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    • 5. 发明申请
    • Power discriminating systems
    • 电力鉴别系统
    • US20050035827A1
    • 2005-02-17
    • US10941406
    • 2004-09-15
    • Clark RobisonNeal SkinnerJohn GoiffonCharles Pool
    • Clark RobisonNeal SkinnerJohn GoiffonCharles Pool
    • H02J3/02H03H7/01
    • H02J3/02Y10T307/25
    • The present invention relates to a control system for selectively supplying electrical power in a remote environment. The system comprises a plurality of electrical circuits, each designed to operate over a unique frequency passband. Power transmitted within the frequency passband of a circuit is filtered through that circuit to power a corresponding remote device. One or more remote devices can be simultaneously powered by transmitting power within the frequency passbands of the corresponding circuits. It is advantageous to design relatively narrow passbands to accommodate a relatively large number of circuits and corresponding devices for remote operation and a triac, rectifier or other suitable turn-on gate can be incorporated into each circuit to effectively control the width of the frequency passband of each circuit. Alternatively, an operational amplifier could be used.
    • 本发明涉及一种用于在远程环境中选择性地供电的控制系统。 该系统包括多个电路,每个电路被设计成在唯一的频率通带上工作。 在电路的频率通带内传输的功率通过该电路进行滤波,以对相应的远程设备供电。 一个或多个远程设备可以通过在相应电路的频率通带内发送功率来同时供电。 设计相对窄的通带以容纳相对大量的电路和用于远程操作的相应装置是有利的,并且可以将三端双向可控硅开关元件,整流器或其它合适的导通栅极并入每个电路中以有效地控制频率通带的宽度 每个电路。 或者,可以使用运算放大器。
    • 8. 发明申请
    • Fiber optic sensor capable of using optical power to sense a parameter
    • 能够使用光功率感测参数的光纤传感器
    • US20060289724A1
    • 2006-12-28
    • US11156964
    • 2005-06-20
    • Neal SkinnerHarry Smith
    • Neal SkinnerHarry Smith
    • G06M7/00H01J40/14
    • G01D5/268
    • A sensor includes an optical-to-electrical conversion device that is operable to convert at least a portion of an optical power of an optical signal received by the sensor to electrical power. The sensor also includes a sensing device that is operable to detect one or more state properties of an environment. The sensing device is also operable to generate one or more sensing signals in response to the detected state properties. The sensing device uses at least a portion of the electrical power to detect the one or more state properties. The sensor further includes an optical device that is operable to manipulate one or more optical characteristics of the optical signal based at least in part on the sensing signal. The optical device is also operable to communicate at least a portion of the manipulated optical signal from the sensor.
    • 传感器包括光电转换装置,其可操作以将由传感器接收的光信号的光功率的至少一部分转换成电功率。 传感器还包括可操作以检测环境的一个或多个状态属性的感测装置。 感测装置还可操作以响应于检测到的状态属性而产生一个或多个感测信号。 感测装置使用电力的至少一部分来检测一个或多个状态属性。 传感器还包括光学装置,其可操作以至少部分地基于感测信号来操纵光信号的一个或多个光学特性。 光学装置还可操作以传送来自传感器的操纵的光信号的至少一部分。
    • 10. 发明授权
    • Method of reservoir characterization and delineation based on observations of displacements at the earth's surface
    • 基于地球表面位移观测的储层表征和描绘方法
    • US08355873B2
    • 2013-01-15
    • US11288826
    • 2005-11-29
    • Ali MeseSyed HamidDingding ChenHarry D. Smith, Jr.John HowardNeal Skinner
    • Ali MeseSyed HamidDingding ChenHarry D. Smith, Jr.John HowardNeal Skinner
    • G01V9/00
    • G01V11/00
    • Reservoir characterization based on observations of displacements at the earth's surface. One method of characterizing a reservoir includes the steps of: detecting a response of the reservoir to a stimulus, the stimulus causing a pressure change in the reservoir; and determining a characteristic of the reservoir from the response to the stimulus. The response may be the pressure change which varies periodically over time, or a set of displacements of a surface of the earth. In another example, a method includes the steps of: detecting a set of displacements of the earth's surface corresponding to a pressure change in the reservoir; and determining a characteristic of the reservoir from the surface displacements. In yet another example, a method includes the steps of: detecting a set of displacements of the earth's surface corresponding to a change in volume of the reservoir; and determining a characteristic of the reservoir from the surface displacements.
    • 基于地球表面位移观测的油藏特征。 表征储层的一种方法包括以下步骤:检测储层对刺激的响应,所述刺激导致储层中的压力变化; 以及从所述刺激的响应确定所述储层的特性。 响应可以是随时间周期性地变化的压力变化或地球表面的一组位移。 在另一示例中,一种方法包括以下步骤:检测对应于储层中的压力变化的地球表面的一组位移; 以及从表面位移确定储层的特征。 在又一示例中,一种方法包括以下步骤:检测对应于储层体积变化的地球表面的一组位移; 以及从表面位移确定储层的特征。