IP Library Patent Application 18837609
Patent Application
App. No. 18/837,609

WIRELESS COMMUNICATION SYSTEM, WIRELESS COMMUNICATION METHOD, AND WIRELESS COMMUNICATION DEVICE

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Quick Facts
Patent No.
US None
App. No.
18/837,609
Abstract

The transmitting station or the receiving station estimates channel information. All combinations of sub-array configurations in accordance with the number of transmitting antennas, the number of receiving antennas, and the number of transmission signals are derived. For the all combinations, precoding matrices which can be combined in-phase with the selected receiving antennas are derived. The channel capacity for the all combinations from the channel information and the precoding matrix is calculated. The optimal precoding matrix which maximizes channel capacity is selected. The transmission-side control information is determined from the optimal precoding matrix. The transmitting station switches the output destination of a single signal or a plurality of signals on the basis of the transmission-side control information and forms an arbitrary sub-array corresponding to each signal. The sub-array performs in-phase combining using phase control for the desired receiving antenna. The receiving station combines, separates, and demodulates the signals.

Claims (40)

1 . A wireless communication system using a transmitting station and a receiving station including a plurality of antennas, wherein

at least one of the transmitting station and the receiving station includes a processor,

the processor performs:

estimating channel information between the transmitting antenna and the receiving antenna;

deriving all combinations of sub-array configurations in accordance with the number of transmitting antennas, the number of receiving antennas and the number of transmission signals;

deriving a precoding matrix which allows in-phase combining for selected receiving antennas for all the combinations;

calculating channel capacity for all combinations from the channel information and the precoding matrix;

selecting an optimal precoding matrix which maximizes the channel capacity; and

determining transmission-side control information from the optimal precoding matrix,

the transmitting station performs:

switching an output destination of a single or a plurality of signals on the basis of the transmission-side control information and forming an arbitrary sub-array corresponding to each signal; and

performing in-phase combining using phase control on the desired receiving antenna using the sub-array, and

the receiving station performs combining, separating, and demodulating the signals transmitted from the transmitting station.

2 . The wireless communication system according to claim 1 , wherein a known pilot signal is used at the time of estimating the channel information.

3 . The wireless communication system according to claim 1 , wherein geometric estimation is used at the time of estimating the channel information.

4 . A wireless communication method using a transmitting station and a receiving station including a plurality of antennas, comprising:

estimating channel information between a transmitting antenna and a receiving antenna;

deriving all combinations of sub-array configurations according to the number of transmitting antennas, the number of receiving antennas, and the number of transmission signals;

deriving a precoding matrix which allows in-phase combining for the selected receiving antennas for all the combinations;

calculating channel capacity for all combinations from the channel information and the precoding matrix;

selecting an optimal precoding matrix which maximizes the channel capacity;

determining transmission-side control information from the optimal precoding matrix;

switching an output destination of a single or a plurality of signals on the basis of the transmission-side control information and forming an arbitrary sub-array corresponding to each signal;

performing in-phase combining by performing phase control on the desired receiving antenna using the sub-array; and

combining, separating, and demodulating signals transmitted from the transmitting station.

5 . A wireless communication device, comprising one or more circuitry,

the circuitry performs:

estimating channel

information between a transmitting antenna and a receiving antenna,

deriving all combinations of sub-array configurations according to the number of transmitting antennas, the number of receiving antennas, and the number of transmission signals,

deriving a precoding matrix which allows in-phase combining for the selected receiving antennas for all the combinations, and

calculating a channel capacity for all combinations from the channel information and the precoding matrix,

selecting an optimal precoding matrix which maximizes the channel capacity,

determining transmission-side control information from the optimal precoding matrix,

parallelizing bit information into the number of transmission signals on the basis of the transmission-side control information,

modulating a bit string on the basis of the transmission-side control information and converting it into an electrical signal,

selecting an antenna on the basis of the transmission-side control information to switch an output destination of a single or a plurality of signals and configure a sub-array of an arbitrary shape,

controlling a phase coefficient so that in-phase combining is performed on a desired receiving antenna on the basis of the transmission-side control information, and

increasing a received SNR by performing signal combining on the basis of the channel information, and

separating interfering signals.

Assignments (2)
CHANGE OF NAME Recorded Aug 21, 2025
From: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
To: NTT, INC.
Reel/Frame 072499/0774 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 12, 2024
From: TATEGAMI, KOYO; GOTO, DAISUKE; YAMASHITA, FUMIHIRO; ITOKAWA, KIYOHIKO
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 068245/0914 →