Nova Patents
EP0416692A2

Communicating information by radio.

Abstract

Information is communicated by microwave radio between transponders (9,10) carried by vehicles (7,8) travelling on a road (1) and a station (22) adjacent the road. The communications from the transponders are effected by the transponders suitably modulating their reflections of beams of microwave energy transmitted by the station from aerials (B) mounted on a gantry (11) above the road, these aerials irradiating respective communication areas (28,29,30). In order to prevent communications from different transponders overlapping and hence interfering with each other the transponders are enabled for their communications by microwave energy from further aerials (A), which energy has a higher frequency to enable it to be beamed at relatively small respective activation areas (23-27) the sizes of which are such that they can each only contain one vehicle and hence one transponder at any given time. The further aerials are activated, one at a time, successively and cyclically, so that the transponders are necessarily enabled in succession, the activation rate being, moreover, sufficient to ensure that all transponders passing through the relevant stretch of road are in fact enabled. During each interval between the activation of each further aerial and the next the station transmits a command from the aerial(s) (B) associated with the further aerial (A) which has just been activated ordering any transponder which has just been enabled to communicate its presence. If it receives such a communication the station transmits an address code from the relevant aerial(s) (B) which is stored in the relevant transponder and used subsequently to selectively address that transponder for further communication.

EP0416692A2, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 31 August 2010, 16.1 years ago.

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

10 claims: 3 independent, 7 dependent

  1. 1
    A method of communicating information by radio between mobile transponders and a fixed station, in which method the station irradiates first and second portions of a path for said transponders by a first beam of microwave energy and a second beam of radio energy respectively, the energy of said beams having first and second frequencies respectively, the microwave energy having the first frequency activates each said transponder when that transponder is present within the first portion, information is subsequently communicated from that transponder to the station, and information is communicated to each transponder from the station by the station modulating the second beam, characterized in that said first and second portions overlap, said second frequency is lower than said first frequency, the microwave energy having the first frequency enables each said transponder for communication when that transponder is present within the first portion, communication of information from each activated transponder to the fixed station is achieved by the relevant transponder modulating its reflection of a beam of radio energy with which the station irradiates said second portion, which radio energy has a frequency which is lower than said first frequency, said second beam periodically carries modulation having a specific nature, information is first communicated to the station by any newly enabled transponder in response to reception by that transponder of the modulation having the specific nature, a specific address code is communicated between the station and each newly enabled transponder, and the station subsequently modulates said second beam to communicate further information to each enabled transponder using the specific address code to address the relevant transponder.
  2. 2
    A method as claimed in Claim 1, wherein the communication of the specific address code is from the station to the newly enabled transponder in response to reception by the station of the first communication from that transponder.
  3. 3
    A method as claimed in Claim 1 or Claim 2, wherein the beam whose reflection is modulated and said second beam are one and the same.
  4. 4
    A method as claimed in Claim 1,2 or 3, wherein said first frequency is at least three times the or each other said frequency.
  5. 5
    A method as claimed in Claim 4, wherein said first frequency is greater than 9GHz and the or each other said frequency is less than 3GHz.
  6. 6
    A method as claimed in any preceding claim, performed with respect to each of a plurality of mutually adjacent paths for mobile transponders, a respective said first beam being provided corresponding to each said path.
  7. 7
    A method as claimed in Claim 6, wherein the respective first beams are activated cyclically and successively with intervals therebetween.
  8. 8
    A method as claimed in Claim 7, wherein said modulation having a specific nature is carried by a said second beam in each interval between successive activation periods of the first beams.
  9. 9
    An information transmission system for implementing a method as claimed in any preceding claim, comprising a fixed radio station adjacent a path for mobile radio transponders and a plurality of mobile radio transponders situated on said path, said station comprising means for generating a first beam of microwave energy and a second beam of lower frequency radio energy and irradiating first and second overlapping portions of said path with said first and second beams respectively, said second beam periodically carrying modulation having a specific nature, and means for responding to reception of radio energy which is reflected by a said transponder, which has a frequency lower than said first frequency, and which is modulated in a specific manner, by modulating said second beam with a specific address code and for subsequently modulating further information in conjunction with said address code on said second beam, each transponder comprising enabling means for enabling that transponder for communication with the fixed station in response to reception by that transponder of energy from the first beam and means for responding, when so enabled, to reception of energy from the second beam carrying modulation having the specific nature by modulating its reflection of said radio energy having a frequency lower than said first frequency in said specific manner, for responding to subsequent reception of energy from the second beam modulated with a specific address code by storing said specific address code, and for responding to subsequent reception of modulating energy from the second beam provided that the modulation includes the stored address code.
  10. 10
    A transponder for use in a system as claimed in Claim 9, comprising enabling means for enabling that transponder for communication in response to reception of microwave energy having a first frequency, and means for responding, when so enabled, to reception of radio energy having a lower second frequency and carrying modulation having a specific nature by modulating in a specific manner its reflection of received radio energy having a frequency lower than the first frequency, for responding to subsequent reception of radio energy having the second frequency and modulated with a specific address code by storing said specific address code, and for responding to subsequent reception of modulated radio energy having the second frequency provided that the modulation includes the stored address code.