Claims
- 1. A wireless, telecommunications network system comprising:
a plurality of telecommunications nodes, said nodes being located in a sub-orbital plane at about 12 to 35 miles above the earth, means for maintaining said nodes in preselected geographic locations in the sub-orbital plane, each of said nodes comprising means for sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel between said node in the sub-orbital plane and a ground communication device, said radio telecommunications signals being modulated by broadband code division multiple access spread spectrum technology, said means for sending and receiving said radio telecommunications signals further including a plurality of antennae that are operative to receive relatively weak telecommunications signals from said ground communication device, means for decoding the telecommunications signals received by each of said antennae so that said node can identify said ground communication device, and said antennae and said decoding means being operative to increase the sensitivity of said node so that it can detect and receive relatively weak telecommunications signals, so that maximum utilization of a spectrum is made available for use by said telecommunications signals without interference.
- 2. A system as defined in claim 1 wherein
said code division multiple access spread spectrum technology is direct sequence.
- 3. A system as defined in claim 1 wherein
said broadcast telecommunications channel has a frequency band width that is greater than about eight MHz.
- 4. A wireless, telecommunications network system comprising:
a plurality of telecommunications nodes, said nodes being located in a sub-orbital plane at about 12 to 35 miles above the earth, means for maintaining said nodes in preselected geographic locations in the sub-orbital plane, each of said nodes comprising means for sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel between said node in the sub-orbital plane and a ground communication device, said radio telecommunications signals being modulated by broadband code division multiple access spread spectrum technology, said means for sending and receiving said radio telecommunications signals further including a plurality of antennae that are operative to receive relatively weak telecommunications signals from said ground communication device, means for decoding the telecommunications signals received by each of said antennae so that said node can identify said ground communication device, said antennae and said decoding means being operative to increase the sensitivity of said node so that it can detect and receive relatively weak telecommunications signals, so that maximum utilization of a spectrum is made available for use by said telecommunications signals without interference, wherein said wireless telecommunications channel has a frequency bandwidth that is greater than about eight MHZ.
- 5. A system as defined in claim 1 wherein
each of said nodes is stationary over its own point on the earth.
- 6. A system as defined in claim 1 wherein
said means for sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel comprises at least one transmitter and receiver, and said transmitter and receiver carry a plurality of duplex telecommunications channels.
- 7. A system as defined in claim 6 wherein said transmitter is low powered and light weight.
- 8. A system as defined in claim 1 including
a terrestrial based telecommunications network, and means for connecting said wireless, telecommunications network system to said terrestrial based telecommunications network.
- 9. A system as defined in claim 8 wherein
said means for connecting said wireless, telecommunications network system to said terrestrial based telecommunications network includes switches.
- 10. A system as defined in claim 9 wherein
said switches are digital.
- 11. A system as defined in claim 9 wherein
said switches are analog.
- 12. A system as defined in claim 1 wherein
said nodes are supported by balloons.
- 13. A system as defined in claim 1 wherein
said wireless telecommunication channels are the same as those allocated for terrestrial communications.
- 14. A system as defined in claim 1 wherein
said means for sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel comprises
at least one transmitter and receiver and said transmitter and receiver carry a plurality of simplex telecommunications channels.
- 15. A system as defined in claim 14 wherein
said transmitter is low powered and light weight.
- 16. A system as defined in claim 1 wherein
said means for sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel comprises at least one transmitter and receiver, and said transmitter and receiver carry a plurality of half duplex telecommunications channels.
- 17. A system as defined in claim 16 wherein said transmitter is low powered and light weight.
- 18. A system as defined in claim 1 wherein
said wireless telecommunication channels are the same as those allocated for orbital telecommunications.
- 19. A system as defined in claim 1 wherein
said wireless telecommunication channels are exclusively used by said telecommunications system.
- 20. A method for making wireless telecommunications comprising the steps of:
providing a plurality of telecommunications nodes, said nodes defining a network, locating said nodes in a sub-orbital plane at about 12 to 35 miles above the earth and maintaining said nodes in preselected geographic locations in the suborbital plane, providing each of said nodes with means for sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel between said node in the suborbital plane and a ground communication device, providing each of said nodes with a plurality of antennae that are operative to receive relatively weak digital, radio telecommunications signals from said ground communication device, modulating said telecommunications signals by broadband code division multiple access spread spectrum technology, decoding said telecommunications signals received by each of said antennae so that said node can identify said ground communication device, and said antennae and said decoding means being operative to increase the sensitivity of said nodes so that they can detect and receive said relatively weak telecommunications signals, so that maximum utilization of a spectrum is made available for use by said telecommunications signals without interference.
- 21. A method as defined in claim 20 wherein
said code division multiple access spread spectrum technology is modified by direct sequence.
- 22. A method as defined in claim 20 wherein
said code division multiple access spread spectrum technology is modified by frequency hopping.
- 23. A method for making wireless telecommunications comprising the steps of:
providing a plurality of telecommunications nodes, said nodes defining a network, locating said nodes in a sub-orbital plane at about 12 to 35 miles above the earth and maintaining said nodes in preselected geographic locations in the suborbital plane, providing each of said nodes with means for sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel between said node in the suborbital plane and a ground communication device, providing each of said nodes with a plurality of antennae that are operative to receive relatively weak digital, radio telecommunications signals from said ground communication device, modulating said telecommunications signals by broadband code division multiple access spread spectrum technology, decoding said telecommunications signals received by each of said antennae so that said node can identify said ground communication device, said antennae and said decoding means being operative to increase the sensitivity of said nodes so that they can detect and receive said relatively weak telecommunications signals, so that maximum utilization of a spectrum is made available for use by said telecommunications signals without interference, wherein said wireless telecommunications channel has a frequency bandwidth that is greater than about eight MHZ.
- 24. A method as defined in claim 20 wherein
each of said nodes is stationary over its own point on the earth.
- 25. A method as defined in claim 20 wherein
said step of sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel comprises the step of providing a plurality of transmitters and receivers, and each of said transmitters carrying a plurality of duplex telecommunications channels.
- 26. A method as defined in claim 25 wherein
said transmitters are low powered and light weight.
- 27. A method as defined in claim 20 including the steps of
providing a terrestrial based telecommunications network, and connecting said wireless, telecommunications network system to said terrestrial based telecommunications network.
- 28. A method as defined in claim 27 including the step of
providing switches for connecting said wireless, telecommunications network system to said terrestrial based telecommunications network.
- 29. A method as defined in claim 28 wherein
said switches are digital.
- 30. A method as defined in claim 28 wherein
said switches are analog.
- 31. A method as defined in claim 20 including the step of
supporting said nodes by balloons.
- 32. A method as defined in claim 20 wherein
said wireless telecommunication channels are the same as those allocated for terrestrial telecommunications.
- 33. A method as defined in claim 20 wherein
said step of sending and receiving broadband, digital radio telecommunications signals over a wireless telecommunications channel comprises
the step of providing at least one transmitter and one receiver, and said transmitter and receiver carry a plurality of simplex telecommunications channels.
- 34. A method as defined in claim 33 wherein
said transmitter is low powered and light weight.
- 35. A method as defined in claim 20 wherein
said step of sending and receiving broadband, digital telecommunications signals over a wireless telecommunications channel comprises the step of providing at least one transmitter and one receiver, and said transmitter and receiver carry a plurality of half duplex telecommunications channels.
- 36. A method as defined in claim 35 wherein
said transmitter is low powered and light weight.
- 37. A method as defined in claim 20 wherein
said wireless telecommunication channels are the same as those allocated for orbital telecommunications.
- 38. A method as defined in claim 20 wherein
said wireless telecommunication channels are exclusively used by said telecommunications system.
RELATED PATENT APPLICATIONS
[0001] This patent application claims under 35 U.S.C § 120 the benefit of the filing date of U.S. patent application Ser. No. 08/488,213, filed Jun. 7, 1995, which in turn claims under 35 U.S.C. § 120 the benefit of the filing date of U.S. patent application Ser. No. 08/100,037, filed Jul. 30, 1993.
Continuations (2)
|
Number |
Date |
Country |
Parent |
10214948 |
Aug 2002 |
US |
Child |
10307116 |
Nov 2002 |
US |
Parent |
09097103 |
Jun 1998 |
US |
Child |
10214948 |
Aug 2002 |
US |