IP Library › Granted Patent US 11,336,008
Granted Patent B2
US 11,336,008 · App. 17/263,754 · Granted May 17, 2022

Control apparatus, OAM transmission apparatus, OAM reception apparatus, control method, non-transitory computer-readable medium, and control system

Inventor: Masashi Hirabe (Tokyo, JP)
Assignee: NEC CORPORATION
H01Q3/18H01Q3/16H01Q3/20
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Quick Facts
Patent No.
US 11,336,008
App. No.
17/263,754
Granted
May 17, 2022
Kind
B2
Abstract

In a transmitting-side control apparatus ( 30 ), a transmission control unit ( 32 ) controls a radiator ( 11 ) to transmit an OAM known signal formed by one common OAM transmission mode at each of transmitting-side relative position candidates. An acquisition unit ( 33 ) acquires a feedback signal including information about a use transmitting-side relative position based on a reception strength of the OAM known signal transmitted under the control of the transmission control unit ( 32 ). An adjustment unit ( 34 ) adjusts a relative position between the radiator ( 11 ) and a focal point of a reflecting mirror ( 12 ) to the use transmitting-side relative position indicated by the information included in the feedback signal.

Claims (21)

1. A control apparatus for controlling an Orbital Angular Momentum (OAM) transmission apparatus including a radiator configured to be able to emit an OAM radio signal and a transmitting-side reflecting mirror configured to reflect the OAM radio signal emitted from the radiator toward an OAM reception apparatus, the control apparatus comprising:

hardware including at least one processor and at least one memory;

a changing unit implemented at least by the hardware and that sequentially changes a relative position between the radiator and a focal point of the transmitting-side reflecting mirror among a plurality of transmitting-side relative position candidates;

a transmission control unit implemented at least by the hardware and that controls the radiator to transmit an OAM known signal formed by one common OAM transmission mode at each of the plurality of transmitting-side relative position candidates;

an acquisition unit implemented at least by the hardware and that acquires a feedback signal including information about a use transmitting-side relative position based on a reception quality of the OAM known signal transmitted under the control of the transmission control unit; and

an adjustment unit implemented at least by the hardware and that adjusts the relative position between the radiator and the focal point of the transmitting-side reflecting mirror to the use transmitting-side relative position indicated by the information included in the feedback signal.

2. The control apparatus according to claim 1 , wherein

the OAM transmission apparatus is configured to be able to transmit an OAM mode multiplexed radio signal obtained by multiplexing a plurality of data signals corresponding to a plurality of OAM transmission modes, respectively, and

the transmission control unit is configured to set the OAM transmission mode having the highest order of a mode among the plurality of OAM transmission modes as the one common OAM transmission mode.

3. The control apparatus according to claim 1 , wherein

the plurality of transmitting-side relative position candidates include a plurality of relative positions between the radiator and the focal point of the transmitting-side reflecting mirror, the plurality of relative positions including relative relationships different from each other on a straight line connecting a central point of the transmitting-side reflecting mirror to the focal point of the transmitting-side reflecting mirror and include a plurality of relative positions between the radiator and the transmitting-side reflecting mirror, the plurality of relative positions including relative relationships different from each other in a direction parallel to a plane orthogonal to the straight line.

4. The control apparatus according to claim 1 , wherein

the transmitting-side reflecting mirror includes a reflection member configured to electrically vary a position of the focal point,

the changing unit is configured to change the relative position by executing control to electrically vary the position of the focal point, and

the adjustment unit is configured to adjust the relative position by executing control to electrically vary the position of the focal point.

5. The OAM transmission apparatus comprising the control apparatus according to claim 1 .

6. A control method for adjusting a relative position between a radiator and a focal point of a transmitting-side reflecting mirror in an OAM transmission apparatus including the radiator configured to be able to emit an OAM radio signal and the transmitting-side reflecting mirror configured to reflect the OAM radio signal emitted from the radiator toward an OAM reception apparatus, the control method comprising:

sequentially changing a relative position between the radiator and a focal point of the transmitting-side reflecting mirror among a plurality of transmitting-side relative position candidates;

controlling the radiator to transmit an OAM known signal formed by one common OAM transmission mode at each of the plurality of transmitting-side relative position candidates;

acquiring a feedback signal including information about a use transmitting-side relative position based on a reception quality of the transmitted OAM radio signal; and

adjusting the relative position between the radiator and the focal point of the transmitting-side reflecting mirror to the use transmitting-side relative position indicated by the information included in the feedback signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 2, 2022
From: HIRABE, MASASHI
To: NEC CORPORATION
Reel/Frame 058865/0954 →
Priority Claims (1)
JP JP2018-146300 · Aug 2, 2018 · national
Continuity (1)
Related Publication 20210167495A1 · Jun 3, 2021
Cited By (2)
US 12,603,682 US 12,641,678