USRE32905E

Satellite communications system and apparatus

Abstract

This record has no abstract on file.

USRE32905E, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Expired 3 August 2008, 18.1 years ago.

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

22 claims: 10 independent, 12 dependent

  1. 1
    An earth satellite communications system for transmitting data from a plurality of users through a repeating geostationary satellite to a plurality of receiving earth stations, comprising A central transmitting station receiving data from a plurality of users, said station including means for converting the format of said data into a form suitable for transmission to a satellite, means for spread spectrum processing the converted data, and means for transmitting the spread spectrum processed converted data to a repeating geostationary satellite, and A plurality of receiving earth stations, each of said receiving earth stations including .[.wide beamwidth, low gain.]. antenna means, said antenna means including a .Iadd.small, in the sense that a dish antenna with a diameter substantially less than 16 feet operating at 4 GHz in a system if which the orbital spacing of the geostationary satellites is 4 degrees is small, and consequently relatively wide beamwidth and concomitant low-gain .Iaddend.fixed directional antenna .[.having a beamwidth wider than the standard orbital spacing of geostationary satellites, whereby said antenna receives signals from more than one geostationary satellite,.]. .Iadd.having, at its operating frequency, a directional radiation pattern, in the sense that a 2 foot dish operating at 4 GHz has a directional radiation pattern, the beamwidth and gain of which pattern depends on the operating frequency and the antenna size, .Iaddend.and detection means coupled to said antenna means, said detection means including spread spectrum processing .[.means,.]. .Iadd.means .Iaddend.for recovering data sent to said receiving earth station via said repeating geostationary .[.satellite.]. .Iadd.satellite even if and when the low gain and wide beamwidth of the antenna, resulting from its small size, leads to the reception of signals from said repeating geostationary satellite along with interfering signals from at least one other geostationary satellite, said spread spectrum processing means having a processing gain sufficient to substantially suppress said interfering signal.Iaddend..
  2. 3
    The combination of claims 1 or 2 wherein said .[.antenna means includes an.]. antenna .[.having.]. .Iadd.has .Iaddend.a gain providing a signal level below the thermal noise floor when standard (nonspread spectrum) satellite modulation techniques are used.
  3. 5
    The combination of claims 1 or 4 wherein said spread spectrum processing means includes means for synchronizing said processing means to the received signals.
  4. 7
    The combination of claims 1 or 6 wherein said spectrum processing means in said central station includes means for processing data for particular receiving earth stations with a spreading code having a length commensurate with the sensitivity of the least sensitive station among said particular receiving earth stations.
  5. 8
    The combination of claims 1 or 6 wherein said means for transmitting transmits said data in a time division format.
  6. 10
    In a geostationary earth satellite communications system, wherein the signals relayed from a repeating geostationary satellite are power limited spread spectrum signals, a receiving earth station comprising .[.wide beamwidth, low gain.]. antenna means, said antenna means including a .Iadd.small, in the sense that a dish antenna with a diameter substantially less than 16 feet operating at 4 GHz in a system in which the orbital spacing of the geostationary satellites is 4 degrees is small, and consequently relatively wide beamwidth and concomitant low-gain .Iaddend.fixed directional antenna .[.having a beamwidth wider than the standard orbital spacing of geostationary satellites, whereby said antenna receives signals from more than one geostationary satellite,.]. .Iadd.having, at its operating frequency, a directional radiation pattern, in the sense that a 2 foot dish operating at 4 GHz has a directional radiation pattern, the beamwidth and gain of which pattern depends on the operating frequency and the antenna size, .Iaddend.and detection means coupled to said antenna means, said detection means including spread spectrum processing .[.means,.]. .Iadd.means .Iaddend.for recovering data sent to said receiving earth station via said repeating geostationary .[.satellite.]. .Iadd.satellite even if and when the low gain and wide beamwidth of the antenna, resulting from its small size, leads to the reception of signals from said repeating geostationary satellite along with interfering signals from at least one other geostationary satellite, said spread spectrum processing means having a processing gain sufficient to substantially suppress said interfering signals.Iaddend..
  7. 14
    The combination of claims 10 or 13 wherein said spread spectrum processing means includes means for synchronizing said processing means to the received signals.
  8. 15
    An earth satellite communications system wherein a plurality of stations transmit data through a repeating geostationary satellite and a terrestrial relay station to a plurality of receiving earth stations, the combination comprising a plurality of transmitting stations, each comprising means receiving data for transmission to a repeating geostationary satellite, means for spread spectrum processing said data, and means for transmitting said spread spectrum processed data to said repeating geostationary satellite, said transmitting means including .[.wide beamwidth, low gain.]. antenna means, .Iadd.said antenna means including a small, in the sense that a dish antenna with a diameter in the order of 4 feet opeerating at 6 GHz in a system in which the orbital spacing of the geostationary satellites is 4 degrees is small, and consequently relatively wide beamwidth and concomitant low-gain antenna, the beamwidth and gain of which pattern depends on the operating frequency and the antenna size, .Iaddend.and a terrestrial relay station, comprising antenna means, detection means coupled to said antenna means, said detection means including spread spectrum processing means for recovering data sent by said transmitting station, means for spread spectrum processing the recovered data, and means for transmitting the spread spectrum processed data to said repeating geostationary satellite, and a plurality of receiving earth stations, each of said receiving earth stations comprising .[.wide beamwidth, low gain.]. antenna means, said antenna means including a .Iadd.small, in the sense that a dish antenna with a diameter substantially less than 16 feet operating at 4 GHz in a system in which the orbital spacing of the geostationary satellites is 4 degrees is small, and consequently relatively wide beamwidth and concomitant low-gain .Iaddend.fixed directional antenna .[.having a beamwidth wider than the standard orbital spacing of geostationary satellites, whereby said antenna receives signals from more than one geostationary satellite,.]. .Iadd.having, at its operating frequency, a directional radiation pattern, in the sense that a 2 foot dish operating at 4 GHz has a directional radiation pattern, the beamwidth and gain of which pattern depends on the operating frequency and the antenna size, .Iaddend.and detection means coupled to said antenna means, said detection means including spread spectrum processing .[.means,.]. .Iadd.means .Iaddend.for recovering data sent to said receiving earth station via said repeating geostationary .[.satellite.]. .Iadd.satellite even if and when the low gain and wide beamwidth of the antenna, resulting from its small size, leads to the reception of signals from said repeating geostationary satellite along with interfering signals from at least one other geostationary satellite, said spread spectrum processing means having a processing gain sufficient to substantially suppress said interfering signals.Iaddend..
  9. 18
    The combination of claims 15 or 17 wherein said transmitting station transmitting means transmits in a code division multiplex format and said relay station transmitting means transmits in a time division multiplex format.
  10. 21
    The combination of claims 19 or 20 wherein sdaid means for spread spectrum processing in said relay station includes means for processing data for particulawr receiving earth stations with a spreading code unique to such stations. .Iadd.