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    • 3. 发明授权
    • Adaptive telemetry system for hostile environment well logging
    • 用于敌对环境测井的自适应遥测系统
    • US5365229A
    • 1994-11-15
    • US216504
    • 1994-03-22
    • Wallace R. GardnerKenneth R. Goodman
    • Wallace R. GardnerKenneth R. Goodman
    • E21B47/12G01V1/22G01V1/00
    • G01V1/22E21B47/12
    • The operation of hostile environment logging tools at temperatures up to 250.degree. C. stresses not only the tools, it also places severe demands upon the wireline telemetry due to the wide variations in the logging cable transmission characteristics. A robust adaptive wireline telemetry system for use in hostile environments has been developed that combines sophisticated digital communication methods with modern Digital-Signal-Processing (DSP) techniques. The downhole telemetry transmitter outputs a multilevel signal. The uphole receiver includes an adaptive transversal-filter equalizer (TFE) that is continually optimized to correct for changing signal distortion. The system operates robustly at high data rates over the temperature range of 0.degree. to 250.degree. C.
    • 敌对环境测井工具在高达250°C的温度下的操作不仅强调了工具,而且由于测井电缆传输特性的广泛变化,它也对有线遥测提出了严格的要求。 已经开发出一种用于敌对环境的强大的自适应有线遥测系统,其将复杂的数字通信方法与现代数字信号处理(DSP)技术相结合。 井下遥测发射机输出多电平信号。 井上接收机包括一个自适应横向滤波均衡器(TFE),其被不断地优化以校正变化的信号失真。 该系统在0°至250°C的温度范围内,以高数据速率运行稳定。
    • 7. 发明授权
    • Acoustic telemetry system with drilling noise cancellation
    • 具有钻井噪声消除的声学遥测系统
    • US06370082B1
    • 2002-04-09
    • US09332641
    • 1999-06-14
    • Wallace R. GardnerVimal V. ShahJohn W. Minear
    • Wallace R. GardnerVimal V. ShahJohn W. Minear
    • G01V140
    • E21B47/16
    • An acoustic telemetry system is disclosed that reduces any through-drillstring drilling noise which contaminates a through-drillstring telemetry signal. Normal filtering operations are provided to remove noise outside the frequency band of interest, and reference signal filtering operations are provided to reduce the in-band noise, thereby enhancing the telemetry system's data rate and reliability. In one embodiment, the acoustic telemetry system includes a transmitter and a receiver. The transmitter induces an acoustic information signal that propagates along the tubing string. Existing noise in the tubing string contaminates the information signal. The receiver is provided with sensors for measuring the corrupted information signal and a reference signal that is indicative of the noise present in the measured information signal. The receiver uses a filter to convert the reference signal into an estimate of the information signal corruption, and a summing element to subtract the estimate from the reference signal to produce an information signal with reduced corruption. In a preferred embodiment, the information signal is propagated in an axial transmission mode, and the noise in the torsional mode is used as the reference signal for reducing noise the information signal picks up in the axial mode.
    • 公开了一种声学遥测系统,其减少了污染通过钻柱遥测信号的任何穿钻钻井噪声。 提供正常滤波操作以去除感兴趣频带外的噪声,并提供参考信号滤波操作以减少带内噪声,从而提高遥测系统的数据速率和可靠性。 在一个实施例中,声学遥测系统包括发射器和接收器。 发射器引起沿着管柱传播的声信息信号。 油管柱中的现有噪声会污染信息信号。 接收器设置有用于测量损坏的信息信号的传感器和指示所测量的信息信号中存在的噪声的参考信号。 接收机使用滤波器将参考信号转换为信息信号损坏的估计,以及相加元件,以从参考信号中减去估计,以产生具有减少的损坏的信息信号。 在优选实施例中,信息信号以轴向传播模式传播,并且扭转模式中的噪声被用作用于降低信息信号以轴向模式拾取的噪声的参考信号。
    • 8. 发明授权
    • High data rate acoustic telemetry system
    • 高数据率声学遥测系统
    • US06320820B1
    • 2001-11-20
    • US09400357
    • 1999-09-20
    • Wallace R. GardnerVimal V. Shah
    • Wallace R. GardnerVimal V. Shah
    • H04H900
    • E21B47/16
    • A reliable, high data rate, downhole acoustic telemetry system is disclosed. In one embodiment, the acoustic telemetry system includes a tubing string with an acoustic transmitter and an acoustic receiver mounted on it. The acoustic transmitter transmits telemetry information by modulating an acoustic carrier frequency that propagates along the walls of the tubing string. The transmitter is preferably mounted at a selected position relative to the end of the tubing string. The selected position is preferably less than &lgr;/4 from the end or approximately n&lgr;/2 from the end, where &lgr; is the wavelength of the carrier frequency in the tubing string, and n is a positive integer. In a more preferred embodiment, n may be the lesser of 4 times the number of cycles in the modulating toneburst and 40. The receiver is preferably mounted at approximately (2n−1)&lgr;/4 relative to the end of the tubing string, where n is a positive integer. Such positioning prevents reflections of the acoustic signal from significantly degrading the received signal. The acoustic signaling advantageously employs pulse shaping to further improve system performance. To enhance data transmission rates, the acoustic receiver advantageously includes an equalizer that compensates for signal dispersion and intersymbol interference while simultaneously minimizing other forms of signal corruption such as additive noise and channel nonlinearities. The equalizer is preferably an adaptive, nonlinear equalizer that may also be fractionally spaced. Such equalizers eliminate any requirements for spacing intervals which allow signal reflections to die out. The resulting system is capable of higher data rates. When error correction codes are employed, no reliability losses are incurred.
    • 公开了一种可靠,高数据速率的井下声学遥测系统。 在一个实施例中,声学遥测系统包括具有声发射器的管柱和安装在其上的声学接收器。 声发射器通过调制沿着管柱的壁传播的声载波频率来发射遥测信息。 变送器优选地安装在相对于油管柱的端部的选定位置处。 所选择的位置优选地从末端小于lambd / 4或从末端起大约nlambd / 2,其中lambd是油管柱中载波频率的波长,n是正整数。 在更优选的实施例中,n可以是调制色调峰值和40中循环次数的4倍中的较小值。接收器优选地相对于管柱的端部以大约(2n-1)lambd / 4安装,其中 n是正整数。 这种定位防止声信号的反射显着地降低接收的信号。 声信号有利地采用脉冲整形来进一步提高系统性能。 为了增强数据传输速率,声接收机有利地包括补偿信号色散和符号间干扰的均衡器,同时最小化诸如加性噪声和信道非线性的其它形式的信号损坏。 均衡器优选地是也可以是分数间隔的自适应非线性均衡器。 这种均衡器消除了允许信号反射消失的间隔间隔的任何要求。 所得到的系统能够获得更高的数据速率。 当采用纠错码时,不会产生可靠性损失。
    • 10. 发明授权
    • Low frequency acoustic attenuator for use in downhole applications
    • 低频声衰减器用于井下应用
    • US07210555B2
    • 2007-05-01
    • US10882915
    • 2004-06-30
    • Vimal V. ShahEugene J. LinyaevDonald G. KyleWallace R. Gardner
    • Vimal V. ShahEugene J. LinyaevDonald G. KyleWallace R. Gardner
    • F16F15/02F16F7/00G01V1/04G01V1/16
    • E21B47/16G01V1/523
    • An acoustic attenuator includes a housing having an inner side surface which defines an interior chamber and at least one dampening member both physically and acoustically coupled to the housing and projecting into the interior chamber. Acoustic energy propagating within the housing is deflected into the dampening members for acoustically dispersal within the interior chamber. In various aspects thereof, the dampening members may include one or a group of two or more generally cylindrical sleeves having one end both physically and acoustically coupled to the housing and a second end projecting into the interior chamber. Preferably, when a group of two or more cylindrical sleeves are employed, the sleeves are nested within one another. The dampening members may further include a second, oppositely disposed, group of two or more acoustic attenuators nested within one another and interdigitated with the first group of cylindrical sleeves.
    • 声衰减器包括壳体,该壳体具有限定内腔的内侧表面和至少一个阻尼构件,物理和声学耦合到壳体并突出到内腔中。 在壳体内传播的声能被偏转到阻尼构件中,用于在内腔内声扩散。 在其各个方面,阻尼构件可以包括一个或一组两个或更多个大致圆柱形的套筒,其中一个端部物理上和声学上耦合到壳体,第二端突出到内部腔室中。 优选地,当使用一组两个或更多个圆柱形套筒时,套筒彼此嵌套。 阻尼构件还可以包括彼此嵌套的两个或更多个声衰减器的第二相对设置的组,并与第一组圆柱形套筒相互指向。