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    • 5. 发明授权
    • Determining operating fan speed for systems containing disk drives to minimize vibrational impact
    • 确定包含磁盘驱动器的系统的运行风扇速度,以尽量减少振动影响
    • US07565226B1
    • 2009-07-21
    • US11701649
    • 2007-02-02
    • John J. CooleyAleksey M. UrmanovGeorge PopescuKenneth C. Gross
    • John J. CooleyAleksey M. UrmanovGeorge PopescuKenneth C. Gross
    • G01M1/38
    • G01M1/30
    • A method and an apparatus for determining cooling fan speeds that should be avoided to prevent vibational resonance with system enclosures, given ambient conditions, and/or current geographic altitude. An exemplary method to determine one or more ranges of fan speed for one or more cooling fans in a chassis with one or more systems to avoid vibrational resonance in the chassis caused by the one or more cooling fans is provided. The method includes determining a range of operable fan speed for the one or more cooling fans that meets the cooling goal of the one or more systems in the chassis, wherein the one or more cooling fans are used to cool the chassis, and the one or more systems. The method also includes scanning fan speed for the one or more cooling fans over the determined range of operable fan speed, and collecting and analyzing read or write rates on a hard disk drive in the one or more systems over the determined range of operable fan speed. The method further includes determining one or more ranges of usable fan speed that avoid vibrational resonance in the chassis caused by the one or more cooling fans, based on the collected and analyzed read or write rates.
    • 一种用于确定应当避免的冷却风扇速度的方法和装置,以防止在给定环境条件和/或当前地理高度的情况下与系统外壳的振动共振。 提供了一种用于确定具有一个或多个系统的机架中的一个或多个冷却风扇的一个或多个风扇速度范围的示例性方法,以避免由一个或多个冷却风扇引起的在底盘中的振动共振。 该方法包括确定满足机箱中的一个或多个系统的冷却目标的一个或多个冷却风扇的可操作的风扇速度的范围,其中所述一个或多个冷却风扇用于冷却底盘, 更多的系统。 该方法还包括在可操作的风扇速度的确定范围内扫描一个或多个冷却风扇的风扇速度,以及在所确定的可操作风扇速度范围内收集和分析一个或多个系统中的硬盘驱动器上的读取或写入速率 。 该方法还包括基于收集和分析的读取或写入速率来确定避免由一个或多个冷却风扇引起的底盘振动共振的一个或多个可用风扇速度范围。
    • 10. 发明授权
    • Dynamic self-tuning soft-error-rate-discrimination for enhanced availability of enterprise computing systems
    • 动态自整定软错误率歧视,增强企业计算系统的可用性
    • US07526683B1
    • 2009-04-28
    • US11141844
    • 2005-06-01
    • Lawrence G. Votta, Jr.Kenneth C. GrossAleksey M. UrmanovDouglas B. Meyer
    • Lawrence G. Votta, Jr.Kenneth C. GrossAleksey M. UrmanovDouglas B. Meyer
    • G06F11/00
    • G06F11/008
    • A method for use in a computer system provides a dynamic, “self tuning” soft-error-rate-discrimination (SERD) method and apparatus. Specially designed SRAMs or other circuits are “tuned” in a manner that gives them extreme susceptibility to cosmic neutron events (soft errors), higher than that of the “regular” SRAM components, memory modules or other components in the computer system. One such specially designed SRAM is deployed per server. An interface algorithm continuously sends read/write traffic to the special SRAM to infer the soft error rate (SER), which is directly proportional to cosmic neutron flux. The inferred cosmic neutron flux rate is employed in a Poisson SPRT algorithmic approach that dynamically compensates the soft error discrimination sensitivity in accordance with the instantaneous neutron flux for all of the regular SRAM components in the server.
    • 一种在计算机系统中使用的方法提供了一种动态的“自调谐”软错误率鉴别(SERD)方法和装置。 专门设计的SRAM或其他电路以“调谐”的方式使其对宇宙中子事件(软错误)具有极高的敏感性,高于计算机系统中“常规”SRAM组件,存储器模块或其他组件的极端敏感性。 每个服务器部署一个这样专门设计的SRAM。 接口算法连续向专用SRAM发送读/写流量,推断出与宇宙中子通量成正比的软误码率(SER)。 推测的宇宙中子通量速率采用泊松SPRT算法方法,根据服务器中所有常规SRAM组件的瞬时中子通量动态补偿软误差鉴别灵敏度。