EP1638220A2

Constellation of airborne communication platforms and corresponding communication method

Abstract

An airborne constellation (10) is disclosed with a plurality of individual lighter-than-air platforms (12) spaced apart above a contiguous geographic area within a predetermined altitude range so that ubiquitous line of sight coverage of the geographic area is provided. Each of the plurality of platforms (12) includes an enclosure holding a regulated volume of low density gas for buoyancy of the platforms. Each of the plurality of platforms further includes a signal transmitting device attached to the enclosure by which signals from the platform may be transmitted to the contiguous geographic area.

EP1638220A2, drawing sheet 1
Sheet 1 of 15

Term

Term ended

Projected expiry passed 7 June 2020, 6.3 years ago.

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  3. Published
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  5. Today

25 claims: 20 independent, 5 dependent

  1. 1
    Communications system comprising:a plurality of lighter-than-air platforms (12a-g) comprising a communications signal transceiver (16) and being free floating without any longitudinal and latitudinal position control;anda plurality of communications devices (22a-u) within a contiguous geographic area, at least one of said communications devices (22a-u) having communications capability with said communications signal transceiver (16);characterized in thatsaid free floating constellation communications system provides a line-of-sight coverage of wireless data to a population on a contiguous landmass and said plurality of lighter-than-air platforms (12a-g) are launched in a manner such that when in an operating range of 60,000 to 140,000 feet there is substantially a relative distance between said plurality of lighter-than-air platforms;andwherein said at least one of said communications devices (22a-u) is capable of handing off communication with said first platform (12a) to said second platform (12b) as said first platform (12a) moves out of a communication range of said at least one of said communications devices (22a).
  2. 4
    Communications system according to any of claims 2 to 3, wherein said regulator regulates the floating of said platform within a predetermined altitude range and comprises a quantity of contained gas having a density less than the density of air within said predetermined altitude range and a controllable vent by which a portion of said quantity of contained gas can be released to reduce the buoyancy of said platform.
  3. 5
    Communications system according to any of claims 2 to 4, wherein said regulator comprises a quantity of high density material carried onboard said platform and a release device by which a portion of said high density matter can be released to increase buoyancy of said platform.
  4. 6
    Communications system according to any of claims 2 to 5, wherein said regulator comprises:a controllable gas vent;a controllable ballast release device;an altitude determining mechanism;anda control signal processor device connected with said transceiver, said altitude determining mechanism, said gas vent and ballast release so that the altitude can be adjusted.
  5. 7
    Communications system according to any of claims 1 to 6, further comprising a tracking device, wherein said tracking device comprises:a directional antenna;anda directional antenna aiming mechanism responsive to GPS coordinate data for selectively aiming said directional antenna at one or more of said plurality of platforms.
  6. 9
    Communications system according to any of claims 1 to 8, wherein said plurality of platforms comprise a lighter-than-air device selected from the group consisting of a balloon, a blimp, an aerostat, a zeppelin, an airship, a dirigible, a weather balloon, a jimsphere, a hot air balloon, a sounding balloon and a meteorological balloon and combinations thereof.
  7. 10
    Communications system according to any of claims 1 to 9, wherein said plurality of platforms comprise rubber balloons.
  8. 11
    Communications system according to any of claims 1 to 9, wherein said platforms comprise zero-pressure balloons.
  9. 12
    Communications system according to any of claims 1 to 9, wherein said platforms comprise internal air bladder balloons.
  10. 13
    Communications system according to any of claims 1 to 12, wherein said communications devices comprise pagers.
  11. 14
    Communications system according to any of claims 1 to 12, wherein said communications devices comprise advanced messaging devices.
  12. 15
    Communications system according to any of claims 1 to 12, wherein said communications devices comprise wireless telephones.
  13. 16
    Communications system according to any of claims 1 to 15, further comprising:an altitude determining mechanism;a source of meteorological data;andcontrols for adjusting the altitude of a platform into a wind velocity and direction determined according to said meteorological data.
  14. 17
    Communications system according to any of claims 1 to 16, further comprising:an attitude sensor onboard at least one said plurality of platforms;anda steerable antenna coupled to at least one of said communications signal transceivers and attached to at least one of said plurality of platforms, said steerable antenna having stabilization controls for stabilizing said steerable antenna in a direction from said platforms provides consistent ground coverage over said geographic area.
  15. 18
    Communications system according to any of claims 1 to 17, wherein at least one of said platforms comprise:an unmanned free balloon;anda payload box having a total weight less than six pounds and exterior surfaces with predetermined areas and that has a weight to size ratio of no more than three ounces per square inch on any surface of the package, determined by dividing the total weight in ounces of the payload box by the area in square inches of its smallest exterior surface.
  16. 19
    Communications system according to any of claims 1 to 18, further comprising:a hydrogen gas enclosure for holding a quantity of hydrogen;an onboard electrical power source on at least one of said platforms, wherein said onboard electrical power source comprises a fuel cell interconnected with said hydrogen gas enclosure for receiving hydrogen as a component of the fuel for said fuel cell;andan altitude regulator attached to said platform to regulate the altitude of said platform within a predetermined altitude range, said altitude regulator comprising: an altitude determining mechanism;a controllable vent from said gas enclosure and vent controls operatively coupled with said altitude determining mechanism for venting of said hydrogen gas for regulating the altitude of said platform;anda controllable ballast release attached to said platform to release ballast for regulating the altitude of said platform.
  17. 21
    Communications system according to any of claims 1 to 20, further comprising a tracking system capable of tracking one or more of said plurality of platforms.
  18. 22
    Communications system comprising:a plurality of lighter-than-air platforms comprising at least a first platform and a second platform, each of said first and second platforms comprising a communications signal transceiver and being free floating without any longitudinal and latitudinal position control;anda plurality of communications devices within a contiguous geographic area, at least one of said communications devices having communications capability with said communications signal transceivers;characterized in thatsaid at least one of said communications devices is capable of receiving communications from said communications signal transceiver of said first platform and said communications signal transceiver of said second platform, but hearing communications from only one communications signal transceiver and said plurality of lighter-than-air platforms are launched in a manner such that when in an operating range of 60,000 to 140,000 feet there is substantially a relative distance between said plurality of lighter-than-air platforms.
  19. 24
    A method of communicating using a free floating constellation communications system comprising:providing a plurality of lighter-than-air platforms comprising at least a first platform and a second platform, each of said first and second platforms comprising a communications signal transceiver and being free floating without any longitudinal and latitudinal position control;characterized in thatcommunicating with a communication device having communications capability with said communications signal transceiver, characterized in thatsaid first and second platforms dynamically assign new frames in which to transmit communication signals from said communications signal transceivers as the platforms drift such that a communication device receives communications signals from only one communications signal transceiver in a particular frame and said plurality of lighter-than-air platforms are launched in a manner such that when in an operating range of 60,000 to 140,000 feet there is substantially a relative distance between said plurality of lighter-than-air platforms.
  20. 25
    A method for providing communication service comprising:providing a first lighter-than-air platform;providing a second lighter-than-air platform, wherein the first and second lighter-than-air platforms each comprise an altitude regulator device and a communications signal transceiver and wherein the first and second lighter-than-air platforms are free floating without any longitudinal and latitudinal position control;providing a plurality of communications devices within a contiguous geographic area, at least one of said communications devices having communications capability with said communications signal transceiver, characterized in thatsaid at least one of said communications devices is capable of handing off communication with said first platform to said second platform as said first platform moves out of a communication range of said at least one of said communications devices and wherein said free floating constellation communications system provides a line-of-sight wireless data coverage to a population on a contiguous landmass and said plurality of lighter-than-air platforms are launched in a manner such that when in an operating range of 60,000 to 140,000 feet there is substantially a relative distance between said plurality of lighter-than-air platforms.
Independent claims20