Claims
- 1. A distributed antenna device comprising:
a plurality of transmit antenna elements; a plurality of receive antenna elements; and a plurality of power amplifiers, a power amplifier being operatively coupled with each of said transmit antenna elements and mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; and at least one low noise amplifier for receiving and amplifying signals from at least one of said receive antenna elements; each said power amplifier comprising a relatively low power, relatively low cost per watt linear power amplifier; and said device being configured such that said transmit antenna elements and said power amplifiers coupled thereto, and said receive antenna elements and said at least one low noise amplifier coupled thereto are continuously active and capable of simultaneous respective transmit and receive operations; wherein said transmit antenna elements are spaced apart to achieve a given beam pattern and no more than a given amount of mutual coupling, and wherein said receive antenna elements are spaced apart to achieve a given beam pattern and no more than a given amount of mutual coupling.
- 2. The antenna device of claim 1 wherein each said power amplifier chip has an output power not greater than about one watt.
- 3. The antenna device of claim 1 and further including a plurality of low noise amplifiers, each operatively coupled with one of said receive antenna elements.
- 4. The antenna device of claim 1 wherein each antenna element is a dipole.
- 5. The antenna device of claim 1 wherein each antenna element is a monopole.
- 6. The antenna device of claim 1 wherein each antenna element is a microstrip/patch antenna element.
- 7. The antenna device of claim 1 wherein a single low noise amplifier is operatively coupled to a summed output of all of said receive antenna elements.
- 8. The antenna device of claim 1 and further including a low power frequency diplexer operatively coupled with all of said power amplifiers for coupling a single RF cable to all of said transmit and receive antenna elements.
- 9. The antenna device of claim 1 wherein said receive antenna elements are in a first linear array and said transmit antenna elements are in a second linear array spaced apart from and parallel to said first linear array.
- 10. A distributed antenna device comprising:
a plurality of transmit antenna elements, a plurality of receive antenna elements; and a plurality of power amplifiers, a power amplifier being operatively coupled with each of said transmit antenna elements and mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; at least one low noise amplifier for receiving and amplifying signals from at least one of said receive antenna elements; each said power amplifier comprising a relatively low power, relatively low cost per watt linear power amplifier; said device being configured such that said transmit antenna elements and said power amplifiers coupled thereto, and said receive antenna elements and said at least one low noise amplifier coupled thereto are continuously active and capable of simultaneous respective transmit and receive operations; wherein said receive antenna elements are in a first linear array and said transmit antenna elements are in a second linear array spaced apart from and parallel to said first linear array; and further including an electrically conductive center strip element positioned between the first and second linear arrays.
- 11. The antenna device of claim 1 wherein said receive antenna elements are coupled to one of a series and a parallel corporate feed structure.
- 12. The antenna device of claim 11 wherein said transmit antenna elements are coupled to a one of a series and a parallel corporate feed structure.
- 13. The antenna device of claim 1 wherein a single transmit RF cable is coupled to all of said power amplifiers to carry signals to be transmitted to said antenna device and a single receive RF cable is coupled to said at least one low noise amplifier to carry received signals away from said antenna device.
- 14. The antenna device of claim 10 wherein said receive antenna elements, said transmit antenna elements and said center strip element are all mounted to a common backplane.
- 15. The antenna device of claim 14 wherein all of said power amplifiers are also mounted to said backplane.
- 16. A distributed antenna device comprising:
a plurality of transmit antenna elements; a plurality of receive antenna elements; and a plurality of power amplifiers, a power amplifier being operatively coupled with each of said transmit antenna elements and mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; and at least one low noise amplifier for receiving and amplifying signals from at least one of said receive antenna elements; each said power amplifier comprising a relatively low power, relatively low cost per watt linear power amplifier; and said device being configured such that said transmit antenna elements and said power amplifiers coupled thereto, and said receive antenna elements and said at least one low noise amplifier coupled thereto are continuously active and capable of simultaneous respective transmit and receive operations; wherein said transmit antenna elements and said receive antenna elements are arranged in a single linear array in alternating order.
- 17. A distributed antenna device comprising:
a plurality of transmit antenna elements; a plurality of receive antenna elements; and a plurality of power amplifiers, a power amplifier being operatively coupled with each of said transmit antenna elements and mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; and at least one low noise amplifier for receiving and amplifying signals from at least one of said receive antenna elements; each said power amplifier comprising a relatively low power, relatively low cost per watt linear power amplifier; and said device being configured such that said transmit antenna elements and said power amplifiers coupled thereto, and said receive antenna elements and said at least one low noise amplifier coupled thereto are continuously active and capable of simultaneous respective transmit and receive operations; wherein said transmit antenna elements and said receive antenna elements comprise separate arrays of antenna elements and wherein said transmit antenna elements are polarized in one polarization and the receive antenna elements are polarized orthogonally to the polarization of said transmit antenna elements.
- 18. The antenna device of claim 1 and further including a transmit corporate feed structure operatively coupled with said transmit antenna elements and a receive corporate feed structure operatively coupled with said receive antenna elements, and wherein one or both of said corporate feed structures are adjusted to cause the transmit beam pattern and receive beam pattern to be substantially similar.
- 19. The distributed antenna device of claim 16 wherein said transmit antenna elements are polarized in one polarization and the receive antenna elements are polarized orthogonally to the polarization of said transmit antenna elements.
- 20. The antenna device of claim 16 wherein said transmit antenna elements are coupled to a one of a series and a parallel corporate feed structure and said receive antenna elements are coupled to a one of a series and a parallel corporate feed structures.
- 21. A distributed antenna device comprising:
a plurality of transmit antenna elements; a plurality of receive antenna elements; and a plurality of power amplifiers, a power amplifier being operatively coupled with each of said transmit antenna elements and mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; and at least one low noise amplifier for receiving and amplifying signals from at least one of said receive antenna elements; each said power amplifier comprising a relatively low power, relatively low cost per watt linear power amplifier; and said device being configured such that said transmit antenna elements and said power amplifiers coupled thereto, and said receive antenna elements and said at least one low noise amplifier coupled thereto are continuously active and capable of simultaneous respective transmit and receive operations; wherein a single array of patch antenna elements functions as both said transmit antenna elements and said receive antenna elements, and further including a transmit feed stripline and a receive feed stripline coupled to each of said patch antenna elements, said transmit feed stripline and said receive feed stripline being oriented orthogonally to each other at least in a region where they are coupled with each said patch element.
- 22. A method of operating a distributed antenna comprising:
arranging a plurality of transmit antenna elements in an array; arranging a plurality of receive antenna elements in an array; coupling a power amplifier with each of said transmit antenna elements mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; providing at least one low noise amplifier built into said distributed antenna for receiving and amplifying signals from at least one of said receive antenna elements; simultaneously transmitting from said transmit antenna elements and receiving from said receive antenna elements; and spacing said transmit antenna elements apart to achieve a given beam pattern and no more than a given amount of mutual coupling, and spacing said receive antenna elements apart to achieve a given beam pattern and no more than a given amount of mutual coupling.
- 23. A method of operating a distributed antenna comprising:
arranging a plurality of transmit antenna elements in an array; arranging a plurality of receive antenna elements in an array; coupling a power amplifier with each of said transmit antenna elements mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; providing at least one low noise amplifier built into said distributed antenna for receiving and amplifying signals from at least one of said receive antenna elements; simultaneously transmitting from said transmit antenna elements and receiving from said receive antenna elements; arranging said receive antenna elements in a first linear array and arranging said transmit antenna elements in a second linear array spaced apart from and parallel to said first linear array; and positioning an electrically conductive center strip element between the first and second linear arrays.
- 24. A method of operating a distributed antenna comprising:
arranging a plurality of transmit antenna elements in an array; arranging a plurality of receive antenna elements in an array; coupling a power amplifier with each of said transmit antenna elements mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; providing at least one low noise amplifier built into said distributed antenna for receiving and amplifying signals from at least one of said receive antenna elements; simultaneously transmitting from said transmit antenna elements and receiving from said receive antenna elements; and further including arranging said transmit antenna elements and said receive antenna elements in a single linear array in alternating order.
- 25. A method of operating a distributed antenna comprising:
arranging a plurality of transmit antenna elements in an array; arranging a plurality of receive antenna elements in an array; coupling a power amplifier with each of said transmit antenna elements mounted closely adjacent to the associated transmit antenna element, such that no appreciable power loss occurs between the power amplifier and the associated antenna element; providing at least one low noise amplifier built into said distributed antenna for receiving and amplifying signals from at least one of said receive antenna elements; simultaneously transmitting from said transmit antenna elements and receiving from said receive antenna elements; and and further including polarizing said transmit antenna elements in one polarization and polarizing the receive antenna elements orthogonally to the polarization of said transmit antenna elements.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This is a continuation-in-part of prior U.S. patent application Ser. No. 09/422,418, filed Oct. 21, 1999, and entitled “Transmit/Receive Distributed Antenna Systems” which is a continuation-in-part of U.S. patent application Ser. No. 09/299,850, filed Apr. 26, 1999, and entitled “Antenna Structure and Installation.”
Continuation in Parts (2)
|
Number |
Date |
Country |
Parent |
09422418 |
Oct 1999 |
US |
Child |
09846790 |
May 2001 |
US |
Parent |
09299850 |
Apr 1999 |
US |
Child |
09422418 |
Oct 1999 |
US |