IL309575A

Broadband satellite communication system using optical feeder links

Abstract

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IL309575A, drawing sheet 1
Sheet 1 of 26

Term

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  1. Priority and filed
  2. Published
  3. Today

12 claims: 5 independent, 7 dependent

  1. 1
    A method of transmitting information through a satellite of a satellite communications system, comprising:receiving an optical signal within a satellite;demultiplexing the optical signal and outputting a plurality of demultiplexed optical signals, each of the plurality of demultiplexed optical signals having a wavelength in a unique optical channel generating a plurality of analog electrical signals, each having an amplitude determined in response to the optical intensity of one of the demultiplexed optical signals;applying the plurality of analog electrical signals to a beamformer aboard the satellite;receiving from the beamformer beam element signals;and transmitting the beam element signals from an antenna array such that when the beam element signals are superpose with one another, they form a user spot beam.
  2. 2
    The method of Claim 1, further including receiving commands within the beamformer to generate beam element signals, each of the beam element signal beam is weighted to form user spot beams directed to a first user beam coverage area based on the quality of the optical links between satellite access nodes (SANs) and the satellite.
  3. 3
    The method of Claim 2, wherein the received commands include commands to generate beam element signals, each of the beam element signal beam weighted to form user spot beams directed to a first user beam coverage area during a first period of time and to a user spot beams directed to a second user beam coverage area during a second period of time.
  4. 4
    The method of Claim 1, further comprising amplifying the beam element signals before transmission.
  5. 5
    A satellite comprising:an antenna having a plurality of antenna outputs;a plurality of frequency converters, each coupled to a corresponding one of the plurality of antenna outputs;a beamformer having a plurality of beamformer inputs and beamformer outputs, each beamformer input coupled to a corresponding one of the frequency converters;a plurality of radio frequency (RF) demodulators, each having an RF demodulator input configured to receive an RF signal from a corresponding beamformer output and configured to output a digital data stream;and an optical transmitter having a plurality of digital inputs, each coupled to an output of a corresponding one of the RF demodulators and having an optical output configured to output an optical signal having multiplexed optical channels upon which the digital data stream has been modulated.
  6. 6
    The satellite of Claim 5, wherein the RF demodulator is a binary demodulator.
  7. 7
    The satellite of Claim 5, wherein the RF demodulator is a QAM demodulator.
  8. 8
    A satellite comprising:an antenna having a plurality of antenna outputs;a plurality of frequency converters, each having a converter input coupled to a corresponding one of the antenna outputs and having a converter output;a beamformer having a plurality of beamformer inputs and beamformer outputs, each of the beamformer inputs cofupled to a corresponding output of one of the plurality of frequency converters;and an optical transmitter having a plurality of radio frequency (RF) inputs, each coupled to a corresponding beamformer output and having an optical output, the optical output configured to output an optical signal having multiplexed optical channels modulated by signals coupled to the RF inputs.
  9. 9
    A satellite communication system comprising:satellite comprising: an antenna having a plurality of antenna outputs;a plurality of frequency converters, each coupled to a corresponding one of the plurality of antenna outputs;a beamformer having a plurality of beamformer inputs and beamformer outputs, each beamformer input coupled to a corresponding one of the frequency converters;a plurality of radio frequency (RF) demodulators, each having an RF demodulator input configured to receive an RF signal from a corresponding beamformer output and configured to output a digital data stream;and an optical transmitter having a plurality of digital inputs, each coupled to an output of a corresponding one of the RF demodulators and having an optical output configured to output an optical signal having multiplexed optical channels upon which the digital data stream has been modulated;and a satellite access node (SAN) comprising: an steerable optical lens configured to receive an optical signal from the satellite;an optical demultiplexer having a demux input coupled to receive the optical signal from the optical lens and a plurality of demux outputs configured to output optical channels demultiplexed from the optical signal;and a plurality of optical detectors, each optical detector coupled to a corresponding one of the demux outputs, the optical detectors having a detector output.
  10. 10
    The satellite communication system of Claim 9, wherein the detector output is configured to output a digital data stream.
  11. 11
    The satellite communication system of Claim 9, wherein the detector output is configured to output an RF signal, the amplitude of which is proportional to the intensity of a signal coupled to the detector from the corresponding one of the demux outputs.
  12. 12
    A satellite communication system comprising:satellite comprising: an antenna having a plurality of antenna outputs;a plurality of frequency converters, each having a converter input coupled to a corresponding one of the antenna outputs and having a converter output;a beamformer having a plurality of beamformer inputs and beamformer outputs, each of the beamformer inputs coupled to a corresponding output of one of the plurality of frequency converters;and an optical transmitter having a plurality of radio frequency (RF) inputs, each coupled to a corresponding beamformer output and having an optical output, the optical output configured to output an optical signal having multiplexed optical channels modulated by signals coupled to the RF inputs;and a satellite access node (SAN) comprising: a steerable optical lens configured to receive an optical signal from the satellite;an optical demultiplexer having a demux input coupled to receive the optical signal from the optical lens and a plurality of demux outputs configured to output optical channels demultiplexed from the optical signal;and a plurality of optical detectors, each optical detector coupled to a corresponding one of the demux outputs, the optical detectors having a detector output.