EP1667900A2

System and applications of lighter-than-air (lta) platforms

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 30 September 2024, 2 years ago.

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33 claims: 8 independent, 25 dependent

  1. 1
    Claims of equivalent WO 2005032936 A2 CLAIMS:1. A rise rate control system to control a rise rate of a free-floating lighter than air platform comprising a vent actuator, an altitude sensor and a device that controls the vent actuator when the rise rate is greater than a predefined rise rate.
  2. 6
    A method of controlling a rise rate of a free-floating lighter than air platform by a rise rate control system comprising a vent actuator, an altitude sensor and a device that controls the vent actuator when the rise rate is greater than a predefined rise rate, the method comprising determining the rise rate and controlling the rise rate.
  3. 11
    A method for determining a location of a device transmitting wireless signals with a plurality of free-floating lighter than air platforms comprising taking signal path delay measurements from the plurality of free-floating lighter than air platforms and determining the location of the device transmitting wireless signals based on the signal path delay measurements, wherein the plurality of free-floating lighter than air platforms have a speed relative to the surface of the earth of less than 100 miles per hour and float at an altitude of 60,000-140,000 feet, wherein the method does not require a Doppler shift conection.
  4. 16
    A method for determining a location of a payload comprising a device transmitting wireless signals and a GPS unit, the method comprising measuring a location of the device transmitting wireless signals by the GPS unit, checking for a shift in the location of the device transmitting wireless signals and communicating the location of the payload to a free- floating lighter than air platform.
  5. 18
    A system for locating and determining usage of a ground-based vehicle comprising a housing attached to a hub of the ground-based vehicle, the housing comprising a GPS unit, a device transmitting wireless signals and a power source.
  6. 21
    A method for steering a steerable system comprising flying the steerable system in a circle relative to a local wind at the steerable system thereby nullifying a flight vector of the steerable system and determining a local wind vector of the local wind with respect to a position on the earth without using data obtained from a compass or an air speed indicator.
  7. 26
    A method for determining a location of a device transmitting wireless signals with one or more free-floating lighter than air platforms comprising taking signal path delay measurements from the one or more free-floating lighter than air platforms at different intervals of time and determining the location of the device transmitting wireless signals based on the signal path delay measurements, wherein the one or more free-floating lighter than air platforms have a speed relative to the surface of the earth of less than 100 miles per hour and floats at an altitude of 60,000-140,000 feet, wherein the method does not require a Doppler shift conection.
  8. 32
    A system for locating and determining usage of a ground-based vehicle comprising a housing, the housing comprising a GPS unit, a device transmitting wireless signals and a power source, the system further comprising one or more free-floating lighter than air platforms comprising a device receiving wireless signals that receives signals from the device transmitting wireless signals.