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    • 174. 发明申请
    • SYSTEM AND METHODS FOR X-RAY BACKSCATTER REVERSE ENGINEERING OF STRUCTURES
    • 用于X射线反射镜反向工程的系统和方法
    • US20090168964A1
    • 2009-07-02
    • US12366903
    • 2009-02-06
    • Morteza SafaiGary E. GeorgesonWilliam T. Edwards
    • Morteza SafaiGary E. GeorgesonWilliam T. Edwards
    • G01N23/201
    • G01N23/203B64F5/60
    • A system and methods for x-ray backscatter reverse engineering of structures. One embodiment includes a plurality of articulated arms attached to a movable base. Another embodiment includes a single counterweighted arm attached to a movable base. The arms include x-ray detectors. At least one x-ray source, which may be mounted on the arm(s), emits x-rays, which are backscattered off the surfaces and objects of interest and captured by the detectors to generate images of hidden objects. The present system provides improved speed and resolution over prior art systems. The system has a field-of-view and effective scanning range versatile enough to work in various orientations and in environments of various sizes. In certain embodiments the system is compact and lightweight so that it can be easily transported and used within confined spaces or in environments where weight is a consideration, such as inside or underneath aircraft. The system is also pointable and adaptable.
    • 结构的x射线反向散射逆向工程的系统和方法。 一个实施例包括附接到可移动基座的多个铰接臂。 另一个实施例包括附接到可移动基座的单个配重臂。 手臂包括X射线探测器。 可以安装在臂上的至少一个x射线源发射x射线,这些X射线从感兴趣的表面和物体背面散射并被检测器捕获以产生隐藏物体的图像。 本系统提供比现有技术系统更好的速度和分辨率。 该系统具有足够的视野和有效的扫描范围,可以在各种尺寸和各种尺寸的环境中工作。 在某些实施例中,该系统是紧凑且重量轻的,使得其可以容易地在密闭空间内或在重量考虑的环境中运输和使用,例如飞机内部或底部。 该系统也是有针对性和适应性的。
    • 175. 发明申请
    • Array-Based System And Method For Inspecting A Workpiece With Backscattered Ultrasonic Signals
    • 基于阵列的系统和检测具有反向散射超声信号的工件的方法
    • US20090133501A1
    • 2009-05-28
    • US11945735
    • 2007-11-27
    • Gary E. Georgeson
    • Gary E. Georgeson
    • G01N29/00
    • G01N29/04G01N29/221G01N2291/044G01N2291/106
    • A method and an array-based system for inspecting a structure are provided that can identify unacceptable levels of porosity, microcracking or defects attributable to thermal damage. The inspection system includes a two-dimensional array of ultrasonic transducers, and an array controller configured to trigger at least one ultrasonic transducer to emit an ultrasonic signal into the structure. The array controller is also configured to receive data representative of backscattered signals preferentially received by at least one ultrasonic transducer from a portion of the structure offset from the at least one ultrasonic transducer that was triggered to emit the ultrasonic signal.
    • 提供了一种用于检查结构的方法和基于阵列的系统,其可以识别不可接受的孔隙率水平,微裂纹或由热损伤引起的缺陷。 检查系统包括超声波换能器的二维阵列和被配置为触发至少一个超声波换能器以将超声信号发射到该结构中的阵列控制器。 阵列控制器还被配置为接收代表由至少一个超声波换能器优先接收的反向散射信号的数据,所述反向散射信号被从结构偏移的部分偏移到被触发以发射超声信号的至少一个超声换能器。
    • 177. 发明申请
    • System and method for assembling substantially distortion-free images
    • 用于组装基本上无失真图像的系统和方法
    • US20080310754A1
    • 2008-12-18
    • US11818876
    • 2007-06-15
    • Morteza SafaiGary E. GeorgesonTalion EdwardsJohn W. Finlayson
    • Morteza SafaiGary E. GeorgesonTalion EdwardsJohn W. Finlayson
    • G06K9/40
    • G01C11/00G01B15/04G01V5/0025
    • Exemplary systems and methods are provided for imaging a unit under test. Orientation of an imaging system is determined with a machine vision system, a unit under test is scanned with the imaging system, and the scanned image is processed into a substantially distortion-free image. The scanned image may be processed into a substantially distortion-free image by mapping a scanned image to coordinates determined by the machine vision system. By combining the position and orientation information collected at the time each image pixel is collected, the image can be assembled without distortion by mapping a detector signal to the appropriate image coordinate. Alternately, the scanned image may be processed into a substantially distortion-free image by mapping a scanned image to a predetermined matrix grid of coordinates, identifying distortion in the scanned image, and correcting identified distortion in the scanned image.
    • 提供了示例性系统和方法用于对被测单元进行成像。 使用机器视觉系统确定成像系统的取向,用成像系统扫描被测单元,并将扫描图像处理成基本上无失真的图像。 扫描图像可以通过将扫描图像映射到由机器视觉系统确定的坐标而被处理成基本无畸变的图像。 通过组合在收集每个图像像素时收集的位置和方向信息,可以通过将检测器信号映射到适当的图像坐标来组合图像而不失真。 或者,扫描图像可以通过将扫描图像映射到预定的坐标矩阵网格来识别基本上无失真的图像,识别扫描图像中的失真,以及校正已扫描图像中的识别失真。
    • 180. 发明申请
    • METHODS AND SYSTEMS FOR MONITORING STRUCTURES AND SYSTEMS
    • 用于监测结构和系统的方法和系统
    • US20080163670A1
    • 2008-07-10
    • US11693878
    • 2007-03-30
    • Gary E. Georgeson
    • Gary E. Georgeson
    • G01N37/00
    • G08B31/00G07C5/008
    • Methods and systems for passenger monitoring and system control is provided. The system includes at least one sensor system configured to monitor an environment immediately surrounding the respective passenger and biometrics of the respective passenger and generate sensor data indicative of a state of the passenger. The system also includes a processing system configured to receive the sensor data. The processing system includes an ontology and reasoning module configured to model at least one of the plurality of passengers, reason about the received sensor data associated with the at least one of the plurality of passengers. The processing system also includes a contextual analyzer configured to transmit the received sensor data to said ontology and reasoning module and to store the information into a contextual information database.
    • 提供了乘客监控和系统控制的方法和系统。 该系统包括至少一个传感器系统,其被配置为监测紧邻相应乘客的环境和相应乘客的生物特征,并生成指示乘客状态的传感器数据。 该系统还包括被配置为接收传感器数据的处理系统。 处理系统包括被配置为对多个乘客中的至少一个乘客建模的本体和推理模块,关于与多个乘客中的至少一个乘客相关联的所接收的传感器数据的原因。 所述处理系统还包括配置成将所接收的传感器数据发送到所述本体和推理模块并将所述信息存储到上下文信息数据库中的上下文分析器。