EP1564907B1

Wireless telephone distribution system with time and space diversity transmission

Abstract

This record has no abstract on file.

EP1564907B1, drawing sheet 1
Sheet 1 of 19

Term

Term ended

Expired 31 August 2015, 11.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

41 claims: 20 independent, 21 dependent

  1. 1
    A transmitting station for a wireless communication system wherein digital data is communicated to a receiving station characterized by :means for transmitting (88) data from a first antenna (11;822) to form a first transmitted data signal;and means for transmitting (818) said data from a second antenna (12;824) to form a second transmitted data signal after said first transmitted data signal whereby said data is transmitted with both space and time diversity;wherein said data transmitted from said second antenna (12;824) is combined with a continuation of a pseudorandom noise, PN, code used to transmit said data from the first antenna (11;822).
  2. 7
    The transmitting station according to claims 4, 5 or 6 further characterized by a third antenna (13;826) spaced apart said first and second antennas (11, 12;822, 824) and means for transmitting (820) said data packet from said third antenna (13;826) to form a third transmitted data packet after said second transmitted data packet.
  3. 8
    The transmitting station according to claims 4, 5, 6 or 7 wherein said data packet is transmitted as a code division multiplex signal, said code division multiplex signal being divided into time division multiplex having a plurality of time slots and each said transmitting means is configured to transmit its respective transmitted data packet in a different time slot.
  4. 9
    The transmitting station according to any of claims 1-8 wherein said transmitted data signals include a carrier frequency having a characteristic wavelength and wherein said antennas are spaced apart from each other by a distance between a quarter of said wavelength and ten times said wavelength.
  5. 10
    A communication system including the transmitting station according to claims 4, 5 or 8 and a receiving station characterized by a receiver having:means for receiving (902, 904) in sequence said first and second transmitted data packets and forming respective first and second received data packets;and means for selecting at least one of said first and second received data packets to form the digital data at said receiver.
  6. 12
    The communication system according to claims 10 or 11 wherein said means for selecting at least one of said received data packets to form said digital data at said receiver comprises a means for combining the energy of said received data packets in a maximal manner.
  7. 14
    The communication system according to claims 10 or 11 wherein said means for selecting at least one of said received data packets to form said digital data at said receiver is configured to make a selection based in part on the data packet having the least bit error rate, the least bit phase distortion or the highest signal to noise ratio.
  8. 17
    The communication system according to claims 15 or 16 further characterized by means for transmitting a location file containing data representing said location of the receiving station from the receiving station to a network base station that includes said means for computing the location of the receiving station.
  9. 19
    The communication system according to claims 17 or 18 wherein said network base station is configured to access said location file data by at least one of:dial up through the public switched telephone network, a password, transmission in encrypted form, or an initiation indication at the receiving station.
  10. 20
    The transmitting station according to any of claims 1-9 further characterized by a receiver and means for switching (918) said antennas between said receiver for receiving data signals and said means for transmitting data.
  11. 21
    A wireless communication method wherein digital data is communicated to a receiving station characterized by :transmitting data from a first antenna (11;822) to form a first transmitted data signal;and transmitting said data from a second antenna (12;824) to form a second transmitted data signal after said first transmitted data signal whereby said data is transmitted with both space and time diversity, wherein said data transmitted from said second antenna (12;824) is combined with a continuation of a pseudorandom noise, PN, code used to transmit said data from the first antenna (11;822).
  12. 28
    The method according to claims 24, 25, 26 or 27 further characterized by transmitting said data packet from a third antenna (13;826) to form a third transmitted data packet after said second transmitted data packet.
  13. 29
    The method according to any of claims 21 - 28 wherein said data is transmitted as a code division multiplex signal, said code division multiplex signal being divided into time division multiplex having a plurality of time slots and each respective transmitted data packet is transmitted in a different time slot.
  14. 30
    The method according to any of claims 21-29 wherein said transmitted data signals include a carrier frequency having a characteristic wavelength and wherein said antennas are located at positions spaced apart from each other by a distance between a quarter of said wavelength and ten times said wavelength.
  15. 31
    The method according to claims 24, 25, 26 or 29 further characterized by :receiving in sequence said first and second transmitted data packets and forming respective first and second received data packets;and selecting at least one of said first and second received data packets to form the digital data at the receiving station.
  16. 33
    The method according to claims 31 or 32 wherein said selecting at least one of said received data packets to form said digital data comprises combining the energy of said received data packets in a maximal manner.
  17. 35
    The method according to claims 31 or 32 wherein said selecting at least one of said received data packets to form said digital data is performed by making a selection based in part on the data packet having the least bit error rate, the least bit phase distortion or the highest signal to noise ratio.
  18. 38
    The method according to claims 36 or 37 further characterized by transmitting a location file containing data representing said location of the receiving station from the receiving station to a network base station that computes the location of the receiving station.
  19. 40
    The method according to claims 38 or 39 wherein said network base station accesses said location file data by at least one of:dial up through the public switched telephone network, a password, transmission in encrypted form, or an initiation indication at the receiving station.
  20. 41
    The method according to any of claims 21-40 further characterized by switching said antennas between receiving data signals and transmitting data signals.
Independent claims20