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    • 2. 发明授权
    • Modeling storage system performance
    • 建模存储系统性能
    • US09514022B1
    • 2016-12-06
    • US13275607
    • 2011-10-18
    • Jayanta BasakKaladhar VorugantiSiddhartha Nandi
    • Jayanta BasakKaladhar VorugantiSiddhartha Nandi
    • G06F11/34
    • G06F11/3447G06F11/00
    • A system and method for creating an accurate black-box model of a live storage system and for predicting performance of the storage system under a given workload is disclosed. An analytics engine determines a subset of counters that are relevant to performance of the storage system with respect to a particular output (e.g., throughput or latency) from performance data in counters of the storage system. Using the subset of counters, the analytics engine creates a workload signature for the storage system by using a recursive partitioning technique, such as a classification and regression tree. The analytics engine then creates the black-box model of the storage system performance by applying uncertainty measurement techniques, such as a Gaussian process, to the workload signature.
    • 公开了一种用于创建实时存储系统的精确黑箱模型并用于在给定工作负载下预测存储系统的性能的系统和方法。 分析引擎确定与存储系统的计数器中的性能数据相关的特定输出(例如,吞吐量或延迟)与存储系统的性能相关的计数器的子集。 使用计数器子集,分析引擎通过使用递归分区技术(如分类和回归树)为存储系统创建工作负载签名。 然后,分析引擎通过对工作负载签名应用不确定性测量技术(例如高斯过程)来创建存储系统性能的黑盒模型。
    • 3. 发明授权
    • Predictive power gating with optional guard mechanism
    • 具有可选保​​护机构的预测电源门控
    • US08219834B2
    • 2012-07-10
    • US12539978
    • 2009-08-12
    • Jayanta BasakPradip BoseAlper BuyuktosunogluAnita Lungu
    • Jayanta BasakPradip BoseAlper BuyuktosunogluAnita Lungu
    • G06F1/00G06F1/26G06F1/32
    • G06F1/3203
    • A mechanism is provided for predictively power gating a set of units within the data processing system. A second-level power gating controller monitors a set of events for each unit in a set of units within the data processing system. The second-level power gating controller identifies idle sequences of a predetermined set of cycles within the events from each unit where the unit is idle. The second-level power gating controller determines preceding sequences of a predetermined length that precede the idle sequences. The second-level power gating controller determines an accuracy of the preceding sequences. Responsive to the accuracy being above a threshold, the second-level power gating controller sends a permit command to a first-level power gating mechanism associated with the unit to permit power gating of the unit.
    • 提供了用于在数据处理系统内预测性地选通一组单元的机构。 二级电源门控控制器监视数据处理系统内的一组单元中的每个单元的一组事件。 第二级电力门控控制器从单元空闲的每个单元的事件内识别预定的一组周期的空闲序列。 第二级电源门控控制器确定在空闲序列之前的预定长度的先前序列。 二级电源门控控制器确定前面的序列的精度。 响应于精度高于阈值,二级电源门控控制器向与该单元相关联的一级电源门控机构发送许可命令,以允许该单元的电源门控。
    • 8. 发明授权
    • Dynamically compiling a list of solution documents for information technology queries
    • 动态编译信息技术查询的解决方案文档列表
    • US08983969B2
    • 2015-03-17
    • US12504091
    • 2009-07-16
    • Jayanta BasakDinesh Garg
    • Jayanta BasakDinesh Garg
    • G06F7/00G06F17/30
    • G06F17/30424
    • Techniques for dynamically compiling a list of one or more solution documents are provided. The techniques include receiving one or more questions, forming one or more of the one or more questions into one or more lists, wherein forming one or more questions into one or more lists comprises expressing each question in a compressed manner using one or more sets of one or more keywords, receiving input from a solution database, and using the one or more lists and input from a solution database to dynamically compile a list of one or more solution documents in connection with the one or more questions.
    • 提供了用于动态编译一个或多个解决方案文档的列表的技术。 这些技术包括接收一个或多个问题,将一个或多个问题形成一个或多个问题到一个或多个列表中,其中将一个或多个问题形成到一个或多个列表中包括使用一组或多组列表以压缩方式表达每个问题 一个或多个关键字,从解决方案数据库接收输入,以及使用所述一个或多个列表和来自解决方案数据库的输入来动态地编译与所述一个或多个问题有关的一个或多个解决方案文档的列表。
    • 9. 发明授权
    • Ranking nodes in a graph
    • 在图表中排列节点
    • US08681155B2
    • 2014-03-25
    • US13584259
    • 2012-08-13
    • Jayanta Basak
    • Jayanta Basak
    • G06T11/20
    • G06T11/20
    • Techniques for ranking nodes in a graph are provided. The techniques include computing resultant path strength between each pair of nodes in a polynomial time, determining a first node based on resultant path strength such that total path strength to the first node is a maximum value, iteratively determining a next node from the first node to which the resultant path strength is a maximum value and the node is not visited, and providing each determined node a unique rank value, and ranking the nodes in an order determined by the unique rank value of each node.
    • 提供了用于对图中的节点进行排序的技术。 所述技术包括在多项式时间内计算每对节点之间的合成路径强度,基于所得到的路径强度来确定第一节点,使得到第一节点的总路径强度为最大值,迭代地确定从第一节点到下一个节点到 其中所得到的路径强度是最大值,并且节点不被访问,并且为每个确定的节点提供唯一的等级值,并且以由每个节点的唯一等级值确定的顺序对节点进行排序。
    • 10. 发明授权
    • Two-level guarded predictive power gating
    • 两级守卫预测能力门控
    • US08219833B2
    • 2012-07-10
    • US12539941
    • 2009-08-12
    • Jayanta BasakPradip BoseAlper BuyuktosunogluAnita Lungu
    • Jayanta BasakPradip BoseAlper BuyuktosunogluAnita Lungu
    • G06F1/00G06F1/26G06F1/32
    • G06F1/3203G06F11/3466Y02D10/34
    • A mechanism is provided for two-level guarded predictive power gating of a set of units within the data processing system. A success determines whether a unit within the set of units is power gated during a monitoring interval. If the unit is power gated, the success monitor determines whether a count of idle cycles for the unit is below a breakeven point. If the count is above the breakeven point, the success monitor increments a success efficiency counter. If the count is below the breakeven point, the success monitor determines whether the unit needs to be woke up. If the unit needs to be woke up, the success monitor increments a harmful efficiency counter. If the value of the harmful efficiency counter is less than the value from the success efficiency counter, the success monitor enables power gating for the unit via a first-level power-gating mechanism.
    • 提供了一种用于数据处理系统内的一组单元的两级保护预测能力门控的机制。 一个成功的确定在一个监视间隔期间该单元组内的一个单元是否电源门控。 如果该单元是电源门控,则成功监视器确定该单元的空闲周期计数是否低于盈亏平衡点。 如果计数高于盈亏平衡点,则成功监视器会增加成功效率计数器。 如果计数低于盈亏平衡点,则成功监视器确定该单元是否需要醒来。 如果单位需要醒来,成功监测器会增加一个有害的效率计数器。 如果有害效率计数器的值小于成功效率计数器的值,则成功监视器可通过一级电源门控机构对单元进行功率门控。