IP Library Granted Patent US 11,005,177
Granted Patent B2
US 11,005,177 · App. 16/869,615 · Granted May 11, 2021

Wireless telecommunication antenna mount and control system and methods of operating the same

Inventors: Arthur P. Clifford (Gloucester, MA); Stephen J. Holmes (Revere, MA)
Assignee: Radiarc Technologies, LLC
H01Q3/005H01Q1/246H01Q3/08
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Quick Facts
Patent No.
US 11,005,177
App. No.
16/869,615
Granted
May 11, 2021
Kind
B2
Abstract

A remotely controllable antenna mount for use with a wireless telecommunication antenna provides mechanical azimuth and tilt adjustment using AISG compatible motor control units and AISG control and monitoring systems to remotely adjust the physical orientation of the antenna. The mount control units are serially interconnected with AISG antenna control units which adjust electronic tilt mechanisms within the antenna itself. An AISG compatible mount azimuth control unit drives rotatable movement of the antenna through a range of azimuth angle positions. The antenna mount further includes a mechanical downtilt assembly interconnected between the antenna interface and the antenna. An AISG compatible mount tilt control unit drives linear movement of an actuator assembly and corresponding pivoting of the antenna through a range of tilt angle positions.

Claims (44)

1. A method of selectively adjusting a service coverage area of a telecommunication antenna site comprising the steps of:

providing a plurality of telecommunications antennas at an antenna site, each antenna having at least one AISG antenna control unit (ACU) controlling an internal electrical downtilt of said antenna, each ACU having a male bidirectional AISG port and a female bidirectional AISG port, said ACU being controllable to drive movement of an internal antenna backplane of said antenna through a range of electrical downtilt positions;

providing a plurality of an antenna mounts, each corresponding to a respective antenna, each antenna mount comprising:

a structure interface mounted to an installation structure;

an antenna interface mounted to said antenna, said antenna interface including an antenna mast having upper and lower pivots being rotatably connected to said structure interface through a pivot having a vertical axis and being rotatably movable about a vertical axis through a range of azimuth angle positions;

a mount azimuth control unit (MACU) having a motor mechanically interconnected with said structure interface and said antenna interface, said MACU including an AISG compatible motor controller, a male bidirectional AISG port and a female bidirectional AISG port, said motor being controllable to drive rotatable movement of said antenna through said range of azimuth angle positions,

a mechanical downtilt assembly interconnected between said antenna mast and an upper pivot on said antenna; and

a mount tilt control unit (MTCU) mechanically interconnected with said downtilt assembly, said MTCU including an AISG compatible motor controller, a male bidirectional AISG port and a female bidirectional AISG port, said MTCU being controllable to drive movement of said antenna through said range of downtilt positions,

providing an ASIG compatible controller;

serially interconnecting said ACU, said MACU and said MTCU of each of said plurality of antennas through said controller;

selectively controlling a plurality of said MACU and said MTCU through said controller to selectively mechanically adjust physical orientations of said antennas to adjust said coverage area.

2. The method of claim 1 further comprising the steps of selectively controlling each of said MACU and said MTCU through said controller to selectively mechanically adjust a physical azimuth and downtilt orientation of said antenna to adjust said coverage area.

3. The method of claim 2 further comprising the steps of selectively controlling said ACU through said controller to selectively electrically adjust an electrical downtilt of said antenna to adjust said coverage area.

4. The method of claim 1 further comprising the steps of selectively controlling said ACU through said controller to selectively electrically adjust an electrical downtilt of said antenna to adjust said coverage area.

5. The method of claim 1 wherein said controller comprises a control network interface (CNI).

6. The method of claim 1 wherein said controller comprises a portable controller.

7. A method of selectively adjusting a service coverage area of a telecommunication antenna site comprising the steps of:

providing a plurality of telecommunications antennas at an antenna site, each antenna having at least one AISG antenna control unit (ACU) controlling an internal electrical downtilt of said antenna, each ACU including a male bidirectional AISG port and a female bidirectional AISG port, said ACU being controllable to drive movement of an internal antenna backplane of said antenna through a range of electrical downtilt positions;

providing a plurality of an antenna mounts, each corresponding to a respective antenna, each antenna mount comprising:

a structure interface mounted to an installation structure;

an antenna interface mounted to said antenna, said antenna interface including an antenna mast having upper and lower pivots being rotatably connected to said structure interface through a pivot having a vertical axis and being rotatably movable about a vertical axis through a range of azimuth angle positions;

a mount azimuth control unit (MACU) having a motor mechanically interconnected with said structure interface and said antenna interface, said MACU including an AISG compatible motor controller, a male bidirectional AISG port and a female bidirectional AISG port, said motor being controllable to drive rotatable movement of said antenna through said range of azimuth angle positions, and

upper and lower bracket assemblies interconnected between said antenna mast and said antenna;

providing an ASIG compatible controller;

serially interconnecting said ACU and said MACU of each of said plurality of antennas through said controller;

selectively controlling a plurality of said MACU's through said controller to selectively mechanically adjust the physical azimuth of said antennas to adjust said coverage area.

8. The method of claim 7 wherein said upper and lower bracket assemblies are mechanical downtilt bracket assemblies.

9. The method of claim 7 further comprising the steps of selectively controlling at least one of said ACU through said controller to selectively electrically adjust electrical downtilt to adjust said coverage area.

10. The method of claim 7 wherein said controller comprises a control network interface (CNI).

11. The method of claim 7 wherein said controller comprises a portable controller.

12. A method of selectively adjusting a service coverage area of a telecommunication antenna site comprising the steps of:

providing a plurality of telecommunications antennas at an antenna site, each antenna having at least one AISG antenna control unit (ACU) controlling an internal electrical downtilt of said antenna, each ACU including a male bidirectional AISG port and a female bidirectional AISG port, said ACU being controllable to drive movement of an internal antenna backplane of said antenna through a range of electrical downtilt positions;

providing a plurality of an antenna mounts, each corresponding to a respective antenna, each antenna mount comprising:

a structure interface mounted to an installation structure;

an antenna interface mounted to said antenna, said antenna interface including an antenna mast having upper and lower mounts connected to said structure interface;

a pivoting bracket interconnected between said antenna mast and a lower pivot on said antenna;

a mechanical downtilt assembly interconnected between said antenna mast and an upper pivot on said antenna; and

a mount tilt control unit (MTCU) mechanically interconnected with said downtilt assembly, said MTCU including an AISG compatible motor controller, a male bidirectional AISG port and a female bidirectional AISG port, said MTCU being controllable to drive movement of said antenna through said range of downtilt positions

providing an ASIG compatible controller;

serially interconnecting said ACU and said MTCU of each of said plurality of antennas through said controller;

selectively controlling a plurality of said MTCU's through said controller to selectively mechanically adjust the mechanical downtilt angle of said antennas to adjust said coverage area.

13. The method of claim 12 further comprising the steps of selectively controlling at least one of said ACU through said controller to selectively adjust electrical downtilt to adjust said coverage area.

14. The method of claim 12 wherein said controller comprises a control network interface (CNI).

15. The method of claim 12 wherein said controller comprises a portable controller.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2020
From: CLIFFORD, ARTHUR P.; HOLMES, STEPHEN
To: RADIARC TECHNOLOGIES, LLC
Reel/Frame 052660/0981 →
Continuity (4)
Continuation In Part 16315229
Continuation In Part 15207159 · Jul 11, 2016
Provisional Application 62383647 · Sep 6, 2016
Related Publication 20200365985A1 · Nov 19, 2020
Cited By (1)
US 12,706,369