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Device applicable to direction finding for measuring the relative orientation of two bodies

  • US 4,396,885 A
  • Filed: 06/03/1980
  • Issued: 08/02/1983
  • Est. Priority Date: 06/06/1979
  • Status: Expired due to Term
First Claim
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1. A device for measuring the relative orientation of two mechanically independent bodies, comprising:

  • radiating means for emission of a magnetic field including;

    (1) a first assembly of three coils which are adapted to be rigidly fixed to a first body and which are oriented perpendicularly to each other to define a cartesian coordinate frame for the associated body; and

    (2) circuit means for supplying said coils comprising;

    (a) an oscillator for delivering an alternating current signal constituted by an unmodulated continuous wave, and(b) a first multiplexing circuit for supplying periodically said coils from said oscillator so as to connect separately and successively each of said coils during each emission cycle;

    sensing means for receiving said field including;

    (1) a second assembly of three coils which are adapted to be rigidly fixed to the second body and which are oriented perpendicular to each other to define a cartesian coordinate frame for the second body,(2) a processing circuit,(3) a second multiplexing circuit for connecting said receiving coils separately and successively to said processing circuit, said processing circuit providing coherent demodulation of the signals induced in the receiving coils from the said alternating-current signal,(4) computing and control means for computing from the demodulated signal orientation information relating to the coordinate frames and for providing control signals to the two multiplexing circuits aforesaid so as to connect the detecting coils separately and successively to the processing circuit during each period of supply of a radiating coil at each emission cycle, said computing and control means including an ancillary computer, the elements of said sensing means defining further a loop for comparing the induced coil signal with a reference signal of variable amplitude controlled by the computing means on the basis of the demodulated signal, so that the comparison result reaches zero, the loop being formed by said processing circuit,(5) a variable gain circuit supplied with said alternating current signal and controlled by the computing and control means, and(6) a differential comparator circuit connected to the output of the second multiplexing circuit at a first input and to the output of said variable-gain circuit at a second input, and having an output connected to the input to said processing circuit.

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