IP Library Patent Application 18855228
Patent Application
App. No. 18/855,228

WIRELESS COMMUNICATION METHOD, BASE STATION EQUIPMENT AND WIRELESS COMMUNICATION SYSTEM

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Patent No.
US None
App. No.
18/855,228
Abstract

A wireless communication method in a wireless communication system including an aggregation station and an extension station that is connected to the aggregation station by an optical fiber and performs beamforming according to control of the aggregation station, in which the aggregation station adjusts a power level of a beam control signal for controlling beamforming in the extension station and a power level of a transmission signal that is data to be transmitted in order to make an optical signal including at least the beam control signal and the transmission signal an optical signal in which distortion due to a non-linear optical effect does not occur in an optical fiber and transmits the beam control signal and the transmission signal to the extension station, and the extension station transmits the transmission signal by setting, in a phase shifter or by switching a switch, a phase difference for performing beamforming in a specific direction on a basis of the beam control signal included in the optical signal.

Claims (44)

1 . A wireless communication method in a wireless communication system comprising an aggregation station and an extension station that is connected to the aggregation station by an optical fiber and performs beamforming according to control of the aggregation station, the wireless communication method comprising:

adjusting, by the aggregation station, a power level of a beam control signal for controlling beamforming in the extension station and a power level of a transmission signal that is data to be transmitted in order to make an optical signal including at least the beam control signal and the transmission signal an optical signal in which distortion due to a non-linear optical effect does not occur in an optical fiber and transmitting the beam control signal and the transmission signal to the extension station; and

transmitting, by the extension station, the transmission signal by setting, in a phase shifter or by switching a switch, a phase difference for performing beamforming in a specific direction on a basis of the beam control signal included in the optical signal.

2 . The wireless communication method according to claim 1 , the wireless communication method further comprising:

generating, by the aggregation station, the optical signal by performing wavelength division multiplexing by intensity-modulating the beam control signal and the transmission signal to different wavelengths; and

setting, by the extension station, in a phase shifter or by switching a switch, a phase difference for performing beamforming in the specific direction by demultiplexing the optical signal according to a wavelength and acquiring the beam control signal included in the optical signal.

3 . The wireless communication method according to claim 1 , the wireless communication method further comprising:

generating, by the aggregation station, the optical signal by frequency-multiplexing the beam control signal and the transmission signal and then performing intensity-modulation to a specific wavelength; and

setting, by the extension station, in a phase shifter or by switching a switch, a phase difference for performing beamforming in the specific direction by converting the optical signal into an electrical signal and then acquiring the beam control signal included in the electrical signal.

4 . The wireless communication method according claim 1 , the wireless communication method further comprising:

adjusting, by the aggregation station, a power level of the transmission signal to a power level higher than a power level of the beam control signal.

5 . The wireless communication method according claim 1 , the wireless communication method further comprising:

performing, by the extension station, beamforming in the specific direction by controlling a rotation amount of a phase in a plurality of phase shifters according to the beam control signal, or performs beamforming in the specific direction by switching connection of a switch such that the transmission signal is input to a port capable of performing beamforming in the specific direction according to the beam control signal.

6 . The wireless communication method according to claim 1 , the wireless communication method further comprising:

adjusting, by the extension station, a power level of a reception signal received from an external device and a power level of a response signal for a beam control signal in order to make an optical signal including the reception signal and the response signal an optical signal in which distortion due to a non-linear optical effect does not occur in an optical fiber and transmits-transmitting the reception signal and the response signal to the aggregation station; and

acquiring, by the aggregation station, at least a reception signal from the optical signal transmitted from the extension station.

7 . A base station equipment in a wireless communication system comprising an aggregation station and an extension station that is connected to the aggregation station by an optical fiber and performs beamforming according to control of the aggregation station, the base station equipment comprising:

a processor; and

a storage medium having computer program instructions stored thereon, when executed by the processor, perform to:

adjust a power level of a beam control signal for controlling beamforming in the extension station and a power level of a transmission signal that is data to be transmitted in order to make an optical signal including at least the beam control signal and the transmission signal an optical signal in which distortion due to a non-linear optical effect does not occur in an optical fiber and transmit the beam control signal and the transmission signal to the extension station; and

transmit the transmission signal by setting, in a phase shifter or by switching a switch, a phase difference for performing beamforming in a specific direction on a basis of the beam control signal included in the optical signal.

8 . A wireless communication system comprising an aggregation station and an extension station that is connected to the aggregation station by an optical fiber and performs beamforming according to control of the aggregation station, wherein

the aggregation station comprises:

a first processor; and

a first storage medium having computer program instructions stored thereon, when executed by the first processor, perform to:

adjust a power level of a beam control signal for controlling beamforming in the extension station and a power level of a transmission signal that is data to be transmitted in order to make an optical signal including at least the beam control signal and the transmission signal an optical signal in which distortion due to a non-linear optical effect does not occur in an optical fiber and transmit the beam control signal and the transmission signal to the extension station, and

the extension station comprises:

a second processor; and

a second storage medium having computer program instructions stored thereon, when executed by the second processor, perform to:

transmit the transmission signal by setting, in a phase shifter or by switching a switch, a phase difference for performing beamforming in a specific direction on a basis of the beam control signal included in the optical signal.

9 . The wireless communication method according to claim 2 , the wireless communication method further comprising:

adjusting, by the aggregation station, a power level of the transmission signal to a power level higher than a power level of the beam control signal.

10 . The wireless communication method according to claim 3 , the wireless communication method further comprising:

adjusting, by the aggregation station, a power level of the transmission signal to a power level higher than a power level of the beam control signal.

11 . The wireless communication method according to claim 2 , the wireless communication method further comprising:

performing, by the extension station, beamforming in the specific direction by controlling a rotation amount of a phase in a plurality of phase shifters according to the beam control signal, or performs beamforming in the specific direction by switching connection of a switch such that the transmission signal is input to a port capable of performing beamforming in the specific direction according to the beam control signal.

12 . The wireless communication method according to claim 3 , the wireless communication method further comprising:

performing, by the extension station, beamforming in the specific direction by controlling a rotation amount of a phase in a plurality of phase shifters according to the beam control signal, or performs beamforming in the specific direction by switching connection of a switch such that the transmission signal is input to a port capable of performing beamforming in the specific direction according to the beam control signal.

13 . The wireless communication method according to claim 2 , the wireless communication method further comprising:

adjusting, by the extension station, a power level of a reception signal received from an external device and a power level of a response signal for a beam control signal in order to make an optical signal including the reception signal and the response signal an optical signal in which distortion due to a non-linear optical effect does not occur in an optical fiber and transmits the reception signal and the response signal to the aggregation station; and

acquiring, by the aggregation station, at least a reception signal from the optical signal transmitted from the extension station.

14 . The wireless communication method according to claim 3 , the wireless communication method further comprising:

adjusting, by the extension station, a power level of a reception signal received from an external device and a power level of a response signal for a beam control signal in order to make an optical signal including the reception signal and the response signal an optical signal in which distortion due to a non-linear optical effect does not occur in an optical fiber and transmits the reception signal and the response signal to the aggregation station; and

acquiring, by the aggregation station, at least a reception signal from the optical signal transmitted from the extension station.

Assignments (2)
CHANGE OF NAME Recorded Oct 3, 2025
From: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
To: NTT, INC.
Reel/Frame 072998/0094 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 8, 2024
From: YAMAMOTO, YASUYOSHI; KITA, NAOKI; SHIRATO, YUSHI; TOSHINAGA, HIDEKI; UCHIDA, DAISEI; ARAI, TAKUTO; TAKAHASHI, YUTA
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 068836/0167 →