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    • 31. 发明申请
    • DESIGN OF EXPERIMENT PARAMETERS FOR WALD'S SEQUENTIAL TESTS BASED ON CONTINUED FRACTIONS
    • 基于连续分段的WALD序列测试实验参数设计
    • US20110119030A1
    • 2011-05-19
    • US12619054
    • 2009-11-16
    • Genady GrabarnikYefim H. MichlinLarisa Shwartz
    • Genady GrabarnikYefim H. MichlinLarisa Shwartz
    • G06F17/18
    • G06F11/008
    • Test characteristics are determined at vertices of a rectangle defined on a sequential probability ratio test plot of a number of failures of a new physical system versus a number of failures of a baseline physical system. Based on the test characteristics, errors of first and second order are approximated as planes. Based on the approximating, intercepts of accept and reject boundaries are estimated. Based on slopes of the planes and actual values of the errors of the first and second orders, a starting point is determined on a graph of values of an intercept of the reject boundary and values of an intercept of the accept boundary. A minimum of an operating characteristic function is determined by alternative advances, commencing at the starting point, parallel to an axis representing the accept boundary intercept and an axis representing the reject boundary intercept.
    • 测试特征是在新的物理系统的故障数量与基准物理系统的故障数量的顺序概率比测试图上定义的矩形的顶点确定的。 基于测试特征,第一和第二阶的误差近似为平面。 基于近似,估计接收和拒绝边界的截距。 基于平面的斜率和第一和第二阶的误差的实际值,在拒绝边界的截距值和接受边界的截距的值的图形上确定起始点。 运行特征函数的最小值由替代进位确定,从起始点开始,平行于表示接受边界截距的轴和表示拒绝边界截距的轴。
    • 39. 发明申请
    • METHOD AND APPARATUS FOR SAFE ONTOLOGY REASONING
    • 方法和装置安全的本体论理由
    • US20080065578A1
    • 2008-03-13
    • US11931601
    • 2007-10-31
    • Achille Fokoue-NkoutcheGenady GrabarnikNagui HalimAaron KershenbaumEdith SchonbergLarisa ShwartzKavitha Srinivas
    • Achille Fokoue-NkoutcheGenady GrabarnikNagui HalimAaron KershenbaumEdith SchonbergLarisa ShwartzKavitha Srinivas
    • G06N5/02
    • G06N5/04
    • The present invention is a method and apparatus for safe ontology reasoning. In one embodiment, a method for building safe sub-ontology that includes one or more elements of a given ontology includes designating at least one the elements as a sensitive element, where a sensitive element is an element not to be revealed. The method then designates a safe sub-ontology such that the safe sub-ontology does not include any elements that, alone or in combination, allow inference of a sensitive element, in accordance with one or more given inference rules. In another embodiment, a method for building a potential sub-ontology includes designating at least one of the elements as a sensitive element and including a maximal number of the elements in the potential sub-ontology, wherein the maximal number includes the greatest number of elements that can be revealed, cumulatively, without allowing inference of a sensitive element, in accordance with one or more given inference rules.
    • 本发明是一种安全本体推理的方法和装置。 在一个实施例中,一种用于构建包括给定本体的一个或多个元素的安全子本体的方法包括将至少一个元素指定为敏感元件,其中敏感元件是不被揭示的元件。 该方法然后指定安全子本体,使得安全子本体不包括根据一个或多个给定推理规则单独或组合地允许敏感元素的推断的任何元素。 在另一实施例中,构建潜在子本体的方法包括将至少一个元素指定为敏感元件并且包括潜在子本体中的元素的最大数量,其中最大数量包括最大数量的元素 可以根据一个或多个给定的推论规则累积地揭示,而不允许推断敏感元件。