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    • 3. 发明申请
    • Virtual Reader for Scoring Applications
    • 用于评分应用程序的虚拟阅读器
    • US20110225169A1
    • 2011-09-15
    • US12720791
    • 2010-03-10
    • Marita KurianAdam MillerOscar Sweeten-LopezKevin Byrne
    • Marita KurianAdam MillerOscar Sweeten-LopezKevin Byrne
    • G06F17/30
    • G06Q10/06
    • A system, method, and computer-readable medium are disclosed for the automated processing and scoring of applications. Application reader resources are selected to read and score individual categories of the application. The difference between the respective reader scores and an average delta value for each category of each application that the selected readers have previously score is calculated. The standard deviation of the average delta value for each category is calculated. If the selected reader's score for that category is not within one standard deviation of the average delta value, then the selected reader's score is adjusted the least amount necessary to be so. An additional application reader is selected to read and score the application. Reading and scoring operations are continued until at least two reader scores are within one standard deviation of the average of the adjusted scores. Final scoring of all applications is performed and the scored applications are ranked in descending order.
    • 公开了用于应用的自动处理和评分的系统,方法和计算机可读介质。 选择应用程序读取器资源来读取和评分应用程序的各个类别。 计算各读者评分与所选读者先前得分的每个应用程序的每个类别的平均差值。 计算每个类别的平均增量值的标准偏差。 如果所选择的读者对该类别的分数不在平均增量值的一个标准偏差内,则所选读者的分数被调整为必要的最小量。 选择一个额外的应用程序读取器来读取和评分应用程序。 阅读和记分操作将持续进行,直到至少两个阅读器分数在调整分数的平均值的一个标准差内。 执行所有应用程序的最终得分,并将得分的应用程序按降序排列。
    • 5. 发明授权
    • Calorimetric hydrocarbon gas sensor
    • 量热烃气体传感器
    • US5989398A
    • 1999-11-23
    • US970837
    • 1997-11-14
    • Daniel A. YoungAdam MoyaChowdary R. KoripellaJeff NaberNeil AdamsCraig MarkyvechAdam Miller
    • Daniel A. YoungAdam MoyaChowdary R. KoripellaJeff NaberNeil AdamsCraig MarkyvechAdam Miller
    • G01N25/30G01N25/36G01N27/16G01N27/419G01N27/26
    • G01N27/16G01N25/30G01N27/419
    • A calorimetric hydrocarbon gas sensor (10) includes an electrochemical oxygen pump (18), a sensing element (12), and a multi-layered substrate (26) separating the sensing element (12) from the electrochemical oxygen pump (18). The multi-layered substrate (26) includes a plurality of overlying insulating layers, in which at least one intermediate layer (60) supports a first primary heater (58), and in which another intermediate layer (52) supports a temperature compensation heaters (50a, 50b). The primary heater (58) functions to maintain the calorimetric hydrocarbon gas sensor (10) at a constant, elevated temperature, while the active compensation heater (50a) functions to maintain substantially equal temperatures as determined by the thermometers (46a, 46b) located on an intermediate layer (48) overlying the compensation heaters (50a, 50b). Control circuitry is integrated with power measurement circuitry to measure differences in the heat produced by the compensation heater (50a) and the thermometer (46a) in an active region (100), and the heat produced by the compensation heater (50b) and the thermometer (46b) in a reference region (102).
    • 量热烃气体传感器(10)包括电化学氧气泵(18),感测元件(12)和将感测元件(12)与电化学氧气泵(18)分开的多层衬底(26)。 多层基板(26)包括多个上覆绝缘层,其中至少一个中间层(60)支撑第一主加热器(58),并且其中另一中间层(52)支撑温度补偿加热器 50a,50b)。 主加热器(58)用于将量热烃气体传感器(10)保持在恒定的升高的温度,而有源补偿加热器(50a)用于维持基本上相同的温度,由温度计(46a,46b) 覆盖补偿加热器(50a,50b)的中间层(48)。 控制电路与功率测量电路集成,以测量补偿加热器(50a)和活动区域(100)中的温度计(46a)产生的热量的差异,以及补偿加热器(50b)和温度计 (46b)在参考区域(102)中。
    • 9. 发明授权
    • Virtual reader for scoring applications
    • 用于评分应用程序的虚拟阅读器
    • US08200675B2
    • 2012-06-12
    • US12720791
    • 2010-03-10
    • Marita KurianAdam MillerOscar Sweeten-LopezKevin Byrne
    • Marita KurianAdam MillerOscar Sweeten-LopezKevin Byrne
    • G07F17/30
    • G06Q10/06
    • A system, method, and computer-readable medium are disclosed for the automated processing and scoring of applications. Application reader resources are selected to read and score individual categories of the application. The difference between the respective reader scores and an average delta value for each category of each application that the selected readers have previously score is calculated. The standard deviation of the average delta value for each category is calculated. If the selected reader's score for that category is not within one standard deviation of the average delta value, then the selected reader's score is adjusted the least amount necessary to be so.
    • 公开了用于应用的自动处理和评分的系统,方法和计算机可读介质。 选择应用程序读取器资源来读取和评分应用程序的各个类别。 计算各读者评分与所选读者先前得分的每个应用程序的每个类别的平均差值。 计算每个类别的平均增量值的标准偏差。 如果所选择的读者对该类别的分数不在平均增量值的一个标准偏差内,则所选读者的分数被调整为必要的最小量。