硬盘驱动器数据存储机箱的系统和方法。 一些实施例将反向旋转对中的驱动器定位,每个同时访问数据的一半,使得寻求致动的致动器旋转加速度振动导致同时取消旋转扭矩。 一些实施例将第一驱动器(或驱动对)的边缘定位成与附近的第二驱动器(或驱动对)的致动器中点成一定角度,使得来自第一驱动器中的寻求致动器的旋转的旋转加速度振动 不会导致影响跟踪或寻找操作的第二驱动器的旋转运动。 一些另外的实施例除了降低旋转加速度振动相互作用之外,还将人造角定位为人字形图案以重定向气流。 其他实施例包括安装成减少旋转加速度振动相互作用的印刷线路板。
    • 98. 发明授权
    • Apparatus and method for writing data to mirrored storage using multiple tasks working in parallel
    • 使用并行工作的多个任务向镜像存储器写入数据的装置和方法
    • US07167969B2
    • 2007-01-23
    • US10671035
    • 2003-09-25
    • Kevin Curtis GriffinScott Dennis HeltGlen Warren NelsonMark Philip PiazzaGary Ross Ricard
    • Kevin Curtis GriffinScott Dennis HeltGlen Warren NelsonMark Philip PiazzaGary Ross Ricard
    • G06F12/00
    • G06F12/1441G06F11/2056
    • An apparatus and method provides the capability of mirroring storage from a primary system to a mirrored system in a way that uses parallelism in the mirrored system to maximize the efficiency of writing data to the mirrored storage for operations that do not conflict while serializing operations that do conflict. The mirroring of the present invention is “logical mirroring”, which does not require identical disk drives, and which supports mirroring between geographically remote locations to protect against catastrophic site failure. Parallelism is achieved in the mirrored system by dividing the virtual address space into multiple ranges, and by assigning a group of tasks to each range. When an operation is received on the mirrored system, the virtual address range that the operation affects is determined, and the operation is then delegated to the task group that corresponds to the affected virtual address range. By dividing the virtual address space into ranges, tasks in different ranges (i.e., in different task groups) may execute in parallel without any threat of conflict, and even tasks within the same range may execute in parallel if they operate in different portions of the range.
    • 一种装置和方法提供将存储从主系统镜像到镜像系统的能力,其方法是使用镜像系统中的并行性来最大限度地提高将数据写入镜像存储器的效率,以用于在串行化操作时不冲突的操作 冲突。 本发明的镜像是“逻辑镜像”,其不需要相同的磁盘驱动器,并且其支持在地理上偏远的位置之间的镜像,以防止灾难性的站点故障。 通过将虚拟地址空间划分为多个范围,并通过为每个范围分配一组任务,在镜像系统中实现并行化。 当在镜像系统上接收到操作时,确定操作影响的虚拟地址范围,然后将该操作委派给与受影响的虚拟地址范围对应的任务组。 通过将虚拟地址空间划分为范围,不同范围内的任务(即,在不同的任务组中)可以并行执行,而不会产生任何冲突的威胁,如果在相同范围内的任务可以并行执行,如果它们在 范围。
    • 99. 发明申请
    • Apparatus and Method to Adjust Data Transfer Rate
    • 调整数据传输速率的装置和方法
    • US20070006024A1
    • 2007-01-04
    • US11531249
    • 2006-09-12
    • Kenneth BoydKirby DahmanKenneth DayPhilip DoatmasJohn Wolfgang
    • Kenneth BoydKirby DahmanKenneth DayPhilip DoatmasJohn Wolfgang
    • G06F11/00
    • H04L67/1095G06F11/1464G06F11/2056G06F11/2064
    • A method to adjust the data transfer rate for one of (N) primary backup appliances. The method forms by a first primary backup appliance at least one consistent transactions set. The first primary backup appliance receives the (n)th status signal, and the (n+1)th status signal from each of the other (N-1) primary backup appliances. The method calculates the (n)th effective bandwidth for each of the (N) primary backup appliances, the (n)th time to complete for each of the (N) primary backup appliances, and the (n)th effective aggregate bandwidth for all (N) primary appliances. If the (n)th time to complete for the first primary backup appliance is greater than the (n)th time to complete for each of the other (N-1) primary backup appliances, then the method provides at least one consistent transactions set from the first primary backup appliance to a first secondary backup appliance with no delay.
    • 一种用于调整(N)个主备份设备之一的数据传输速率的方法。 该方法由第一个主备份设备形成至少一个一致的事务集。 第一个主要备份设备从其他(N-1)个主备份设备接收第(n)个状态信号和第(n + 1)个状态信号。 该方法计算(N)个主备份设备中的每个(N)个主备份设备的第(n)个有效带宽,(N)个主备份设备中的每一个完成的第(n)个时间,以及(N) 所有(N)主要电器。 如果第一个主备份设备完成的第(n)个时间大于其他(N-1)个主备份设备的第(n)个时间完成,则该方法提供至少一个一致的事务集 从第一个主备份设备到第一个辅助备份设备,不会延迟。
    • 100. 发明授权
    • Method and system for managing detected corruption in stored data
    • 用于管理存储数据中检测到的损坏的方法和系统
    • US07149935B1
    • 2006-12-12
    • US10321003
    • 2002-12-17
    • J. Mark MorrisEric Shank
    • J. Mark MorrisEric Shank
    • G06F11/00
    • G06F11/1612G06F11/18G06F11/2007G06F11/2053G06F11/2056
    • A method, computer program, and computer system are disclosed for managing data corruption identified by an application in a storage subsystem. Data requested of the application by a process is copied from a primary storage device in the storage subsystem to a memory. A data integrity check is performed on the data stored in the memory. If the data integrity check succeeds, the data is provided from the application to the process. If the data integrity check fails: the data requested by the process and stored on the primary storage device in the storage subsystem is identified; the data requested by the process and stored on a redundant storage device in the storage subsystem is identified; the data stored in the memory, the identified data stored on the primary storage device, and the identified data stored on the redundant storage device are compared as the first, second, and third copies, respectfully; and at least one of a group of instructions is chosen to be transmitted from the application to the storage subsystem based at least in part on the comparison of the first, second, and third copies.
    • 公开了一种用于管理由存储子系统中的应用识别的数据损坏的方法,计算机程序和计算机系统。 由进程请求的应用程序的数据从存储子系统中的主存储设备复制到存储器。 对存储在存储器中的数据执行数据完整性检查。 如果数据完整性检查成功,则从应用程序提供数据到进程。 如果数据完整性检查失败:确定进程请求的数据并存储在存储子系统中的主存储设备上; 识别由该过程请求并存储在存储子系统中的冗余存储设备上的数据; 将存储在存储器中的数据,存储在主存储设备上的识别数据以及存储在冗余存储设备上的识别数据作为第一副本和第三副本进行比较; 并且至少部分地基于第一,第二和第三副本的比较来选择一组指令中的至少一个从应用程序发送到存储子系统。