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    • 1. 发明授权
    • Storage system power management
    • 存储系统电源管理
    • US08954768B2
    • 2015-02-10
    • US12483443
    • 2009-06-12
    • Louie A. DickensTimothy A. JohnsonCraig A. KleinGregg S. LucasDaniel J. Winarski
    • Louie A. DickensTimothy A. JohnsonCraig A. KleinGregg S. LucasDaniel J. Winarski
    • G06F1/00G06F1/26G06F1/30G06F13/00G06F3/06G06F1/32
    • G06F3/0625G06F1/3221G06F3/0634G06F3/0688G06F3/0689Y02D10/154
    • A method for managing power consumed by storage systems and other devices is disclosed herein. In certain embodiments, such a method may include initially monitoring conditions (such as data traffic conditions) on a communication link between a first device and a second device. The method may further include determining whether the conditions on the communication link warrant powering down or powering up the second device. In the event the conditions warrant powering down the second device, a power-down command may be generated and transmitted from the first device to the second device. In the event the conditions warrant powering up the second device, a power-up command may be generated and transmitted from the first device to the second device. In selected embodiments, the power-up and power-down commands are one of SCSI commands and FICON commands. A corresponding apparatus, system, and computer-usable medium are also disclosed and claimed herein.
    • 本文公开了一种用于管理由存储系统和其他设备消耗的功率的方法。 在某些实施例中,这种方法可以包括在第一设备和第二设备之间的通信链路上初始地监视条件(诸如数据业务条件)。 该方法还可以包括确定通信链路上的条件是否保证关闭第二设备的电源或上电。 在条件允许关闭第二设备的情况下,可以产生掉电命令并从第一设备发送到第二设备。 在条件允许上电第二设备的情况下,可以产生上电命令并从第一设备发送到第二设备。 在选定的实施例中,上电和断电命令是SCSI命令和FICON命令之一。 本文还公开并要求对应的装置,系统和计算机可用介质。
    • 3. 发明授权
    • Flash sector seeding to reduce program times
    • 闪光扇播种以减少节目时间
    • US08219740B2
    • 2012-07-10
    • US12146098
    • 2008-06-25
    • Brian J. CagnoJohn C. ElliottGregg S. LucasKenny N. Qiu
    • Brian J. CagnoJohn C. ElliottGregg S. LucasKenny N. Qiu
    • G06F12/00
    • G06F12/0246G06F2212/7208
    • A non-volatile flash memory comprises a plurality of non-volatile memories where a first non-volatile memory is pre-programmed (erased) with all ones, and at least a second non-volatile memory is pre-programmed with a seed value that takes advantage of the reduced programming time for less than six zeros. When writing (programming) a data byte, the memory system looks up the data byte in one or more seed tables to determine a portion of non-volatile memory to which the memory system may write the data byte with a reduced programming time. The memory system then records the location of the data byte in an address translation table so the data byte may be accessed.
    • 非易失性闪速存储器包括多个非易失性存储器,其中第一非易失性存储器与所有非易失性存储器被预编程(擦除),并且至少第二非易失性存储器被预编程有种子值, 利用减少的编程时间少于六个零。 当写入(编程)数据字节时,存储器系统在一个或多个种子表中查找数据字节,以确定存储器系统可以以减少的编程时间写入数据字节的非易失性存储器的一部分。 然后,存储器系统将数据字节的位置记录在地址转换表中,以便可以访问数据字节。
    • 4. 发明授权
    • Method apparatus and system for a redundant and fault tolerant solid state disk
    • 用于冗余和容错固态盘的方法装置和系统
    • US08201020B2
    • 2012-06-12
    • US12617023
    • 2009-11-12
    • Brian J. CagnoJohn C. ElliottGregg S. LucasAndrew D. Walls
    • Brian J. CagnoJohn C. ElliottGregg S. LucasAndrew D. Walls
    • G06F11/07
    • G06F11/2094G06F11/2089G06F11/2092G06F11/2097
    • A redundant and fault tolerant solid state disk (SSD) includes a determination module configured to identify a first solid state disk controller (SSDC) configured to connect to a flash array and a second SSDC configured to connect to the flash array. A capture module is configured to capture a copy of an I/O request received by the first SSDC from a port of a dual port connector, and/or capture a copy of an I/O request received by the second SSDC from a port of the dual port connector, and identify a write I/O request from the I/O request. A detection module is configured to detect a failure in the first SSDC. A management module is configured to manage access to a flash array by the first SSDC and the second SSDC. An error recovery and failover module is configured to automatically reassign work from the first SSDC to the second SSDC.
    • 冗余和容错固态盘(SSD)包括确定模块,其被配置为识别被配置为连接到闪存阵列的第一固态盘控制器(SSDC)和被配置为连接到闪存阵列的第二SSDC。 捕获模块被配置为从双端口连接器的端口捕获由第一SSDC接收的I / O请求的副本,和/或从第二SSDC的端口捕获由第二SSDC接收的I / O请求的副本 双端口连接器,并从I / O请求中识别写入I / O请求。 检测模块被配置为检测第一SSDC中的故障。 管理模块被配置为管理由第一SSDC和第二SSDC对闪存阵列的访问。 错误恢复和故障切换模块被配置为自动将工作从第一SSDC重新分配给第二SSDC。
    • 8. 发明授权
    • Establishing communications across virtual enclosure boundaries
    • 跨虚拟机箱边界建立通信
    • US07761738B2
    • 2010-07-20
    • US11470856
    • 2006-09-07
    • John C. ElliottRobert A. KuboGregg S. Lucas
    • John C. ElliottRobert A. KuboGregg S. Lucas
    • G06F11/00
    • G06F1/187G06F11/2015G06F11/2089
    • A high density storage enclosure houses first and second pluralities of hard disk drives (HDDs). The enclosure may be partitioned into a plurality of virtual enclosures, the first plurality of HDDs being associated with a first virtual enclosure and the second plurality of HDDs being associated with a second virtual enclosure. In the event of a failure within one of the virtual enclosures, an SES in the failed virtual enclosure is isolated from the rest of the virtual enclosure. Then, an inter-enclosure link may be enabled between the failed virtual enclosure and another virtual enclosure. The isolated SES processor may then be accessed to obtain data associated with the failure and to execute commands associated with a recovery process.
    • 高密度存储机箱容纳第一和第二多个硬盘驱动器(HDD)。 所述外壳可以被划分成多个虚拟外壳,所述第一多个HDD与第一虚拟外壳相关联,并且所述第二多个HDD与第二虚拟外壳相关联。 如果虚拟机箱之一发生故障,故障虚拟机箱中的SES与虚拟机箱的其余部分隔离。 然后,可以在故障虚拟机箱和另一个虚拟机箱之间启用机柜间链路。 然后可以访问隔离的SES处理器以获得与故障相关联的数据并执行与恢复过程相关联的命令。