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    • 72. 发明申请
    • ANALYZING A TARGET ELECTROMAGNETIC SIGNAL RADIATING FROM A COMPUTER SYSTEM
    • 从计算机系统分析目标电磁信号
    • US20100161525A1
    • 2010-06-24
    • US12340029
    • 2008-12-19
    • Kenny C. GrossRamakrishna C. DhanekulaAndrew J. LewisAleksey M. Urmanov
    • Kenny C. GrossRamakrishna C. DhanekulaAndrew J. LewisAleksey M. Urmanov
    • G06F15/18G01R29/08G06N5/02
    • G01R33/10
    • One embodiment of the present invention provides a system that characterizes a computer system parameter by analyzing a target electromagnetic signal radiating from the computer system. First, the system monitors the target electromagnetic signal using a first directional antenna located outside of the computer system, wherein the first directional antenna is directed at a location inside the computer system. The system also monitors the target electromagnetic signal using a second directional antenna located outside of the computer system, wherein a receiving axis of the second antenna is oriented non-parallel to a receiving axis of the first antenna, and wherein the second directional antenna is directed at the location inside the computer system. Next, the system characterizes the computer system parameter based on the target electromagnetic signal received from the first antenna and the target electromagnetic signal received from the second antenna. Then, the system generates a request for an action based on the characterization of the computer system.
    • 本发明的一个实施例提供一种通过分析从计算机系统辐射的目标电磁信号来表征计算机系统参数的系统。 首先,系统使用位于计算机系统外部的第一定向天线来监视目标电磁信号,其中第一定向天线指向计算机系统内部的位置。 该系统还使用位于计算机系统外部的第二定向天线来监视目标电磁信号,其中第二天线的接收轴定向成不平行于第一天线的接收轴,并且其中第二定向天线被定向 在计算机系统内的位置。 接下来,系统基于从第一天线接收的目标电磁信号和从第二天线接收的目标电磁信号来表征计算机系统参数。 然后,系统基于计算机系统的特性生成针对动作的请求。
    • 78. 发明授权
    • Method for high-level parallelization of large scale QP optimization problems
    • 高等级并行化大规模QP优化问题的方法
    • US07231376B1
    • 2007-06-12
    • US11111031
    • 2005-04-21
    • Filiz GurtunaAleksey M. UrmanovKenny C. Gross
    • Filiz GurtunaAleksey M. UrmanovKenny C. Gross
    • G06F15/18
    • G06N99/005
    • One embodiment of the present invention provides a system that performs high-level parallelization of large scale quadratic-problem (QP) optimization. During operation, the system receives a training dataset comprised of a number of data vectors. The system first determines to what extent each data vector violates conditions associated with a current support vector machine (SVM). The system then sorts the data vectors based on each data vector's degree of violation. Next, the system partitions the sorted data vectors into a number of prioritized subsets, wherein the subset with the highest priority contains the largest number of violators with the highest degree of violation. The system subsequently solves in parallel a QP optimization problem for each subset based on the subset's priority. The system then constructs a new SVM to replace the current SVM based on the QP optimization solution for each subset.
    • 本发明的一个实施例提供一种执行大规模二次问题(QP)优化的高级并行化的系统。 在操作期间,系统接收由多个数据向量组成的训练数据集。 系统首先确定每个数据向量在多大程度上违反与当前支持向量机(SVM)相关联的条件。 然后,系统根据每个数据向量的违规程度对数据向量进行排序。 接下来,系统将排序的数据向量划分成多个优先化子集,其中具有最高优先级的子集包含具有最高违规程度的最大数量的违规者。 该系统随后基于子集的优先级并行解决每个子集的QP优化问题。 然后,系统构建一个新的SVM,以基于每个子集的QP优化解决方案来替换当前SVM。
    • 79. 发明授权
    • Multi-dimensional sequential probability ratio test for detecting failure conditions in computer systems
    • 用于检测计算机系统故障情况的多维连续概率比检验
    • US07191096B1
    • 2007-03-13
    • US10918129
    • 2004-08-13
    • Kenny C. GrossAleksey M. Urmanov
    • Kenny C. GrossAleksey M. Urmanov
    • G06F11/30
    • G06F11/008
    • One embodiment of the present invention provides a monitoring system that detects anomalies in data gathered from sensors in a computer system. During operation, the monitoring system samples data from a plurality of sensors located at various sampling points throughout the computer system. Next, the monitoring system interpolates the data from the sampling points to produce a real-time digitized surface. The monitoring system then subtracts a reference digitized surface from the real-time digitized surface to produce a residual digitized surface. Finally, the monitoring system applies a multi-dimensional sequential probability ratio test (SPRT) to the residual digitized surface to detect anomalies in the residual digitized surface which indicate an impending failure of the computer system.
    • 本发明的一个实施例提供一种监测系统,其检测从计算机系统中的传感器收集的数据中的异常。 在操作期间,监视系统从位于整个计算机系统的各个采样点处的多个传感器采样数据。 接下来,监控系统对来自采样点的数据进行内插以产生实时数字化表面。 然后,监控系统从实时数字化表面中减去参考数字化表面,以产生残留的数字化表面。 最后,监控系统将多维连续概率比测试(SPRT)应用于剩余数字化表面,以检测剩余数字化表面中的异常,指示计算机系统即将发生的故障。