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    • 11. 发明申请
    • Enhanced UI operations leveraging derivative visual representation
    • 增强的UI操作利用衍生视觉表示
    • US20080092110A1
    • 2008-04-17
    • US11582766
    • 2006-10-17
    • Hideya KawaharaPaul ByrneFrank E. Ludolph
    • Hideya KawaharaPaul ByrneFrank E. Ludolph
    • G06F9/44
    • G06F3/04815
    • One embodiment of the present invention provides a system that facilitates manipulation of three-dimensional (3D) objects displayed in a two-dimensional (2D) display. During operation, the system displays perspectively a 3D object in a 2D display based on a coordinate system with an X-axis along a horizontal direction on the 2D display, a Y-axis along a vertical direction on the 2D display, and a Z-axis along a direction perpendicular to the plane of the 2D display. The system further derives a 2D image from the 3D object and displays the derived image within a virtual 2D plane substantially parallel to the Z-axis, thereby allowing movement of the derived image within the virtual plane to reflect movement of the 3D object. The system also allows a user to manipulate the 3D object by manipulating the derived image within the virtual plane.
    • 本发明的一个实施例提供一种便于对二维(2D)显示中显示的三维(3D)物体的操纵的系统。 在操作期间,系统基于在2D显示器上沿着水平方向的X轴的坐标系,2D显示器上的沿着垂直方向的Y轴和Z轴的方向,在2D显示器中显示3D对象, 沿着垂直于2D显示器的平面的方向。 该系统进一步从3D对象导出2D图像,并将导出的图像显示在基本上平行于Z轴的虚拟2D平面内,从而允许在虚拟平面内移动导出的图像以反映3D对象的移动。 该系统还允许用户通过在虚拟平面内操纵导出的图像来操纵3D对象。
    • 13. 发明授权
    • Velocity analyzer for objects traveling in pipes
    • 用于管道内物体的速度分析仪
    • US08616288B1
    • 2013-12-31
    • US12965559
    • 2010-12-10
    • Paul ByrnePhillip P. Harris
    • Paul ByrnePhillip P. Harris
    • E21B43/00E21B47/09E21B43/12
    • E21B43/12E21B47/09
    • A plunger lift system of an oil or gas well and method of use is described. The plunger lift system includes a plunger, a sensor, a flow valve assembly, and a controller. The plunger is positioned within the tube string and travels up and down the string in response to the opening and/or closing of the flow valve assembly. The sensor is connected to the tube string and detects vibrations generated by impacts created by the plunger temporarily catching on gaps in the tube string. The sensor generates a sensor signal in response to the impacts of the plunger which are used by the controller to determine the velocity of the plunger within the tube string. If the velocity of the plunger exceeds a preselected maximum velocity, the controller selectively opens or closes the flow valve assembly to reduce the velocity of the plunger.
    • 描述了油井或气井的柱塞提升系统及其使用方法。 柱塞提升系统包括柱塞,传感器,流量阀组件和控制器。 柱塞位于管柱内并且响应于流量阀组件的打开和/或关闭而沿着弦线上下移动。 传感器连接到管柱,并且检测由柱塞产生的冲击产生的暂时捕获在管柱中的间隙上的振动。 传感器响应于由控制器使用的柱塞的冲击来产生传感器信号,以确定管柱内柱塞的速度。 如果柱塞的速度超过预选的最大速度,则控制器选择性地打开或关闭流量阀组件以降低柱塞的速度。
    • 14. 发明授权
    • Enhanced UI operations leveraging derivative visual representation
    • 增强的UI操作利用衍生视觉表示
    • US08471873B2
    • 2013-06-25
    • US11582766
    • 2006-10-17
    • Hideya KawaharaPaul ByrneFrank E. Ludolph
    • Hideya KawaharaPaul ByrneFrank E. Ludolph
    • G06F3/048
    • G06F3/04815
    • One embodiment of the present invention provides a system that facilitates manipulation of three-dimensional (3D) objects displayed in a two-dimensional (2D) display. During operation, the system displays perspectively a 3D object in a 2D display based on a coordinate system with an X-axis along a horizontal direction on the 2D display, a Y-axis along a vertical direction on the 2D display, and a Z-axis along a direction perpendicular to the plane of the 2D display. The system further derives a 2D image from the 3D object and displays the derived image within a virtual 2D plane substantially parallel to the Z-axis, thereby allowing movement of the derived image within the virtual plane to reflect movement of the 3D object. The system also allows a user to manipulate the 3D object by manipulating the derived image within the virtual plane.
    • 本发明的一个实施例提供一种便于对二维(2D)显示中显示的三维(3D)物体的操纵的系统。 在操作期间,系统基于在2D显示器上沿着水平方向的X轴的坐标系,2D显示器上的沿着垂直方向的Y轴和Z轴的方向,在2D显示器中显示3D对象, 沿着垂直于2D显示器的平面的方向。 该系统进一步从3D对象导出2D图像,并将导出的图像显示在基本上平行于Z轴的虚拟2D平面内,从而允许在虚拟平面内移动导出的图像以反映3D对象的移动。 该系统还允许用户通过在虚拟平面内操纵导出的图像来操纵3D对象。
    • 16. 发明申请
    • TELECOMMUNICATION FRAUD PREVENTION SYSTEM AND METHOD
    • 电信欺诈预防系统和方法
    • US20120099711A1
    • 2012-04-26
    • US13379243
    • 2010-06-25
    • Liam TullyPaul Byrne
    • Liam TullyPaul Byrne
    • H04M3/22
    • H04M3/2281H04M3/42314H04M7/0078H04M2201/18H04M2203/6027
    • A system for monitoring of telephone calls on a plurality of inbound and outbound voice channels made to and originating from a common private branch exchange (PBX) to detect fraudulent activity. Monitors and detects audio data on two or more of the voice channels. Includes analysis of binary data streams on at least one inbound voice channel and at least one outbound voice channel and comparing said streams by a sliding window to slide a sample frame of one channel binary data stream backwards and/or forwards relative to the other binary data stream to synchronize the inbound voice channel and outbound voice channel. The comparison determines if a data match is present between the compared inbound channel and the outbound channel and blocks the at least one outbound voice channel, if a data match is found with at least one inbound voice channel.
    • 一种用于监视多个入站和出站语音信道中的电话呼叫的系统,所述多个入站和出站语音信道由公共专用小交换机(PBX)产生并发起以检测欺诈活动。 监听和检测两个或多个语音通道上的音频数据。 包括对至少一个入站语音信道和至少一个出站语音信道上的二进制数据流的分析,并且通过滑动窗口比较所述流,以相对于其他二进制数据向前和/或向前滑动一个信道二进制数据流的采样帧 用于同步入站语音信道和出站语音信道的流。 比较确定在比较的入站信道和出站信道之间是否存在数据匹配,并且如果发现具有至少一个入站语音信道的数据匹配,则阻塞至少一个出站语音信道。
    • 18. 发明授权
    • Fluids lifting tool
    • 液体起重工具
    • US08229670B2
    • 2012-07-24
    • US12605233
    • 2009-10-23
    • Paul ByrnePhillip P. Harris
    • Paul ByrnePhillip P. Harris
    • E21B47/00
    • E21B43/121E21B47/0007
    • A fluids lifting tool and analysis system. The present invention comprises a fluid lifting system for a gas well. The system comprises a lifting tool positioned in the well and a docking station at the well surface. The tool includes a processor, pressure sensors, temperature sensors, an accelerometer, and a proximity sensor. A battery in the tool is adapted to be charged by inductive coupling using coils in the docking station and the tool. The tool is released from the docking station and descends the well. During descent the tool measures elapsed time, velocity of the tool, calculates distance traveled, measures pressure and temperature, determines volumes or oil and water in the well, and senses when the tool reaches the bottom of the well. The FLT chooses to ascend the well when appropriate and transfers measured and calculated data to the docking station.
    • 液体提升工具和分析系统。 本发明包括用于气井的流体提升系统。 该系统包括位于井中的提升工具和井表面处的坞站。 该工具包括处理器,压力传感器,温度传感器,加速度计和接近传感器。 工具中的电池适用于通过对接站和工具中的线圈进行感应耦合来充电。 该工具从对接站释放并下降井。 在下降期间,刀具测量经过时间,刀具速度,计算行驶距离,测量压力和温度,确定井中的体积或油和水,并感测工具何时到达井底。 FLT选择适当时上升井,并将测量和计算的数据传输到坞站。
    • 19. 发明申请
    • Fluids Lifting Tool
    • 液体起重工具
    • US20100106422A1
    • 2010-04-29
    • US12605233
    • 2009-10-23
    • Paul ByrnePhillip P. Harris
    • Paul ByrnePhillip P. Harris
    • E21B47/00G01V9/00G06F19/00
    • E21B43/121E21B47/0007
    • A fluids lifting tool and analysis system. The present invention comprises a fluid lifting system for a gas well. The system comprises a lifting tool positioned in the well and a docking station at the well surface. The tool includes a processor, pressure sensors, temperature sensors, an accelerometer, and a proximity sensor. A battery in the tool is adapted to be charged by inductive coupling using coils in the docking station and the tool. The tool is released from the docking station and descends the well. During descent the tool measures elapsed time, velocity of the tool, calculates distance traveled, measures pressure and temperature, determines volumes or oil and water in the well, and senses when the tool reaches the bottom of the well. The FLT chooses to ascend the well when appropriate and transfers measured and calculated data to the docking station.
    • 液体提升工具和分析系统。 本发明包括用于气井的流体提升系统。 该系统包括位于井中的提升工具和井表面处的坞站。 该工具包括处理器,压力传感器,温度传感器,加速度计和接近传感器。 工具中的电池适用于通过对接站和工具中的线圈进行感应耦合来充电。 该工具从对接站释放并下降井。 在下降期间,刀具测量经过时间,刀具速度,计算行驶距离,测量压力和温度,确定井中的体积或油和水,并感测工具何时到达井底。 FLT选择适当时上升井,并将测量和计算的数据传输到坞站。