IP Library › Granted Patent US 10,044,093
Granted Patent B2
US 10,044,093 · App. 15/115,732 · Granted Aug 7, 2018

Antenna orientation adjustment device and antenna orientation adjustment method

Inventor: Masashi Hirabe (Tokyo, JP)
Assignee: NEC Corporation
H01Q1/1257H01Q3/02H04B17/102H04B17/27
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Quick Facts
Patent No.
US 10,044,093
App. No.
15/115,732
Granted
Aug 7, 2018
Kind
B2
Abstract

An antenna orientation adjustment device ( 200 ) include a camera ( 210 ), nut runners ( 220 and 230 ), and a motion controller ( 400 ). The nut runners ( 220 and 230 ) can be mounted on an azimuth adjustment bolt ( 160 ) and an elevation adjustment bolt ( 180 ), respectively. The nut runners ( 220 and 230 ) change the orientation of an antenna unit by applying motor power to the azimuth adjustment bolt ( 160 ) and the elevation adjustment bolt ( 180 ). The motion controller ( 400 ) calculates an angle position of the antenna unit ( 110 ) where a reception strength is maximum based on an image taken by the camera ( 210 ) and a reception strength of radio waves received by the antenna unit ( 110 ), and then adjusts the antenna unit ( 110 ) to the angle position where the reception strength is maximum by supplying a drive signal to the azimuth adjustment bolt ( 160 ) and the elevation adjustment bolt ( 180 ).

Claims (27)

1. An antenna orientation adjustment device comprising:

a camera that is fixed relative to an antenna unit;

a motor-driven unit that can be mounted on an orientation adjustment part and changes an orientation of the antenna unit by applying a force of motor power to the orientation adjustment part; and

a motion controller that adjusts the orientation of the antenna unit by supplying a drive signal to the motor-driven unit, wherein

the camera captures an initial image and a current image;

the motion controller calculates a relative angle position of the antenna unit based on a gap between the current image and the initial image; and

the motion controller obtains an angle position of the antenna unit based on a reception strength of radio waves received by the antenna unit and the relative angle position corresponding to the reception strength, and adjusts the angle position of the antenna unit by supplying a drive signal to the motor-driven unit.

2. The antenna orientation adjustment device according to claim 1 , wherein the motion controller acquires a relationship between the orientation of the antenna unit and the reception strength, changing the orientation of the antenna unit within a specified range by supplying a drive signal to the motor-driven unit.

3. The antenna orientation adjustment device according to claim 1 , wherein the motion controller obtains an angle position of the antenna unit where the reception strength is maximum based on an image taken by the camera and the reception strength of radio waves received by the antenna unit, and adjusts the antenna unit to the angle position where the reception strength is maximum by supplying a drive signal to the motor-driven unit.

4. The antenna orientation adjustment device according to claim 1 , wherein the motion controller includes

a position calculation unit that calculates a relative angle position of the antenna unit by using an image taken by a camera;

a reception strength detection unit that detects a reception strength of radio waves received by the antenna unit;

a reception strength recording unit that records the relative angle position of the antenna unit and the reception strength at the relative angle position in association with each other;

a peak search unit that searches for a maximum value of the reception strength from data recorded in the reception strength recording unit;

a peak position recording unit that records, as a peak position, an angle position of the antenna unit corresponding to the maximum reception strength obtained by the peak search unit; and

a gap calculation unit that calculates a gap between the current angle position of the antenna unit and the peak position, and

the motion controller supplies a drive signal to the motor-driven unit so that the gap becomes closer to zero.

5. An antenna system comprising:

an antenna device configured to be able to change an orientation of an antenna unit by applying a force to an orientation adjustment part; and

the antenna orientation adjustment device according to claim 1 .

6. An antenna orientation adjustment method comprising:

mounting a camera on an antenna device so that a position and an orientation are not displaced relative to an antenna unit of the antenna device;

mounting a motor-driven unit on an orientation adjustment part;

capturing an initial image and a current image by using the camera;

calculating a relative angle position of the antenna unit based on a gap between the current image and the initial image;

calculating an angle position of the antenna unit based on a reception strength of radio waves received by the antenna unit and the relative angle position corresponding to the reception strength; and

adjusting the angle position of the antenna unit by supplying a drive signal to the motor-driven unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2016
From: HIRABE, MASASHI
To: NEC CORPORATION
Reel/Frame 039302/0743 →
Priority Claims (1)
JP 2014-019265 · Feb 4, 2014 · national
Continuity (1)
Related Publication 20170179566A1 · Jun 22, 2017