CA2859641C

Satellite transponder for wideband frequency hopping signals with unprocessed transmission

Abstract

A method and apparatus for processing a signal. The signal is received in a receiver system in a satellite. The signal has a range of frequencies in which information is carried in a number of channels having a number of frequencies within the range of frequencies. The number of frequencies for a channel in the number of channels changes within the range of frequencies over time. The signal is transmitted using a transmitter system in the satellite. The signal is unprocessed to identify the number of frequencies for the channel used to carry the information by the satellite.

CA2859641C, drawing sheet 1
Sheet 1 of 21

Term

6.4 yearsleft in the term

Expires 28 February 2033.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

36 claims: 19 independent, 17 dependent

  1. 1
    CA 02859641 2016-04-27 THE EMBODIMENTS OF THE INVENTION IN WHICH AN EXCLUSIVE PROPERTY OR PRIVILEGE IS CLAIMED ARE DEFINED AS FOLLOWS:1. An apparatus comprising: a receiver system in a satellite that receives, via multiple uplink beams and 5 polarizations, uplink signals comprising a range of frequencies that carry information in a number of channels comprising a number of frequencies, such that the number of frequencies for a channel in the number of channels changes within the range of frequencies over time;a transmitter system in the satellite that transmits, via multiple downlink beams io and polarizations, the uplink signals as downlink signals, the uplink signals being unprocessed to identify the number of frequencies for the channel in the number of channels used to carry the information by the satellite;and a terrestrial portion comprising: multiple gateways, a control system, and a network, that minimize interference in a frequency hopping system within a coverage 15 area of the satellite via the control system synchronizing reception of all uplink signals at the satellite via synchronizing transmissions of uplink signals from the multiple gateways.
  2. 9
    The apparatus of any one of claims 1 to 8, wherein the transmitter system is configured to transmit the downlink signals to another satellite.
  3. 10
    The apparatus of any one of claims 1 to 9, wherein the transmitter system is 15 configured to transmit the downlink signals to a terminal device.
  4. 11
    The apparatus of any one of claims 1 to 10, wherein the transmitter system is configured to transmit the downlink signals to a ground station.
  5. 12
    The apparatus of any one of claims 1 to 11, wherein the transmitter system is configured to transmit the downlink signals to a gateway. 2 0
  6. 13
    The apparatus of any one of claims 1 to 12 further comprising:an antenna system in communication with the receiver system and the transmitter system, wherein the antenna system is configured to receive the uplink signals for the receiver system and transmit the downlink signals to the transmitter system. CA 02859641 2016-04-27
  7. 14
    The apparatus of any one of claims 1 to 13 further comprising:a centralized processor that provides orderwire processing and transmission security generation for the multiple gateways and a multiplicity of satellites and associated terminal devices in the frequency hopping system. 5
  8. 15
    The apparatus of any one of claims 1 to 14 further comprising:a beacon generator in the satellite, such that the beacon generator generates beacon information and a downlink signal in the downlink signals comprises the beacon information.
  9. 20
    The apparatus of any one of claims 15 to 19, wherein the beacon information includes a pseudorandom noise code.
  10. 21
    The apparatus of any one of claims 1 to 20, wherein the receiver system and the transmitter system form a transceiver system and the apparatus increases a data rate capability of the satellite. CA 02859641 2016-04-27
  11. 22
    The apparatus of any one of claims 1 to 20, wherein the receiver system and the transmitter system form a transponder system and the apparatus increases a data rate capability of the satellite.
  12. 23
    The apparatus of any one of claims 1 to 22, wherein the transmitter system is a 5 linear transmitter system.
  13. 24
    A method for processing uplink signals, the method comprising:receiving, via multiple uplink beams and polarizations, the uplink signals in a receiver system in a satellite, such that the uplink signals comprise a range of frequencies in which information is carried in a number of channels having a number io of frequencies within the range of frequencies, wherein the number of frequencies for a channel in the number of channels changes within the range of frequencies over time;transmitting the uplink signals as downlink signals, via multiple downlink beams and polarizations using a transmitter system in the satellite, the uplink signals 15 being unprocessed to identify the number of frequencies for the channel in the number of channels used to carry the information by the satellite;and synchronizing reception, and minimizing interference in a frequency hopping system within a coverage area of the satellite, of all uplink signals received by the satellite, via a control system synchronizing transmissions of uplink signals from 2 0 multiple gateways in a terrestrial portion of an apparatus, such that the terrestrial portion comprises the control system, the multiple gateways, and a network.
  14. 29
    The method of any one of claims 24 to 28, wherein the transmitting step comprises transmitting the downlink signals to a ground station.
  15. 30
    The method of any one of claims 24 to 29, wherein the transmitting step comprises transmitting the downlink signals to a gateway using the transmitter system in the satellite. io
  16. 31
    The method of any one of claims 24 to 30, wherein the downlink signals are unprocessed to identify the number of frequencies for the channel used to carry the information by the satellite.
  17. 32
    The method of any one of claims 24 to 31 further comprising:generating beacon information, such that a downlink signal in the downlink 15 signals comprises the beacon information.
  18. 34
    The method of any one of claims 24 to 33 further comprising:determining, using the control system, a relative instantaneous range between the satellite and each gateway in the multiple gateways and thereby synchronizing 2 0 reception, at the satellite, of a first uplink signal from a first gateway with a second uplink signal from a second gateway.
  19. 35
    The method of any one of claims 24 to 34, wherein the downlink signals comprise a first signal, and further comprising:generating a first polarization for the first signal;CA 02859641 2016-04-27 generating a second polarization for a second signal having the range of frequencies;and controlling polarization interference via transmitting the second signal the range of frequencies and transitioning frequencies on both polarizations at 5 substantially a same time.
Independent claims19