IL97380A

Networked satellite and terrestrial cellular radiotelephone systems

Abstract

This record has no abstract on file.

IL97380A, drawing sheet 1
Sheet 1 of 2

Term

No projected expiry on record.

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

20 claims: 7 independent, 13 dependent

  1. 1
    CLAIMS:1. A method of networking a satellite network and a terrestrial network’ comprising the steps of: controlling a terrestrial network transmission within a frequency band with respect to a satellite network transmission also within said frequency band to overcome interference;and controlling a subscriber transmission to the terrestrial network with respect to the terrestrial network transmission within said frequency band to the satellite network to avoid causing interference at a satellite of the satellite network.
  2. 2
    A method as claimed in Claim 1, wherein the satellite network comprises a non-orbiting satellite.
  3. 3
    A method as claimed in Claim 1, wherein the satellite network and the terrestrial network comprise a non-orbiting satellite cooperating as a switching node of both the satellite network and the terrestrial network.
  4. 4
    ' A method as claimed in Claim 1, wherein the terrestrial network comprises one or more from the group of networks consisting of:terrestrial wireless networks;terrestrial wireless cellular networks;terrestrial wireless cellular radiotelephone networks;terrestrial wireless in-building networks;terrestrial wireless in-building data networks;public switched telephone networks;and private branch exchanges.
  5. 5
    A method as claimed in Claim 1 further comprising the step of relaying information between a terrestrial subscriber and a satellite network via the terrestrial network.
  6. 6
    A method as claimed in Claim 5, wherein the step of relaying comprises the step of relaying the information via a non-orbiting satellite that is cooperating as a functional element of the satellite network.
  7. 7
    A method as claimed in Claim 5, wherein the step of relaying comprises the step of relaying the information via a non-orbiting satellite that is cooperating as a switching node of both the satellite network and the terrestrial network.
  8. 8
    A method as claimed in Claim 7, wherein a communication link between the non-orbiting satellite and a first satellite of the satellite network is handed off to a second satellite in the satellite network.
  9. 9
    A method of networking a satellite network and a terrestrial network comprising the steps of:controlling a terrestrial network transmission with respect to a satellite network transmission to overcome interference by maintaining a differential power level of . each of the transmissions to the terrestrial network and the satellite network relative to a differential path loss between the transmissions to the terrestrial and satellite networks;and controlling a subscriber transmission to the terrestrial network with respect to the terrestrial network transmission to the satellite network to avoid causing interference at a satellite of the satellite network.
  10. 10
    A method as claimed in Claim 9, wherein the differential power level is about one order of magnitude of the differential path loss.
  11. 11
    A method as claimed in Claim 9, wherein the step of controlling further comprises the step of non-interferingly partitioning an available communication spectrum between the terrestrial network and the satellite network.
  12. 12
    A method as claimed in Claim 11, wherein the step of partitioning of the available communication spectrum is accomplished through time division multiplex channelization.
  13. 13
    A method as claimed in Claim 11, wherein the step of partitioning of the available communication spectrum is accomplished through code division multiplex channelization. 97380/2 l. ί
  14. 14
    A method as claimed in Claim 11, wherein the step of partitioning of the available communication spectrum is accomplished through ;frequency division multiplex channelization.
  15. 15
    A method as claimed in Claim 11, wherein the step of partition- 5 ing is accomplished through one of:a satellite-related spectrum, reused terrestrially;an inter-satellite spectrum, reused terrestrially;the intersatellite spectrum, reused between a plurality of terrestrial network nodes;a satellite-to-ground spectrum, reused terrestrially;the satellite-to-ground ' spectrum, reused non-interferingly terrestrially;and the satellite-to-ground 10 spectrum, reused in time-synchronism with satellite movement.
  16. 16
    A method of networking a satellite network and a terrestrial !:network comprising the steps of: maintaining a subscriber-received signal level of a terrestrial network 1 transmission sufficiently above a co-channel satellite transmission to 15 overcome any interference therebetween;and maintaining a subscriber transmission to the terrestrial network at a i signal level sufficiently below a co-channel transmission to the satellite network to overcome any interference at a satellite of the satellite network, ί
  17. 17
    A method of networking a satellite network and a terrestrial 20 network comprising:maintaining a subscriber-receiver power level of a terrestrial network transmission to about one order of magnitude of a differential path loss above a co-channel satellite transmission to overcome any interference therebetween;and h 25 maintaining a subscriber transmission to the terrestrial network at a power level about one order of magnitude of a differential path loss below ί j a co-channel transmission to the satellite network to reduce interference at a satellite of the satellite network, wherein such power level maintenance is 97380/2 provided by one of the satellite and terrestrial networks in communication with a subscriber.
  18. 18
    A method of networking a satellite network and a terrestrial network comprising the steps of:controlling a terrestrial network transmission with respect to a satellite network transmission to overcome interference;controlling a subscriber transmission to the terrestrial network with respect to the terrestrial network transmission to the satellite network to avoid causing interference at a satellite of the satellite network;and dynamically allocating an available communication frequency band among satellite arid terrestrial networks in time-synchronism with the satellite movement.
  19. 19
    A method of networking a satellite network and a terrestrial network comprising the steps of:controlling a terrestrial network transmission with respect to a satellite network transmission to overcome interference;controlling a subscriber transmission to the terrestrial network with respect to the terrestrial network transmission to the satellite network to avoid causing interference at a satellite of the satellite network;and handing-off a communication path utilized to transmit a communication signal with a non-orbiting satellite in the satellite network from a first satellite to a second satellite in the satellite network during the transmission of said communication signal.
  20. 20
    An apparatus for networking a satellite network and a terrestrial network comprising:first means for maintaining a subscriber-received power level of a terrestrial network transmission about one order of magnitude of a differential path loss above a co-channel satellite transmission to reduce any interference therebetween;and 97380/2 second means, coupled to said first maintaining means, for maintaining a subscriber transmission to the terrestrial network at a power level about one order of magnitude of a differential path loss below a co-channel transmission to the satellite network to reduce any interference at a satellite 5 of the satellite network, wherein the power level maintenance is provided by one of the satellite and terrestrial networks in communication with a subscriber.
Independent claims20