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Radio position determination method and apparatus

  • US 4,799,062 A
  • Filed: 04/27/1987
  • Issued: 01/17/1989
  • Est. Priority Date: 04/27/1987
  • Status: Expired due to Term
First Claim
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1. A method of radio position determination of an unknown position transmitter using a mobile-reference transceiver and a plurality of base repeater generating a slave grid synchronization pulse for time reference, located at known geographic locations in a geographic area and coupled to a central monitoring station generating a master grid synchronization pulse for time reference, comprising the steps of:

  • emitting by the unknown position transmitter located within the geographical area, a radio wave having modulation compensation for multipath which also serves as a coarse ranging modulation, and a modulated carrier with an identification code;

    receiving by at least three base repeaters the radio wave emitted by the unknown position transmitter and measuring at the base repeaters the relative times-of-arrival of the radio wave with respect to the master grid synchronization pulse for deriving ranging times and therefore ranges from said base repeaters to said unknown position transmitter;

    computing from the locations of said base repeaters and the measured times-of-arrival, hyperbolic lines of position for the unknown position transmitter;

    computing a coarse-position fix of the unknown position transmitter from the hyperbolic lines of position using a least means squares algorithm;

    dispatching a search team having a mobile reference transceiver to the coarse-position fix of said unknown-position transmitter;

    transmitting from said mobile reference transceiver located within the coarse-position fix a reference signal having modulation compensation for multipath which also serves as a coarse ranging modulation;

    receiving by the base repeaters the reference signal emitted by said mobile reference transceiver and computing a difference between the reference signal and the radio wave, for deriving a differential position vector from said mobile reference transceiver to said unknown position transmitter;

    guiding the mobile reference transceiver to said unknown position transmitter using the differential position vector;

    emitting a polling message by said mobile reference transceiver;

    emitting, in response to receiving the polling message, a reply message by said unknown position transmitter;

    independently computing from the polling message and the reply message a local-time-of-flight and therefore the local range from the mobile reference transceiver to the unknown position transmitter; and

    emitting an audible sound by said unknown position transmitter for assisting in locating the unknown position transmitter.

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