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    • 3. 发明申请
    • MAGNETIC COMMUNICATION THROUGH METAL BARRIERS
    • 通过金属障碍物的磁通信
    • WO2008039676A3
    • 2009-04-02
    • PCT/US2007078915
    • 2007-09-19
    • HYDRO TECHNOLOGIES INCJASKOLSKI COREY JBERKENPAS ERIC JWILHELM GRAHAM R
    • JASKOLSKI COREY JBERKENPAS ERIC JWILHELM GRAHAM R
    • H04B13/02
    • H04B5/00H04B5/0031H04B5/0037H04B5/0075H04B5/0093
    • A wireless magnetic through-hull communications apparatus and method which permit higher data-rate communications through materials than presently available using acoustic techniques is described. A signal source on one side of a barrier is directed into a coil driver which generates an amplified, modulated signal responsive thereto. The resulting signal is used to drive a transmitter coil which generates a time-varying magnetic field that penetrates the barrier as well as any gaps comprising water, air or other material between the barrier and the transmitter coil. On the other side of the barrier, and perhaps through additional gaps comprising water, air or other material, a receiver coil detects the time-varying magnetic field. This signal may be amplified and then digitized by a signal processor. The signal processor may then communicate with a data processing and/or display unit, another sensor or some other device. Electric power may also be transmitted through the barrier for providing power to instrumentation without the need for batteries.
    • 描述了一种使用声学技术允许通过材料比目前可获得的更高数据速率通信的无线磁通通信设备和方法。 屏障一侧的信号源被引导到线圈驱动器中,该线圈驱动器响应于此产生一个被放大的调制信号。 所产生的信号用于驱动发射器线圈,其产生穿透屏障的时变磁场以及在阻挡层和发射器线圈之间的包括水,空气或其它材料的任何间隙。 在屏障的另一侧,并且可能通过包括水,空气或其它材料的附加间隙,接收器线圈检测时变磁场。 该信号可以被放大然后被信号处理器数字化。 信号处理器然后可以与数据处理和/或显示单元,另一传感器或一些其它设备进行通信。 电力也可以通过屏障传输,为仪器提供电力,而不需要电池。
    • 4. 发明申请
    • MAGNETIC COMMUNICATION THROUGH METAL BARRIERS
    • 通过金属障碍物的磁通信
    • WO2008039676A2
    • 2008-04-03
    • PCT/US2007/078915
    • 2007-09-19
    • HYDRO TECHNOLOGIES, INC.JASKOLSKI, Corey J.BERKENPAS, Eric J.WILHELM, Graham R.
    • JASKOLSKI, Corey J.BERKENPAS, Eric J.WILHELM, Graham R.
    • H04B5/00
    • H04B5/00H04B5/0031H04B5/0037H04B5/0075H04B5/0093
    • A wireless magnetic through-hull communications apparatus and method which permit higher data-rate communications through materials than presently available using acoustic techniques is described. A signal source on one side of a barrier is directed into a coil driver which generates an amplified, modulated signal responsive thereto. The resulting signal is used to drive a transmitter coil which generates a time-varying magnetic field that penetrates the barrier as well as any gaps comprising water, air or other material between the barrier and the transmitter coil. On the other side of the barrier, and perhaps through additional gaps comprising water, air or other material, a receiver coil detects the time-varying magnetic field. This signal may be amplified and then digitized by a signal processor. The signal processor may then communicate with a data processing and/or display unit, another sensor or some other device. Electric power may also be transmitted through the barrier for providing power to instrumentation without the need for batteries.
    • 描述了一种使用声学技术允许通过材料比目前可获得的更高数据速率通信的无线磁通通信设备和方法。 屏障一侧的信号源被引导到线圈驱动器中,该线圈驱动器响应于此产生一个被放大的调制信号。 所产生的信号用于驱动发射器线圈,其产生穿透屏障的时变磁场以及在阻挡层和发射器线圈之间的包括水,空气或其它材料的任何间隙。 在屏障的另一侧,并且可能通过包括水,空气或其它材料的附加间隙,接收器线圈检测时变磁场。 该信号可以被放大然后被信号处理器数字化。 信号处理器然后可以与数据处理和/或显示单元,另一传感器或一些其它设备进行通信。 电力也可以通过屏障传输,为仪器提供电力,而不需要电池。