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    • 1. 发明申请
    • IMAGING METHODS AND SYSTEMS FOR DOWNHOLE FLUID ANALYSIS
    • 用于井下流体分析的成像方法和系统
    • US20120076364A1
    • 2012-03-29
    • US13245827
    • 2011-09-26
    • Theodorus TjhangOsamu OsawaYutaka Imasato
    • Theodorus TjhangOsamu OsawaYutaka Imasato
    • G06K9/00
    • E21B47/102
    • An example system described herein to perform downhole fluid analysis includes an imaging processor to be positioned downhole in a geological formation, the imaging processor including a plurality of photo detectors to sense light that has contacted a formation fluid in the geological formation, each photo detector to determine respective image data for a respective portion of an image region supported by the imaging processor, and a plurality of processing elements, each processing element being associated with a respective photo detector and to process first image data obtained from the respective photo detector and second image data obtained from at least one neighbor photo detector, and a controller to report measurement data via a telemetry communication link to a receiver to be located outside the geological formation, the measurement data being based on processed data obtained from the plurality of processing elements.
    • 本文所述的用于执行井下流体分析的示例系统包括要定位在地质地层中的井下的成像处理器,所述成像处理器包括多个光电检测器以感测已经接触地质层中的地层流体的光,每个光检测器 确定由成像处理器支持的图像区域的相应部分的各个图像数据,以及多个处理元件,每个处理元件与相应的光电检测器相关联,并且处理从各个光电检测器和第二图像获得的第一图像数据 从至少一个相邻光检测器获得的数据,以及控制器,用于经由遥测通信链路将测量数据报告给位于地质构造之外的接收器,所述测量数据基于从所述多个处理元件获得的处理数据。
    • 4. 发明授权
    • Imaging methods and systems for downhole fluid analysis
    • 用于井下流体分析的成像方法和系统
    • US08483445B2
    • 2013-07-09
    • US13245827
    • 2011-09-26
    • Theodorus TjhangOsamu OsawaYutaka Imasato
    • Theodorus TjhangOsamu OsawaYutaka Imasato
    • G06K9/00
    • E21B47/102
    • An example system described herein to perform downhole fluid analysis includes an imaging processor to be positioned downhole in a geological formation, the imaging processor including a plurality of photo detectors to sense light that has contacted a formation fluid in the geological formation, each photo detector to determine respective image data for a respective portion of an image region supported by the imaging processor, and a plurality of processing elements, each processing element being associated with a respective photo detector and to process first image data obtained from the respective photo detector and second image data obtained from at least one neighbor photo detector, and a controller to report measurement data via a telemetry communication link to a receiver to be located outside the geological formation, the measurement data being based on processed data obtained from the plurality of processing elements.
    • 本文所述的用于执行井下流体分析的示例系统包括要定位在地质地层中的井下的成像处理器,所述成像处理器包括多个光电检测器以感测已经接触地质层中的地层流体的光,每个光检测器 确定由成像处理器支持的图像区域的相应部分的各个图像数据,以及多个处理元件,每个处理元件与相应的光电检测器相关联,并且处理从各个光电检测器和第二图像获得的第一图像数据 从至少一个相邻光检测器获得的数据,以及控制器,用于经由遥测通信链路将测量数据报告给位于地质构造之外的接收器,所述测量数据基于从所述多个处理元件获得的处理数据。
    • 6. 发明授权
    • Imaging methods and systems for controlling equipment in remote environments
    • 用于在远程环境中控制设备的成像方法和系统
    • US09584711B2
    • 2017-02-28
    • US13439824
    • 2012-04-04
    • Theodorus TjhangMasatoshi Ishikawa
    • Theodorus TjhangMasatoshi Ishikawa
    • H04N7/18H04N5/232
    • H04N5/23206H04N5/23229
    • Imaging methods and systems for controlling equipment in remote environments are disclosed herein. An example system disclosed herein to control equipment in a remote environment includes an imaging assembly to determine feedback data based on measurement data obtained from a plurality of remote imaging systems controllable to process different respective optical fields-of-view in the remote environment, a flushing assembly controllable to project fluid to clear the optical fields-of-view in the remote environment, and a controller to process the feedback data to determine a control signal to control operation of at least one of (1) the plurality of remote imaging systems or (2) the flushing assembly.
    • 本文公开了用于控制远程环境中的设备的成像方法和系统。 本文公开的用于控制远程环境中的设备的示例系统包括成像组件,其基于从可控制以在远程环境中处理不同的相应光学视场的多个远程成像系统获得的测量数据来确定反馈数据,冲洗 组件可控制以投影流体以清除远程环境中的光学视场;以及控制器,用于处理反馈数据以确定控制信号,以控制(1)多个远程成像系统或 (2)冲洗组件。