CA2544567C

Systems and methods for inter-system sharing of satellite communications frequencies within a common footprint

Abstract

Two satellite communications systems can use the same frequency or frequencies in geographically overlapping footprints, without creating undue interference in a given system that is caused by the same frequency signal(s) that is/are used by the other system. In particular, an aggregate Effective Isotropic Radiated Power (EIRP) of the radioterminals and/or ancillary terrestrial components of a second satellite communications system in the common footprint is sufficiently low, and/or the receive antenna gain of a first satellite communications system is sufficiently low compared to the receive antenna gain of the second satellite communications system, so as to increase an aggregate receiver noise that is seen by the first satellite system receivers by an amount that does not substantially change a Quality of Service (QoS) of the first satellite communications system.

CA2544567C, drawing sheet 1
Sheet 1 of 6

Term

No projected expiry on record.

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

164 claims: 31 independent, 133 dependent

  1. 1
    CA 02544567 2012-06-15 What is claimed is:1. A satellite communications frequency sharing system comprising: a first satellite communications system that provides satellite communications over a first satellite frequency band in a first footprint via a first satellite;and a second satellite communications system that provides satellite communications with radioterminals over the first satellite frequency band in a second footprint that is a sub-area of the first footprint, via a second satellite, wherein a receive antenna gain of the second satellite is higher than a receive antenna gain of the first satellite;wherein an aggregate effective isotropic radiated power of the radioterminals and a receive antenna gain of the first satellite are sufficiently low so as to increase an aggregate noise that is seen by the first satellite communications system by less than about 3.5%.
  2. 9
    A satellite communications frequency sharing system comprising:a first satellite communications system that provides satellite communications over a first satellite frequency band in a first footprint via a first satellite;and a second satellite communications system that provides satellite communications with radioterminals over the first satellite frequency band in a second footprint that is a sub-area of the first footprint, via a second satellite, wherein a receive antenna gain of the second satellite is higher than a receive antenna gain of the first satellite;wherein the second satellite communications system also provides terrestrial communications between the radioterminals and at least one ancillary terrestrial component over the first satellite frequency band in the second footprint;and wherein an aggregate effective isotropic radiated power of the radioterminals and/or the at least one ancillary terrestrial component is sufficiently low so as to increase an aggregate noise that is seen by the first satellite CA 02544567 2012-06-15 communications system by less than about 6.75%.
  3. 16
    A satellite communications frequency sharing system comprising:a first satellite communications system that provides satellite communications over a first satellite frequency band in a first footprint via a first satellite;and CA 02544567 2012-06-15 a second satellite communications system that provides satellite communications with radioterminals over the first satellite frequency band in a second footprint that is a sub-area of the first footprint, via a second satellite, wherein a receive antenna gain of the second satellite is higher than a receive antenna gain of the first satellite;and wherein a receive antenna gain of the second satellite is at least about 20 dB higher than a receive antenna gain of the first satellite.
  4. 22
    A satellite communications frequency sharing system comprising:a plurality of first radioterminals that communicate with a first satellite communications system over a first satellite frequency band in a footprint at a first aggregate effective isotropic radiated power;and CA 02544567 2012-06-15 a plurality of second radioterminals that communicate with a second satellite communications system over the first satellite frequency band in the footprint at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power;wherein the second aggregate effective isotropic radiated power is sufficiently less than the first aggregate effective isotropic radiated power so as to increase an aggregate noise that is seen by the first satellite communications system by less than about 3.5%.
  5. 28
    A satellite communications frequency sharing system comprising:a plurality of first radioterminals that communicate with a first satellite communications system over a first satellite frequency band in a footprint at a first aggregate effective isotropic radiated power;and a plurality of second radioterminals that communicate with a second satellite communications system over the first satellite frequency band in the footprint at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power;wherein at least some of the second radioterminals also communicate terrestrially with at least one ancillary terrestrial component over the first satellite frequency band in the footprint;and wherein the second aggregate effective isotropic radiated power and/or an aggregate effective isotropic radiated power of the at least one ancillary terrestrial component and/or an aggregate effective isotropic radiated power of the at least some of the second radioterminals that also communicate terrestrially with the at least one ancillary terrestrial component is sufficiently less than the first aggregate effective isotropic radiated power so as to increase an aggregate noise that is seen by the first satellite radioterminal communications system by less than about 6.75%.
  6. 36
    A satellite communications frequency sharing method for a first satellite communications system that provides satellite communications over a first satellite frequency band in a first footprint via a first satellite, the method comprising:communicating between radioterminals and a second satellite communications system over the first satellite frequency band in a second footprint that is a sub-area of the first footprint via a second satellite, wherein a receive antenna gain of the second satellite is higher than a receive antenna gain of the first satellite;wherein an aggregate effective isotropic radiated power of the radioterminals and a receive antenna gain of the first satellite are sufficiently low so as to increase an aggregate noise that is seen by the first satellite communications system by less than about 3.5%.
  7. 40
    A satellite communications frequency sharing method according to CA 02544567 2012-06-15 any one of claims 36 to 38 wherein the second footprint is spaced apart from waterways by at least twice a width of the second footprint.
  8. 43
    A satellite communications frequency sharing method for a first satellite communications system that provides satellite communications over a first satellite frequency band in a first footprint via a first satellite, the method comprising:communicating between radioterminals and a second satellite communications system over the first satellite frequency band in a second footprint that is a sub-area of the first footprint via a second satellite, wherein a receive antenna gain of the second satellite is higher than a receive antenna gain of the first satellite;and communicating terrestrially between at least some of the radioterminals and at least one ancillary terrestrial component over the first satellite frequency band in the second footprint;wherein an aggregate effective isotropic radiated power of the radioterminals and/or the at least one ancillary terrestrial component is sufficiently low so as to increase an aggregate noise that is seen by the first satellite communications system by less than about 6.75%.
  9. 44
    A satellite communications frequency sharing method according to CA 02544567 2012-06-15 claim 43 wherein the aggregate effective isotropic radiated power of the radioterminals and/or the at least one ancillary terrestrial component is sufficiently low so as to increase the aggregate noise that is seen by the first satellite communications system by an amount that does not substantially change a quality of service of the first satellite communications system.
  10. 49
    A satellite communications frequency sharing method for a first satellite communications system that provides satellite communications over a first satellite frequency band in a first footprint via a first satellite, the method comprising:communicating between radioterminals and a second satellite communications system over the first satellite frequency band in a second footprint that is a sub-area of the first footprint via a second satellite, wherein a receive CA 02544567 2012-06-15 antenna gain of the second satellite is higher than a receive antenna gain of the first satellite;wherein a receive antenna gain of the second satellite is at least about 20 dB higher than a receive antenna gain of the first satellite.
  11. 54
    A satellite communications frequency sharing method for a plurality of first radioterminals that communicate with a first satellite communications system over a first satellite frequency band in a footprint at a first aggregate effective isotropic radiated power, the method comprising:communicating between a plurality of second radioterminals and a second satellite communications system over the first satellite frequency band in the footprint at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power;CA 02544567 2012-06-15 wherein the second aggregate effective isotropic radiated power is sufficiently less than the first aggregate effective isotropic radiated power so as to increase an aggregate noise that is seen by the first satellite communications system by less than about 3.5%.
  12. 58
    A satellite communications frequency sharing method for a plurality of first radioterminals that communicate with a first satellite communications system over a first satellite frequency band in a footprint at a first aggregate effective isotropic radiated power, the method comprising:communicating between a plurality of second radioterminals and a second satellite communications system over the first satellite frequency band in the footprint at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power;and communicating terrestrially between at least some of the second radioterminals and at least one ancillary terrestrial component over the first satellite frequency band in the footprint;CA 02544567 2012-06-15 wherein the second aggregate effective isotropic radiated power and/or an aggregate effective isotropic radiated power of the at least one ancillary terrestrial component is sufficiently less than the first aggregate effective isotropic radiated power so as to increase an aggregate noise that is seen by the first satellite communications system by less than about 6.75%.
  13. 62
    A frequency sharing system comprising:a first satellite that communicates with first radioterminals using frequencies of a frequency band in a first service region;and a second satellite that communicates with second radioterminals using frequencies of the frequency band in a second service region that is contained within the first service region, wherein an antenna gain of the second satellite is greater than an antenna gain of the first satellite, the first satellite communicates with the first radioterminals by transmitting and receiving substantially Right Hand Circularly Polarized (RHCP) electro-magnetic energy, the second satellite communicates with CA 02544567 2012-06-15 the second radioterminals by transmitting substantially Left Hand Circularly Polarized (LHCP) electro-magnetic energy and at least one of the second radioterminals communicates with the second satellite by transmitting substantially linearly polarized electro-magnetic energy.
  14. 87
    88. A frequency sharing method for a first satellite that communicates with first radioterminals using frequencies of a frequency band in a first service region, the method comprising:communicating between second radioterminals and a second satellite using frequencies of the frequency band in a second service region that is contained within the first service region, wherein an antenna gain of the second satellite is greater than an antenna gain of the first satellite, the first satellite communicates with the first radioterminals by transmitting and receiving substantially Right Hand Circularly Polarized (RHCP) electro-magnetic energy, the second satellite communicates with the second radioterminals by transmitting substantially Left Hand Circularly Polarized (LHCP) electro-magnetic energy and at least one of the second radioterminals communicates with the second satellite by transmitting substantially linearly polarized electro-magnetic energy.
  15. 96
    97. A frequency sharing method according to any one of claims 88 to CA 02544567 2012-06-15 95 wherein the second service region is spaced apart from a waterway by at least twice a width of a spot beam of the second satellite.
  16. 99
    100. A frequency sharing method for a plurality of first radioterminals that communicate with a first satellite using frequencies of a frequency band in a service region at a first aggregate effective isotropic radiated power, the method comprising:communicating between a plurality of second radioterminals and a second satellite using frequencies of the frequency band in the service region at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power, wherein an antenna gain of the second satellite is greater than an antenna gain of the first satellite, the first satellite communicates with the first radioterminals by transmitting and receiving substantially Right Hand Circularly Polarized (RHCP) electro-magnetic energy, the second satellite communicates with the second radioterminals by transmitting substantially Left Hand Circularly Polarized (LHCP) electro-magnetic energy and at least one of the second radioterminals communicates with the second satellite by transmitting substantially linearly polarized electro-magnetic energy.
  17. 107
    108. A frequency sharing system comprising:a first satellite that communicates with first radioterminals in a first service region over a global beam using frequencies of a frequency band;and CA 02544567 2012-06-15 a second satellite that communicates with second radioterminals in a second service region that is contained within the first service region over one or more spot beams using frequencies of the frequency band, wherein a gain of the one or more spot beams is at least 20 dB greater than a gain of the global beam.
  18. 109
    110. A frequency sharing system comprising:a plurality of first radioterminals that communicate with a first satellite over a global beam at a first aggregate effective isotropic radiated power using frequencies of a frequency band in a service region;and a plurality of second radioterminals that communicate with a second satellite over one or more spot beams at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power using frequencies of the frequency band in the service region, wherein a gain of the one or more spot beams is at least 20 dB greater than a gain of the global beam.
  19. 111
    112. A frequency sharing method for a first satellite that communicates with first radioterminals over a global beam using frequencies of a frequency band in a first service region, the method comprising:communicating between second radioterminals and a second satellite over one or more spot beams using frequencies of the frequency band in a second CA 02544567 2012-06-15 service region that is contained within the first service region, wherein a gain of the one or more spot beams is at least 20 dB greater than a gain of the global beam.
  20. 113
    114. A frequency sharing method for a plurality of first radioterminals that communicate with a first satellite over a global beam using frequencies of a frequency band in a service region at a first aggregate effective isotropic radiated power, the method comprising:communicating between a plurality of second radioterminals and a second satellite over one or more spot beams using frequencies of the frequency band in the service region at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power, wherein a gain of the one or more spot beams is at least 20 dB greater than a gain of the global beam.
  21. 115
    116. A frequency sharing system comprising:a first satellite that communicates with first radioterminals using frequencies of a frequency band in a first service region;and a second satellite that communicates with second radioterminals using frequencies of the frequency band in a second service region that is contained within the first service region, wherein an antenna gain of the second satellite is greater than an antenna gain of the first satellite, the first satellite communicates with the first CA 02544567 2012-06-15 radioterminals by transmitting and receiving electro-magnetic energy of a first polarization, the second satellite communicates with the second radioterminals by transmitting electro-magnetic energy of a second polarization and at least one of the second radioterminals communicates with the second satellite by transmitting electro-magnetic energy of a third polarization, wherein the first, second and third polarizations are different polarizations from one another.
  22. 127
    128. A frequency sharing system according any one of claims 116 to 127 wherein at least one radioterminal of the second radioterminals communicates with the second satellite using a Code Division Multiple Access (CDMA) waveform and/or any other waveform producing an interference at the first satellite that is substantially similar to interference produced at the first satellite by the CDMA waveform.
  23. 130
    131. A frequency sharing system comprising:a plurality of first radioterminals that communicate with a first satellite at a first aggregate effective isotropic radiated power using frequencies of a frequency band in a service region;and a plurality of second radioterminals that communicate with a second satellite at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power using frequencies of the frequency band in the service region, wherein an antenna gain of the second satellite is greater than an antenna gain of the first satellite, the first satellite communicates with the first radioterminals by transmitting and receiving electro-magnetic energy of a first polarization, the second satellite communicates with the second radioterminals by transmitting electro-magnetic energy of a second polarization and at least one of the second radioterminals communicates with the second satellite by transmitting electro-magnetic energy of a third polarization, wherein the first, second and third polarizations are different polarizations from one another.
  24. 136
    137. A frequency sharing system according to any one of claims 131 to 136 wherein a footprint of the second satellite in a footprint of the first satellite is spaced apart from a waterway.
  25. 137
    138. A frequency sharing system according to any one of claims 131 to 137 wherein a footprint of the second satellite in a footprint of the first satellite is spaced apart from a waterway by at least twice a width of a spot beam of the second satellite.
  26. 141
    142. A frequency sharing method for a first satellite that communicates with first radioterminals using frequencies of a frequency band in a first service region, the method comprising:communicating between second radioterminals and a second satellite using frequencies of the frequency band in a second service region that is contained within the first service region, wherein an antenna gain of the second satellite is greater than an antenna gain of the first satellite, the first satellite communicates with the first radioterminals by transmitting and receiving electro-magnetic energy of a first polarization, the second satellite communicates with the second radioterminals by transmitting electro-magnetic energy of a second polarization and at least one of the second radioterminals communicates with the second satellite by transmitting electro-magnetic energy of a third polarization, wherein the first, second and third polarizations are different polarizations from one another.
  27. 153
    154. A frequency sharing method for a plurality of first radioterminals that communicate with a first satellite using frequencies of a frequency band in a service region at a first aggregate effective isotropic radiated power, the method comprising:communicating between a plurality of second radioterminals and a second satellite using frequencies of the frequency band in the service region at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power, wherein an antenna gain of the second satellite is greater than an antenna gain of the first satellite, the first satellite communicates with the first radioterminals by transmitting and receiving electro-magnetic energy of a first polarization, the second satellite communicates with the second radioterminals by transmitting electro-magnetic energy of a second polarization and at least one of CA 02544567 2012-06-15 the second radioterminals communicates with the second satellite by transmitting electro-magnetic energy of a third polarization, wherein the first, second and third polarizations are different polarizations from one another.
  28. 161
    162. A frequency sharing system comprising:a first satellite that communicates with first radioterminals in a first service region over a global beam using frequencies of a frequency band;and a second satellite that communicates with second radioterminals in a second service region that is contained within the first service region over one or more spot beams using frequencies of the frequency band;wherein at least some of the first radioterminals communicate with the first satellite by radiating electromagnetic energy of a first polarization and at least some of the second radioterminals communicate with the second satellite by radiating electromagnetic energy of a second polarization, wherein the first and second polarizations are different polarizations from one another.
  29. 162
    163. A frequency sharing system comprising:a plurality of first radioterminals that communicate with a first satellite over a global beam at a first aggregate effective isotropic radiated power using frequencies of a frequency band in a service region;and a plurality of second radioterminals that communicate with a second satellite over one or more spot beams at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power using frequencies of the frequency band in the service region;wherein at least some of the plurality of first radioterminals communicate with the first satellite by radiating electromagnetic energy of a first polarization and at least some of the plurality of second radioterminals communicate with the second satellite by radiating electromagnetic energy of a second polarization, wherein the first and second polarizations are different polarizations from one another. CA 02544567 2013-06-04
  30. 163
    164. A frequency sharing method for a first satellite that communicates with first radioterminals over a global beam using frequencies of a frequency band in a first service region, the method comprising:communicating between second radioterminals and a second satellite over one or more spot beams using frequencies of the frequency band in a second service region that is contained within the first service region;wherein at least some of the first radioterminals communicate with the first satellite by radiating electromagnetic energy of a first polarization and at least some of the second radioterminals communicate with the second satellite by radiating electromagnetic energy of a second polarization, wherein the first and second polarizations are different polarizations from one another.
  31. 164
    165. A frequency sharing method for a plurality of first radioterminals that communicate with a first satellite over a global beam using frequencies of a frequency band in a service region at a first aggregate effective isotropic radiated power, the method comprising:communicating between a plurality of second radioterminals and a second satellite over one or more spot beams using frequencies of the frequency band in the service region at a second aggregate effective isotropic radiated power that is less than the first aggregate effective isotropic radiated power;wherein at least some of the first radioterminals communicate with the first satellite by radiating electromagnetic energy of a first polarization and at least some of the second radioterminals communicate with the second satellite by radiating electromagnetic energy of a second polarization, wherein the first and second polarizations are different polarizations from one another.
Independent claims31