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    • 3. 发明授权
    • Method and apparatus for measuring a parameter of a fluid flowing within a pipe using an array of sensors
    • 使用传感器阵列来测量在管道内流动的流体的参数的方法和装置
    • US07110893B2
    • 2006-09-19
    • US10964044
    • 2004-10-12
    • Douglas H. LooseAllen R. Davis
    • Douglas H. LooseAllen R. Davis
    • G06F19/00
    • G01F1/3254
    • Various methods are described which increase the efficiency and accuracy of a signal processor in determining parameters of a fluid using signals output by a spatial array of sensors disposed along a pipe. In one aspect, parameters used for calculating the temporal Fourier transform of the pressure signals, specifically the amount or duration of the data that the windowing function is applied to and the temporal frequency range, are adjusted in response to the determined parameter. In another aspect, an initialization routine estimates flow velocity so the window length and temporal frequency range can be initially set prior to the full array processing. In another aspect, the quality of one or more of the parameters is determined and used to gate the output of the apparatus in the event of low confidence in the measurement and/or no flow conditions. In another aspect, a method for determining a convective ridge of the pressure signals in the k-ω plane is provided.
    • 描述了各种方法,其增加信号处理器在使用由沿着管道设置的传感器的空间阵列输出的信号确定流体参数时的效率和精度。 在一个方面,响应于所确定的参数来调整用于计算压力信号的时间傅立叶变换的参数,具体地说,加窗功能被应用的数据量或持续时间和时间频率范围。 在另一方面,初始化程序估计流速,因此窗口长度和时间频率范围可以在完整阵列处理之前被初始化。 在另一方面,一个或多个参数的质量被确定并且用于在测量和/或没有流动条件下置信度低的情况下对设备的输出进行门控。 在另一方面,提供了一种用于确定k-ω平面中的压力信号的对流脊的方法。
    • 8. 发明授权
    • Method and apparatus for interrogating fiber optic sensors
    • 用于询问光纤传感器的方法和装置
    • US06785004B2
    • 2004-08-31
    • US09726059
    • 2000-11-29
    • Alan D. KerseyAllen R. DavisMark R. FernaldCharles R. WinstonTimothy J. Bailey
    • Alan D. KerseyAllen R. DavisMark R. FernaldCharles R. WinstonTimothy J. Bailey
    • G01B902
    • G01D5/35383E21B47/102
    • An apparatus and method for interrogating fiber optic sensors non-intrusively sensing fluid flow within a pipe is provided. The apparatus includes a two-beam interferometer which comprises an optical circuit for generating a series of discrete light pulses that are directed at sensors positioned between pairs of low reflectivity fiber Bragg gratings. The successive light pulses are split into first light pulses and second light pulses, and the second light pulses are delayed a known time period relative to the first pulses. The first and second light pulses are combined onto a single optical fiber and directed through the low reflectivity gratings and the sensors positioned between the gratings. Reflected pulses from the series of pulses impinge on a photo receiver and interrogator, wherein the phase shift between the reflected first light pulses from a particular grating and the reflected second light pulses from the preceding grating, for each sensor are determined. Phase shifts from successive pulses for each sensor are compared, and a change in a measured parameter of the fluid is determined.
    • 提供了一种用于询问光纤传感器非侵入式地感测管道内的流体流动的装置和方法。 该装置包括双光束干涉仪,其包括用于产生一系列离散光脉冲的光学电路,其被定向在位于低反射率光纤布拉格光栅对之间的传感器处。 连续的光脉冲被分成第一光脉冲和第二光脉冲,并且第二光脉冲相对于第一脉冲被延迟已知的时间周期。 第一和第二光脉冲被组合到单个光纤上并被引导通过位于光栅之间的低反射率光栅和传感器。 来自一系列脉冲的反射脉冲撞击光接收器和询问器,其中确定来自特定光栅的反射的第一光脉冲与来自前一光栅的反射的第二光脉冲之间对于每个传感器的相移。 比较每个传感器的连续脉冲的相移,并确定流体的测量参数的变化。