Nova Patents
IL104264A

Remote position detrmination system

Abstract

This record has no abstract on file.

IL104264A, drawing sheet 1
Sheet 1 of 5

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

19 claims: 3 independent, 16 dependent

  1. 1
    A remote position determination system, comprising:at least one synchronization transmitter which periodically transmits a timing signal;a plurality of mobile stations each including: a mobile receiver operative to receive the timing signal transmitted by the at least one synchronization transmitter;synchronization circuitry receiving the timing signal from the mobile receiver and providing a unique spread spectrum frequency-hopping sequence wherein the frequency hopping sequence is generated in accordance with the timing signal;a mobile transmitter producing a radiated frequency hopped spread spectrum signal responsive to the frequency-hopping sequence, and at least one base station having a plurality of receiving antennas and a computer and operable for: receiving the radiated frequency hopped spread spectrum signal;determining the identity of each of the mobile stations from the unique spread spectrum frequency-hopping sequence;and calculating the direction of the radiated frequency hopped spread spectrum signal by determining the phase of the radiated frequency hopped spread spectrum signal received by each of the plurality of receiving antennas.
  2. 12
    13. The system according to claim 12 wherein the at least one of the plurality of the base station is a mobile base station and wherein the position of the at least one of the plurality of mobile stations is determined by triangulation from different positions of the at least one of the plurality of the base station.
  3. 13
    14. A method for remote position determination of at least one of a plurality of mobile stations in relation to at least one base station, comprising the steps of:periodically transmitting a timing signal from the at least one base station;receiving the timing signal by the at least one of the plurality of mobile stations;generating a unique spread spectrum frequency hopping sequence characteristic of the at least one of the plurality of mobile stations and in accordance with the timing signal;transmitting, from the at least one of the plurality of mobile stations, a radiated frequency hopped spread spectrum signal responsive to the unique frequencyhopping sequence;receiving the radiated frequency hopped spread spectrum signal by a plurality of receiving antennas;determining the unique frequency-hopping sequence from the radiated frequency hopped spread spectrum signal;determining the identity of the at least one of the mobile stations from the unique frequency-hopping sequence;and calculating the direction of the radiated frequency hopped signal by determining the phase of the radiated frequency hopped spread spectrum signal received by each of the plurality of receiving antennas.
  4. 14
    15. The method according to claim 14 further comprising the step of providing activation signals by the at least one of the plurality of mobile stations and wherein the step of transmitting a radiated frequency hopped spread spectrum signal is activated in response to the activation signals provided by the at least one of the plurality of mobile stations.
  5. 19
    20. A remote position determination comprising:at least one base station including means for periodically transmitting a timing signal;and a plurality of mobile stations each including: means for receiving the timing signal transmitted from the at least one base station;means for generating a spread spectrum frequencyhopping sequence characteristic of the particular mobile station wherein the frequency hopping sequence is generated in accordance with the timing signal;means for producing a radiated frequency hopped signal responsive to the frequency hopping sequence the at least one base receiver further having a plurality of receiving antennas and a computer including: means for receiving the radiated frequency hopped spread spectrum signal;means for determining the identity of each of the mobile station from the unique spread spectrum frequency-hopping sequence;and means for calculating the direction of the radiated frequency hopped spread spectrum signal by comparing the phase of the radiated frequency hopped spread spectrum signal received by each of the plurality of receiving antennas.