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Synchronization of seismic data acquisition systems

  • US 7,583,560 B2
  • Filed: 05/24/2007
  • Issued: 09/01/2009
  • Est. Priority Date: 10/04/2002
  • Status: Active Grant
First Claim
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1. A method of operating a seismic survey network having first and second seismic data acquisition modules (RAMs) connected along a data signal transmission route to a central processing unit (CRU), said first and second RAMs having respective module clocks and said CRU having a network master clock, said data transmission route comprising a first signal carrier increment between said first and second RAMs and a second signal carrier increment between said second RAM and said CRU, said method comprising:

  • A step for determining a first statistical distribution of propagation uncertainty for the transmission delay time for a signal transmitted along said first signal carrier increment from said second RAM to said first RAM;

    A step for determining from said first statistical distribution a first probable signal transmission delay time along said first signal carrier increment;

    A step for determining a second statistical distribution of propagation uncertainty for the transmission delay time for a signal transmitted along said second signal carrier increment from said CRU to said second RAM;

    A step for determining from said second statistical distribution a second probable signal transmission delay time along said second signal carrier increment;

    A step for transmitting at predetermined times along said second increment to said second RAM a digital clock synchronization signal from said CRU that includes a timestamp value of said network master clock time at the moment of transmission;

    A step for retransmitting along said first increment said synchronization signal from said second RAM to said first RAM;

    A step for recording a first indicated time value of said first RAM clock upon receipt of said synchronization signal by said first RAM;

    A step for determining a first expected receipt time of said synchronization signal by said first RAM based upon the timestamp value of said synchronization signal and the sum of said probable signal transmission delay times along said first and second signal carrier increments;

    A step for determining the value of a first reception interval between said first expected receipt time and said first indicated receipt time of said synchronization signal by said first RAM; and

    ,A step for correcting the presently indicated time value of said first RAM clock by the value of said first reception interval to best correspond with the present value of said network master clock.

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