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    • 5. 发明申请
    • POWER OPTIMIZATION FOR DISTRIBUTED COMPUTING SYSTEM
    • 分布式计算系统的功率优化
    • US20150301572A1
    • 2015-10-22
    • US14127222
    • 2012-12-28
    • Xiaohu ZHOUKevin Y. LIRahul KHANNA
    • Xiaohu ZHOUKevin Y. LIRahul KHANNA
    • G06F1/32G06F9/48
    • G06F1/3203G06F1/3206G06F1/3209G06F1/3234G06F1/329G06F9/4893
    • An embodiment includes determining a first power metric (e.g., memory module temperature) corresponding to a group of computing nodes that includes first and second computing nodes; and distributing a computing task to a third computing node (e.g., load balancing) in response to the determined first power metric; wherein the third computing node is located remotely from the first and second computing nodes. The first power metric may be specific to the group of computing nodes and is not specific to either of the first and second computing nodes. Such an embodiment may leverage knowledge of computing node group behavior, such as power consumption, to more efficiently manage power consumption in computing node groups. This “power tuning” may rely on data taken at the “silicon level” (e.g., an individual computing node such as a server) and/or a large group level (e.g., data center). Other embodiments are described herein.
    • 实施例包括确定与包括第一和第二计算节点的一组计算节点相对应的第一功率量度(例如,存储器模块温度); 以及响应于所确定的第一功率量度将计算任务分配到第三计算节点(例如,负载平衡); 其中所述第三计算节点位于远离所述第一和第二计算节点的位置。 第一功率度量可以是该组计算节点特有的,并且不是特定于第一和第二计算节点中的任一个。 这样的实施例可以利用计算节点组行为(例如功耗)的知识来更有效地管理计算节点组中的功耗。 这种“功率调谐”可以依赖于在“硅层”(例如,诸如服务器的单个计算节点)和/或大组级别(例如,数据中心)获取的数据。 本文描述了其它实施例。
    • 7. 发明授权
    • Extensible and flexible firmware architecture for reliability, availability, serviceability features
    • 可扩展和灵活的固件架构,可靠性,可用性,可维护性功能
    • US07941810B2
    • 2011-05-10
    • US11648419
    • 2006-12-28
    • Rahul KhannaJian TangYufu Li
    • Rahul KhannaJian TangYufu Li
    • G06F9/54G06F9/44
    • G06F11/004G06F11/0709G06F11/0793
    • Improved reliability, availability, and serviceability (RAS) is provided by an extensible and flexible firmware architecture. The architecture provides management for events, where an event is a response to an imminent failure of or capacity change requirement applicable to a component of the system. In response to an event, control of a system is transferred from an operating system to the firmware manager. The manager identifies an action that is specified by the event. Based on the action, the firmware manager selects a firmware handler from a plurality of firmware handlers. The firmware manager dispatches the selected firmware handler to perform the specified action. The firmware manager and the dispatched firmware handler exchange system-independent information regarding the event. The firmware manager also manages time-slices for the performance of the specified action by the dispatched firmware handler.
    • 通过可扩展且灵活的固件架构提供可靠性,可用性和可维护性(RAS)的提高。 该架构为事件提供管理,其中事件是对应用于系统组件的即将发生的故障或容量变化要求的响应。 响应于事件,将系统的控制从操作系统传送到固件管理器。 经理识别事件指定的动作。 基于该动作,固件管理器从多个固件处理器中选择固件处理程序。 固件管理器调度所选的固件处理程序以执行指定的操作。 固件管理器和发送的固件处理程序交换与事件有关的系统无关信息。 固件管理器还管理由分派的固件处理程序执行指定操作的时间片。