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    • 41. 发明授权
    • Thread partitioning in a multi-core environment
    • 多核环境中的线程分区
    • US08707016B2
    • 2014-04-22
    • US12024211
    • 2008-02-01
    • Ravi K. ArimilliJuan C. RubioBalaram Sinharoy
    • Ravi K. ArimilliJuan C. RubioBalaram Sinharoy
    • G06F9/30
    • G06F9/4843G06F9/3851
    • A set of helper thread binaries is created to retrieve data used by a set of main thread binaries. The set of helper thread binaries and the set of main thread binaries are partitioned according to common instruction boundaries. As a first partition in the set of main thread binaries executes within a first core, a second partition in the set of helper thread binaries executes within a second core, thus “warming up” the cache in the second core. When the first partition of the main completes execution, a second partition of the main core moves to the second core, and executes using the warmed up cache in the second core.
    • 创建一组辅助线程二进制文件来检索一组主线程二进制文件使用的数据。 辅助线程二进制文件集和主线程二进制文件集合根据公共指令边界进行分区。 作为主线程二进制文件集合中的第一分区在第一核心内执行,该辅助线程二进制文件集中的第二分区在第二核心内执行,从而“预热”第二核心中的高速缓存。 当主要的第一分区完成执行时,主核心的第二分区移动到第二核心,并使用第二核心中的预热高速缓存执行。
    • 46. 发明申请
    • Liquid Cooling System for Stackable Modules in Energy-Efficient Computing Systems
    • 节能计算系统中可堆叠模块的液体冷却系统
    • US20120188719A1
    • 2012-07-26
    • US13435998
    • 2012-03-30
    • Wael R. El-EssawyThomas W. Keller, JR.Jarrod A. RoyJuan C. Rubio
    • Wael R. El-EssawyThomas W. Keller, JR.Jarrod A. RoyJuan C. Rubio
    • H05K7/20
    • H05K7/02G06F1/18G06F1/181G06F1/20H05K7/20
    • A processing module is provided that comprises a set of processing module sides, each comprising a circuit board, a plurality of connectors coupled to the circuit board, and a plurality of processing nodes coupled to the circuit board. Each processing module side couples to another processing module side to form a modular processing module. The modular processing module comprises an exterior connection to a power source and a communication system and a plurality of cold plates coupled to the plurality of processing nodes. Liquid coolant is circulated through the plurality of cold plates via a closed loop by at least one pump through a plurality of tubes and through at least one heat exchanger. The at least one heat exchanger is coupled to an exterior portion of the processing module. The at least one heat exchanger cools the liquid coolant using air surrounding the processing module.
    • 提供一种处理模块,其包括一组处理模块侧面,每个处理模块侧面包括电路板,耦合到电路板的多个连接器以及耦合到电路板的多个处理节点。 每个处理模块侧耦合到另一处理模块侧以形成模块化处理模块。 模块化处理模块包括到电源和通信系统的外部连接以及耦合到多个处理节点的多个冷板。 液体冷却剂通过多个冷板通过至少一个泵通过多个管并通过至少一个热交换器经由闭环循环。 至少一个热交换器耦合到处理模块的外部部分。 所述至少一个热交换器使用围绕所述处理模块的空气冷却所述液体冷却剂。
    • 47. 发明申请
    • DATA CENTER POWER CONVERSION EFFICIENCY MANAGEMENT
    • 数据中心功率转换效率管理
    • US20120066519A1
    • 2012-03-15
    • US12878063
    • 2010-09-09
    • Wael R. El-EssawyKarthick RajamaniJuan C. Rubio
    • Wael R. El-EssawyKarthick RajamaniJuan C. Rubio
    • G06F1/26
    • G05F1/66G06F1/26H04L67/12H05K7/1492H05K7/1498
    • A data center energy management (DCEM) server configures a power supply in the data center. The DCEM server sums input alternating current (AC) power of the power supply to a total AC power of the data center, wherein the total AC power of the data center is a sum of AC power of a plurality of power supplies. The DCEM server sums output direct current (DC) power of the power supply to a total DC power of the data center and reports a ratio of total AC power to total DC power as data center power conversion efficiency. The DCEM server sets a preset power supply efficiency threshold. The DCEM server determines that a real-time power efficiency level is below the power supply efficiency threshold. The DCEM server, responsive to a determination that real-time power efficiency level is below the power supply efficiency threshold, may remedy the power supply.
    • 数据中心能量管理(DCEM)服务器配置数据中心的电源。 DCEM服务器将电源的输入交流电(AC)功率与数据中心的总AC电力相加,其中数据中心的总AC功率是多个电源的AC功率之和。 DCEM服务器将电源的直流输出直流功率与数据中心的总直流功率相加,并将总的交流电与总的直流功率之比报告为数据中心的电源转换效率。 DCEM服务器设置预设的电源效率阈值。 DCEM服务器确定实时功率效率水平低于电源效率阈值。 响应于确定实时功率效率水平低于电源效率阈值的DCEM服务器可以补救电源。