Claims
- 1. A multi-directional antenna array comprising:
a plurality of antennas extending radially about a central axis, each antenna being configured to transceive electromagnetic signals; a transceiver in electrical communication with each antenna; and a processor connected to the transceiver and configured to dynamically select an antenna for transmitting a signal in a particular direction and dynamically allocating power to the selected antenna to manipulate the strength of a transmitted signal.
- 2. The antenna array as in claim 1, wherein the processor is further configured to dynamically select an antenna for receiving a signal from a particular direction.
- 3. The antenna array as in claim 1, wherein the antennas are helical antennas.
- 4. The antenna array as in claim 1, wherein the antennas are horn antennas.
- 5. The antenna array as in claim 1, wherein the transceiver comprises a multiplexor and a demultiplexor for associating a transmission channel for each antenna.
- 6. The antenna array as in claim 1, wherein the processor comprises a multiplexor and a demultiplexor for associating a transmission channel for each antenna.
- 7. A multi-directional antenna array comprising:
a plurality of conductive planar segments connected to each other to define a polygon; an antenna connected to each segment, each antenna configured to produce a circularly polarized electromagnetic signal; and a transceiver in electrical communication with each antenna.
- 8. The antenna array as in claim 7, wherein the antennas are helical antennas.
- 9. The antenna array as in claim 7, wherein the antennas extend substantially perpendicular to their respective segment.
- 10. The antenna array as in claim 7, wherein the transceiver is capable of selecting an antenna for sending an electromagnetic signal.
- 11. The antenna array as in claim 10, wherein the transceiver is capable of directing a certain amount of power through the selected antenna.
- 12. The antenna array as in claim 11, wherein the certain amount of power ranges between one milliwatt to one watt.
- 13. The antenna array as in claim 7, wherein the transceiver comprises a multiplexor and a demultiplexor for associating a transmission channel for each antenna.
- 14. The antenna array as in claim 7, further comprising a processor, the processor comprising a multiplexor and a demultiplexor for associating a transmission channel for each antenna.
- 15. The antenna array as in claim 7, further comprising a planar top connected along its perimeter to a top edge of each segment.
- 16. The antenna array as in claim 7, further comprising a planar bottom connected to a bottom edge of each segment.
- 17. The antenna array as in claim 7, wherein the antennas are made at least in part from one of copper, iron, aluminum, gold, and silver.
- 18. The antenna array as in claim 7, wherein the antennas are configured to send and receive wireless communication data at a rate of at least twenty Mega bits per second (Mbps).
- 19. The antenna array as in claim 7, wherein the antennas are configured to transmit electromagnetic signals having a frequency of at least 5.7 Giga Hertz (GHz).
- 20. The antenna array as in claim 7, wherein the antenna array comprises twelve antennas connected to twelve segments.
- 21. A system for providing a wireless high-speed communication network comprising:
a plurality of network nodes capable of communicating with each other according to a mesh topology; a plurality of multi-directional antenna arrays, wherein each antenna array couples to a respective node such that each node is capable of wireless communication with at least one other node; and a gateway configured to allow the plurality of nodes to communicate with external nodes.
- 22. The system as in claim 21, wherein the gateway is coupled to a multidirectional antenna array.
- 23. The system as in claim 21, wherein the gateway is coupled to a second communication network, the second communication network comprising external nodes.
- 24. The system as in claim 21, wherein the external nodes are in a global information network.
- 25. The system as in claim 21, wherein the plurality of nodes are capable of dynamically integrating an added node.
- 26. The system as in claim 21, wherein the plurality of nodes are capable of dynamically adapting to the removal of a node.
- 27. The system as in claim 21, wherein the plurality of nodes comprise:
a router electronically connected to the antenna array; and at least one communication device connected to the router.
- 28. The system as in claim 27, wherein the communication device comprises a computer.
- 29. The system as in claim 21, wherein the plurality of nodes further comprises a local area network connecting the router to the at least one communication device.
- 30. The system as in claim 21, wherein the router comprises a processor.
- 31. The system as in claim 21, wherein the router is configured to send and receive signals in a particular geographic direction.
- 32. The system as in claim 21, wherein each router further comprises a routing algorithm, the routing algorithm configured to establish a communication path between a source node and a destination node.
- 33. The system of claim 32, wherein the communication path is determined based on weighting factors associated with each node.
- 34. The system as in claim 21, wherein the plurality of nodes communicate with each other using a peer-to-peer architecture.
- 35. The system of claim 21, wherein each node comprises a network address.
- 36. The system as in claim 21, wherein each node comprises a clock and each antenna array comprises a receiver configured to allow the plurality of nodes to receive a synchronization signal and communicate using synchronized clocks.
- 37. The system as in claim 36, wherein the synchronization signal is generated by a global positioning system (GPS) transmitter.
- 38. The system as in claim 21, wherein each antenna array comprises a transceiver configured to send and receive electromagnetic signals.
- 39. The system as in claim 21, wherein each antenna array comprises,
a plurality of planar segments connected such that the planar segments define a polygon about a central axis, and wherein each segment comprises an exterior surface facing out from the central axis, and a plurality of helical antennas wherein each helical antenna is coupled to a corresponding exterior surface.
- 40. The system as in claim 39, wherein each antenna array comprises twelve planar segments.
- 41. The system as in claim 21, wherein each antenna array comprises a plurality of horn antennas connected about a central axis such that each horn antenna extends in a different direction about the central axis.
- 42. The system as in claim 41, wherein each antenna array comprises 12 horn antennas.
- 43. The system as in claim 21, wherein each antenna array is made substantially of metal.
- 44. The system as in claim 21, wherein each antenna array is configured to transmit and receive communication data at a rate of at least twenty Mega bits per second (Mbps).
- 45. The system as in claim 21, wherein each antenna array comprises a central axis and a plurality of antennas directed to send and receive signals in a plurality of directions about the central axis.
- 46. The system as in claim 45, wherein the node selects from the plurality of directions a direction for sending each signal.
- 47. The system as in claim 21, wherein a number of nodes comprise a network cell, each node comprising a transceiver configured to adjust an amount of power directed through one or more of the antennas to define a particular size of the network cell.
- 48. The system as in claim 21, wherein a number of nodes comprise a network cell, each node comprising a transceiver configured to adjust an amount of power directed through one or more of the antennas to define a particular shape of the network cell.
- 49. The system as in claim 21, wherein a number of nodes comprise a network cell, and wherein nodes within the network cell are configured to dynamically adjust a transmission frequency used within the network cell.
- 50. The system as in claim 21, wherein a number of nodes comprise a network cell, and wherein nodes within the network cell are configured to dynamically change a modulation protocol used within the network cell.
RELATED APPLICATIONS
[0001] The present application claims priority to U.S. Provisional Application Ser. No. 60/184,987, entitled “Dynamic Airwave Network,” filed Feb. 25, 2000, which is hereby incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60184987 |
Feb 2000 |
US |