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    • 1. 发明授权
    • Using object relational extensions for mining association rules
    • 使用对象关系扩展来挖掘关联规则
    • US06301575B1
    • 2001-10-09
    • US09191424
    • 1998-11-12
    • Atul ChadhaBalakrishna Raghavendra IyerKarthick Rajamani
    • Atul ChadhaBalakrishna Raghavendra IyerKarthick Rajamani
    • G06F1730
    • G06F17/30539Y10S707/99932
    • A method, apparatus, and article of manufacture for computer-implemented use of object relational extensions for mining association rules. Data mining is performed by a computer to retrieve data from a data store stored on a data storage device coupled to the computer. A multi-column data store organized using a multi-column data model is received. One of the columns in the multi-column data store represents a transaction, and each of the remaining columns in the multi-column data store represents elements of that transaction. A combination operator is performed to obtain candidate itemsets of data from the multi-column data store, each itemset being a combination of a number of rows of the multi-column data store. Large itemsets of data are generated from the candidate itemsets, wherein each itemset has at least a minimum support. Association rules are generated from the large itemsets of data, wherein each association rule has at least a minimum confidence.
    • 用于采矿关联规则的对象关系扩展的计算机实现使用的方法,装置和制品。 数据挖掘由计算机执行以从存储在耦合到计算机的数据存储设备上的数据存储器中检索数据。 接收使用多列数据模型组织的多列数据存储。 多列数据存储中的列之一表示事务,多列数据存储中的其余列表示该事务的元素。 执行组合运算符以从多列数据存储获得数据的候选项集,每个项集是多列数据存储的多行的组合。 从候选项集中生成大量数据项,其中每个项集具有至少最小支持。 关联规则是从大量数据集生成的,其中每个关联规则具有至少最小的置信度。
    • 2. 发明授权
    • Predicting energy savings
    • 预测节能
    • US09329670B2
    • 2016-05-03
    • US13488822
    • 2012-06-05
    • Malcolm S. Allen-WareWei HuangFadi M. KassemKarthick RajamaniTodd J. RosedahlGuillermo J. Silva
    • Malcolm S. Allen-WareWei HuangFadi M. KassemKarthick RajamaniTodd J. RosedahlGuillermo J. Silva
    • G01F1/32G06F1/32
    • G06F1/329Y02D10/24
    • A mechanism is provided for estimating energy/power consumption of a fixed-frequency operating mode while system is running in dynamic power management mode. For each time interval in a plurality of time intervals within a time period: a first processor identifies a modeled total nominal power value for at least one second processor during a current time interval, stores the modeled total nominal power value for the current time interval in a storage, identifies a dynamic power management mode power value for the at least one second processor in the data processing system during the current interval, and stores the dynamic power management mode power value for the current time interval in the storage. Responsive to the time period expiring, a comparison is produced of a plurality of modeled total nominal power values and a plurality of dynamic power management mode power values over the time period.
    • 提供了一种用于在系统以动态功率管理模式运行时估计固定频率操作模式的能量/功率消耗的机制。 对于在一段时间段内的多个时间间隔中的每个时间间隔:第一处理器在当前时间间隔期间识别至少一个第二处理器的建模总额定功率值,将建模的总额定功率值存储在当前时间间隔中 存储器,在当前间隔期间识别数据处理系统中的至少一个第二处理器的动态功率管理模式功率值,并将当前时间间隔的动态功率管理模式功率值存储在存储器中。 响应于时间段到期,在该时间段内产生多个建模的总额定功率值和多个动态功率管理模式功率值的比较。
    • 4. 发明授权
    • System, method and computer program product for monitoring memory access
    • 用于监控内存访问的系统,方法和计算机程序产品
    • US08635381B2
    • 2014-01-21
    • US12869591
    • 2010-08-26
    • Richard L. ArndtKarthick RajamaniJeffrey A. Stuecheli
    • Richard L. ArndtKarthick RajamaniJeffrey A. Stuecheli
    • G06F3/00
    • G06F11/3485G06F2201/88
    • According to one aspect of the present disclosure a method and technique for monitoring memory access is disclosed. The method includes monitoring, by a plurality of memory controllers, access to a memory unit, wherein each memory controller is associated with a different range of memory addresses of the memory unit, and wherein each memory controller monitors access for its associated range of memory addresses. The method also includes updating an incrementor with access data corresponding to accesses to the memory unit, wherein each memory controller updates the access data based on access of its associated range of memory addresses. The method further includes storing, by each respective memory controller, the updated access data in a cache corresponding to the respective range of memory addresses and, responsive to the updated access data for a respective range of memory addresses exceeding a threshold, storing the access data for the respective range of memory addresses in memory unit.
    • 根据本公开的一个方面,公开了一种用于监视存储器访问的方法和技术。 该方法包括通过多个存储器控制器监视对存储器单元的访问,其中每个存储器控制器与存储器单元的存储器地址的不同范围相关联,并且其中每个存储器控制器监视对其相关联的存储器地址范围的访问 。 该方法还包括使用与对存储器单元的访问相对应的访问数据来更新增量器,其中每个存储器控制器基于其相关联的存储器地址范围的访问来更新访问数据。 该方法还包括由每个相应的存储器控​​制器将更新的访问数据存储在与存储器地址的相应范围相对应的高速缓存中,并且响应于对于超过阈值的存储器地址的相应范围的更新的访问数据,存储访问数据 对于存储器单元中的各个存储器地址范围。
    • 6. 发明授权
    • Oversubscribing branch circuits while lowering power distribution costs
    • 超大规模的分支电路,同时降低配电成本
    • US08392729B2
    • 2013-03-05
    • US13451181
    • 2012-04-19
    • Patrick K. EganWesley M. FelterKarthick RajamaniJuan C. RubioMalcolm S. Ware
    • Patrick K. EganWesley M. FelterKarthick RajamaniJuan C. RubioMalcolm S. Ware
    • G06F1/26
    • G06F1/30
    • A mechanism is provided for oversubscribing branch circuits. An active energy management mechanism determines a cumulative wattage rating using power consumption information for a powered element, the power consumption information is for a primary and a redundant portion of the powered element. The active energy management mechanism determines a power reduction power cap to be used by the powered element in the event of a loss of either a primary or a redundant power source supplied to the powered element using the cumulative wattage rating, a branch circuit rating, and a circuit breaker rating for the powered element. The active energy management mechanism sends the power reduction power cap to the powered element in order that the powered element reduces power to the power reduction power cap in the event of the loss of either the primary power source or the redundant power source supplied to the powered element.
    • 提供了一种用于超额订购分支电路的机制。 主动能量管理机构使用功率元件的功耗信息确定累积功率额定值,功率消耗信息用于有源元件的主要部分和冗余部分。 主动能量管理机构确定在使用累积功率额定值,分支电路额定值和供电元件的主电源或冗余电源的损耗的情况下由供电元件使用的功率降低功率帽,以及 电源元件的断路器额定值。 主动能量管理机构将功率降低功率帽发送到有源元件,以便在被供电到主动力源的主电源或冗余电源丢失的情况下,有源元件降低功率降低功率上限的功率 元件。