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    • 3. 发明授权
    • Systems and methods for odometer monitoring
    • 里程表监控系统和方法
    • US09367967B2
    • 2016-06-14
    • US12569846
    • 2009-09-29
    • William A. BiondoGeorge Baker
    • William A. BiondoGeorge Baker
    • G01C22/00G07C5/00G07C5/08
    • G07C5/008G07C5/085
    • Systems and methods for odometer monitoring are disclosed herein. One example method includes storing an odometer value and a vehicle position in response to an initial triggering event, and determining a second odometer value and a second vehicle position in response to a subsequent triggering event. The odometer value is compared with the second odometer value to detect any odometer value change from the initial triggering event to the subsequent triggering event. The vehicle position is compared with the second vehicle position to detect any vehicle position change from the initial triggering event to the subsequent triggering event. From the comparisons, it is determined whether odometer tampering has occurred.
    • 本文公开了里程表监视的系统和方法。 一个示例性方法包括响应于初始触发事件存储里程表值和车辆位置,以及响应于后续触发事件确定第二里程计值和第二车辆位置。 将里程表值与第二里程计值进行比较,以检测从初始触发事件到后续触发事件的任何里程表值变化。 将车辆位置与第二车辆位置进行比较,以检测从初始触发事件到随后的触发事件的任何车辆位置变化。 从比较中,确定是否发生了里程表篡改。
    • 4. 发明授权
    • Speech signal processing for determining psychological or physiological
characteristics using a knowledge base
    • 使用知识库确定心理或生理特征的语音信号处理
    • US06006188A
    • 1999-12-21
    • US820566
    • 1997-03-19
    • Rostislav BogdashevskyVladimir AlexeevVitaly YariginGeorge BakerHarrison Stanton
    • Rostislav BogdashevskyVladimir AlexeevVitaly YariginGeorge BakerHarrison Stanton
    • G10L17/00G01L5/06G01L9/00
    • G10L17/26
    • A speech-based system for assessing the psychological, physiological, or other characteristics of a test subject is described. The system includes a knowledge base that stores one or more speech models, where each speech model corresponds to a characteristic of a group of reference subjects. Signal processing circuitry, which may be implemented in hardware, software and/or firmware, compares the test speech parameters of a test subject with the speech models. In one embodiment, each speech model is represented by a statistical time-ordered series of frequency representations of the speech of the reference subjects. The speech model is independent of a priori knowledge of style parameters associated with the voice or speech. The system includes speech parameterization circuitry for generating the test parameters in response to the test subject's speech. This circuitry includes speech acquisition circuitry, which may be located remotely from the knowledge base. The system further includes output circuitry for outputting at least one indicator of a characteristic in response to the comparison performed by the signal processing circuitry. The characteristic may be time-varying, in which case the output circuitry outputs the characteristic in a time-varying manner. The output circuitry also may output a ranking of each output characteristic. In one embodiment, one or more characteristics may indicate the degree of sincerity of the test subject, where the degree of sincerity may vary with time. The system may also be employed to determine the effectiveness of treatment for a psychological or physiological disorder by comparing psychological or physiological characteristics, respectively, before and after treatment.
    • 描述了一种用于评估测试对象的心理,生理或其他特征的基于语音的系统。 该系统包括存储一个或多个语音模型的知识库,其中每个语音模型对应于一组参考对象的特征。 可以在硬件,软件和/或固件中实现的信号处理电路将测试对象的测试语音参数与语音模型进行比较。 在一个实施例中,每个语音模型由参考对象的语音的统计时间有序序列的频率表示来表示。 语音模型独立于与语音或语音相关联的风格参数的先验知识。 该系统包括语音参数化电路,用于响应测试对象的语音产生测试参数。 该电路包括可以远离知识库的语音获取电路。 该系统还包括输出电路,用于响应于由信号处理电路执行的比较而输出特性的至少一个指示符。 该特性可以是时变的,在这种情况下,输出电路以时变方式输出特性。 输出电路还可以输出每个输出特性的等级。 在一个实施例中,一个或多个特征可以指示测试对象的诚意程度,其中诚意度可随时间变化。 也可以通过在治疗前后分别比较心理或生理特征来确定心理或生理障碍治疗的有效性。
    • 6. 发明授权
    • Debugger recovery on exit from low power mode
    • 从低功耗模式退出时调试器恢复
    • US08601315B2
    • 2013-12-03
    • US12917470
    • 2010-11-01
    • Robert EhrlichGeorge BakerAlan Carlin
    • Robert EhrlichGeorge BakerAlan Carlin
    • G06F11/00
    • G06F11/3648G06F1/3203G06F11/3656
    • A device is configured with components to enable debugging of the device's entry into and exit from a low power mode. The device includes: core logic, debug components, and a power management module (PMM). When the device exits a low power mode in which the states of the debug components are lost, the PMM prevents the core logic from resuming processing operations until the debug components have been re-configured to their prior states. The PMM either holds the core logic in reset or alternatively withholds power to the core logic. Reconfiguration of the debug components is initiated by a connected debugger, which can set one or more control and status (CS) register values within the device. The CS register values determine when the PMM prevents the core logic processing from resuming and when the PMM enables core logic processing to resume following the device's return from low power mode.
    • 设备配置有组件,以使设备进入和退出低功耗模式的调试。 该设备包括:核心逻辑,调试组件和电源管理模块(PMM)。 当设备退出调试组件的状态丢失的低功耗模式时,PMM将防止核心逻辑恢复处理操作,直到调试组件重新配置为其先前状态。 PMM或者将核心逻辑保持在复位状态,或者替代地保留核心逻辑的电源。 调试组件的重新配置由连接的调试器启动,可以在设备内设置一个或多个控制和状态(CS)寄存器值。 CS寄存器值确定PMM何时防止核心逻辑处理恢复,当PMM使得核心逻辑处理能够在设备从低功耗模式返回后恢复。
    • 9. 发明申请
    • Debugger Recovery on Exit from Low Power Mode
    • 从低功耗模式退出调试器恢复
    • US20120110353A1
    • 2012-05-03
    • US12917470
    • 2010-11-01
    • Robert EhrlichGeorge BakerAlan Carlin
    • Robert EhrlichGeorge BakerAlan Carlin
    • G06F1/00
    • G06F11/3648G06F1/3203G06F11/3656
    • A device is configured with components to enable debugging of the device's entry into and exit from a low power mode. The device includes: core logic, debug components, and a power management module (PMM). When the device exits a low power mode in which the states of the debug components are lost, the PMM prevents the core logic from resuming processing operations until the debug components have been re-configured to their prior states. The PMM either holds the core logic in reset or alternatively withholds power to the core logic. Reconfiguration of the debug components is initiated by a connected debugger, which can set one or more control and status (CS) register values within the device. The CS register values determine when the PMM prevents the core logic processing from resuming and when the PMM enables core logic processing to resume following the device's return from low power mode.
    • 设备配置有组件,以使设备进入和退出低功耗模式的调试。 该设备包括:核心逻辑,调试组件和电源管理模块(PMM)。 当设备退出调试组件的状态丢失的低功耗模式时,PMM将防止核心逻辑恢复处理操作,直到调试组件重新配置为其先前状态。 PMM或者将核心逻辑保持在复位状态,或者替代地保留核心逻辑的电源。 调试组件的重新配置由连接的调试器启动,可以在设备内设置一个或多个控制和状态(CS)寄存器值。 CS寄存器值确定PMM何时防止核心逻辑处理恢复,当PMM使得核心逻辑处理能够在设备从低功耗模式返回后恢复。
    • 10. 发明申请
    • SYSTEMS AND METHODS FOR ODOMETER MONITORING
    • 用于光度计监测的系统和方法
    • US20110077816A1
    • 2011-03-31
    • US12569846
    • 2009-09-29
    • William A. BiondoGeorge Baker
    • William A. BiondoGeorge Baker
    • G06F7/00
    • G07C5/008G07C5/085
    • Systems and methods for odometer monitoring are disclosed herein. One example method includes storing an odometer value and a vehicle position in response to an initial triggering event, and determining a second odometer value and a second vehicle position in response to a subsequent triggering event. The odometer value is compared with the second odometer value to detect any odometer value change from the initial triggering event to the subsequent triggering event. The vehicle position is compared with the second vehicle position to detect any vehicle position change from the initial triggering event to the subsequent triggering event. From the comparisons, it is determined whether odometer tampering has occurred.
    • 本文公开了里程表监视的系统和方法。 一个示例性方法包括响应于初始触发事件存储里程表值和车辆位置,以及响应于后续触发事件确定第二里程计值和第二车辆位置。 将里程表值与第二里程计值进行比较,以检测从初始触发事件到后续触发事件的任何里程表值变化。 将车辆位置与第二车辆位置进行比较,以检测从初始触发事件到随后的触发事件的任何车辆位置变化。 从比较中,确定是否发生了里程表篡改。