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    • 1. 发明申请
    • OPTICAL TELEMETRY NETWORK
    • 光电远程网络
    • US20110044697A1
    • 2011-02-24
    • US12858604
    • 2010-08-18
    • Andreas PeterJohn D. Macpherson
    • Andreas PeterJohn D. Macpherson
    • H04B10/00G02B6/36H01S3/067
    • E21B47/123H04B10/801
    • An apparatus for providing communications between a first device disposed at a tubular and a second device, the tubular having tubular sections and being configured to be disposed in a borehole penetrating the earth, the apparatus including: a first optical coupler configured to be concentrically coupled to a first tubular section and configured to be in optical communication with the first device using a first optical transmission medium disposed at the first tubular section; and a second optical coupler configured to be concentrically coupled to a second tubular section and configured to be in optical communication with the second device using a second optical transmission medium disposed at the second tubular section; wherein the first optical coupler is configured to be perimetrically disposed about the second optical coupler to be in communication with the second optical coupler to provide the communications between the first device and the second device.
    • 一种用于在设置在管状部件和第二装置之间的第一装置之间提供通信的装置,所述管状部分具有管状部分并且被配置为设置在穿过地面的钻孔中,所述装置包括:第一光耦合器,被配置为同心地耦合到 第一管状部分,并且被配置为使用布置在第一管状部分处的第一光学传输介质与第一装置光学通信; 以及第二光耦合器,被配置为同心地耦合到第二管状部分并且被配置为使用布置在所述第二管状部分处的第二光传输介质与所述第二装置光学通信; 其中所述第一光耦合器被配置为围绕所述第二光耦合器周边地设置为与所述第二光耦合器通信,以提供所述第一设备和所述第二设备之间的通信。
    • 2. 发明授权
    • Optical telemetry network
    • 光学遥测网络
    • US08588619B2
    • 2013-11-19
    • US12858604
    • 2010-08-18
    • Andreas PeterJohn D. Macpherson
    • Andreas PeterJohn D. Macpherson
    • H04B10/12
    • E21B47/123H04B10/801
    • An apparatus for providing communications between a first device disposed at a tubular and a second device, the tubular having tubular sections and being configured to be disposed in a borehole penetrating the earth, the apparatus including: a first optical coupler configured to be coupled to a first tubular section and configured to be in optical communication with the first device using a first optical transmission medium disposed at the first tubular section; and a second optical coupler configured to be coupled to a second tubular section and configured to be in optical communication with the second device using a second optical transmission medium disposed at the second tubular section; wherein the first optical coupler is configured to be perimetrically disposed about the second optical coupler to be in communication with the second optical coupler to provide the communications between the first device and the second device.
    • 一种用于在设置在管状物和第二装置之间的第一装置之间提供通信的装置,所述管状物具有管状部分并且被配置为设置在穿过地面的钻孔中,所述装置包括:第一光学耦合器, 第一管状部分,并且被配置为使用布置在第一管状部分处的第一光学传输介质与第一装置光学通信; 以及第二光耦合器,被配置为联接到第二管状部分并且被配置为使用布置在所述第二管状部分处的第二光学传输介质与所述第二设备进行光学通信; 其中所述第一光耦合器被配置为围绕所述第二光耦合器周边地设置为与所述第二光耦合器通信,以提供所述第一设备和所述第二设备之间的通信。
    • 5. 发明申请
    • SYNCHRONIZATION OF DISTRIBUTED MEASUREMENTS IN A BOREHOLE
    • 分布式测量在井眼中的同步
    • US20140197962A1
    • 2014-07-17
    • US13743720
    • 2013-01-17
    • John D. Macpherson
    • John D. Macpherson
    • G01V3/18
    • G01V3/18G01V1/26G01V1/40
    • A system and method to synchronize distributed measurements in a borehole are described. The system includes a plurality of wired segments coupled together by couplers and a plurality of nodes configured to measure, process, or relay information obtained in the borehole to a surface processing system, each of the plurality of nodes comprising a local clock and being disposed at one of the couplers or between couplers. The system also includes a surface processing system coupled to a master clock and configured to determine a time offset between the master clock and the local clock of an nth node among the plurality of nodes based on a downhole generated synchronization signal.
    • 描述了一种在钻孔中同步分布式测量的系统和方法。 该系统包括通过耦合器耦合在一起的多个有线段和被配置为测量,处理或中继在井眼中获得的信息的表面处理系统的多个节点,所述多个节点中的每一个包括本地时钟并被布置在 一个耦合器或耦合器之间。 该系统还包括耦合到主时钟并且被配置为基于井下产生的同步信号来确定多个节点中的第n个节点的主时钟与本地时钟之间的时间偏移的表面处理系统。