EP0409016A2

System and method for locating labelled objects.

Abstract

A locating system 10 for locating predetermined labelled objects 20 includes a transceiver unit 12 which comprises a narrow beamwidth antenna means 14 for transmitting an energising signal 16 at a predetermined first frequency and for receiving a returned signal 22 at a predetermined second frequency from an object 20 to be located, the energising signal 16 incorporating a predetermined transponder identification code. A plurality of label-like transponders 18 is provided, each of which is affixable to an object 20 to be located, each transponder 18 including logic circuitry in order that only that transponder 18 to which the said identification code relates is energised by the energising signal 16 to radiate the returned signal 22.

EP0409016A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 6 July 2010, 16.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

19 claims: 9 independent, 10 dependent

  1. 1
    A locating system for locating predetermined labelled objects which includes a transceiver unit which comprises a narrow beamwidth antenna means for transmitting an energising signal at a predetermined first frequency and for receiving a returned signal at a predetermined second frequency from an object to be located, the energising signal incorporating a predetermined transponder identification code;and a plurality of label-like transponders each of which is affixable to an object to be located, each transponder including logic circuitry in order that only that transponder to which the said identification code relates is energised by the energising signal to radiate the returned signal.
  2. 2
    The system as claimed in Claim 1 in which each transponder is substantially omni-directional in order to operate effectively irrespective of the orientation of the object to which it is affixed relative to the transceiver unit.
  3. 3
    The system as claimed in Claim 2 in which each transponder includes a patch antenna.
  4. 4
    The system as claimed in any one of the preceding claims in which the logic circuitry comprises a register means for receiving a predetermined transponder identifica­tion code from the transceiver unit via the energising signal.
  5. 5
    The system as claimed in Claim 4 in which the logic circuitry includes a comparator for comparing the received transponder identification code with a code stored in a memory means of the logic circuitry.
  6. 6
    The system as claimed in Claim 5 in which a category code is stored in the memory means of the logic circuitry, the category code being comparable by the comparator with a predetermining encoded energising signal rransmitted by the transceiver unit for facilitating location of predetermined objects within a predetermined category of objects.
  7. 7
    The system as claimed in Claim 6 in which the logic circuitry includes a time delay means, a different time delay being allocated to each transponder to delay the transmission of individual identification codes by the transponders by varying amounts of time such that the codes are received serially by the transceiver unit.
  8. 8
    The system as claimed in any one of Claims 4 to 7 inclusive in which each transponder includes a switching means which is controlled by the logic circuitry, the switching means being activated by the logic circuitry to cause the returned signal to be transmitted.
  9. 9
    The system as claimed in Claim 8 in which the switching means is an RF switch.
  10. 10
    The system as claimed in any one of the preceding claims in which the transceiver unit is a portable unit.
  11. 11
    The system as claimed in any one of the preceding claims in which the said predetermined first frequency of the energising signal falls within the UHF range for indicating the direction of a response from the transponder.
  12. 12
    The system as claimed in any one of the preceding claims in which the said predetermined second frequency of the returned signal is an harmonic of the frequency of the energising signal.
  13. 13
    The system as claimed in Claim 12 in which the frequency of the returned signal is the third harmonic frequency of the energising signal.
  14. 14
    A method of locating predetermined labelled objects which includes modifying an energising signal to incorporate a predetermined transponder identification code;transmitting the energising signal via a narrow beamwidth antenna means at a predetermined first frequency;and receiving a returned signal at a predetermined second frequency radiated by a label-like transponder which is energised by the energising signal and to which the predetermined identification code relates, the said transponder being one of a plurality of such transponders, each of which is affixed to an object to be located.
  15. 15
    The method as claimed in Claim 14 which includes transmitting the signal at a frequency in the UHF range and causing the returned signal to be radiated at a frequency which is an harmonic of the energising signal.
  16. 16
    The method as claimed in Claim 15 which includes causing the returned signal to be radiated at a frequency which is the third harmonic frequency of the energising signal.
  17. 17
    The method as claimed in any one of Claims 14 to 16 inclusive, which includes modifying the energising signal by modulating the predetermined transponder identification code onto the energising signal.
  18. 18
    The method as claimed in any one of Claims 14 to Claim 17 inclusive, which includes further modifying the energising signal in order to enable a range determination to be made.
  19. 19
    The method as claimed in Claim 18 which includes further modifying the energising signal by modulating a predetermined waveform onto the energising signal.
Independent claims19