IP Library Granted Patent US 12,457,144
Granted Patent B2
US 12,457,144 · App. 18/688,368 · Granted Oct 28, 2025

Wireless communication system, wireless communication method, centralized control device, and wireless communication program

Inventors: Hayato Fukuzono (Musashino, JP); Keita Kuriyama (Musashino, JP); Masafumi Yoshioka (Musashino, JP); Toshifumi Miyagi (Musashino, JP)
Assignee: NTT, Inc.
H04L27/34
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Quick Facts
Patent No.
US 12,457,144
App. No.
18/688,368
Granted
Oct 28, 2025
Kind
B2
Abstract

A system including a plurality of base stations and terminal stations. A base station includes a transmission signal amplifier enabled to vary transmission power, provides a specification regarding an input-output characteristic of the transmission signal amplifier to a terminal station, and provides transmission power to the terminal station. The terminal station estimates a constellation of a signal points on the basis of the transmission power and the specification, detects a coordinate point on constellation coordinates, of a reception signal, and detects interference power received from base stations and that are not communication partners. Further, a reception point is calculated in which an influence of the interference power is reflected on the coordinate point, and a likelihood with the signal points is calculated for the reception point. Then, a symbol intended by the reception signal is specified on the basis of a calculation result of the likelihood.

Claims (69)

1. A wireless communication system comprising a plurality of base stations and terminal stations that perform wireless communication by using a single-carrier multi-value modulation scheme, wherein:

each of the base stations includes

a transmission signal amplifier enabled to vary transmission power, and is configured to:

provide a specification regarding an input-output characteristic of the transmission signal amplifier to each of the terminal stations; and

provide transmission power used for data transmission to each of the terminal stations, and

each of the terminal stations is configured to execute:

estimate a constellation of signal points on a basis of the transmission power and the specification;

detect a coordinate point on constellation coordinates, of a reception signal;

detect interference power received from a base station that is not a communication partner;

calculate a reception point in which an influence of the interference power is reflected on the coordinate point;

calculate likelihood with the signal points for the reception point; and

specify a symbol intended by the reception signal on a basis of a calculation result of the likelihood.

2. The wireless communication system according to claim 1 , further comprising;

a centralized controller that gives a command for transmission power to each of the plurality of base stations, wherein

each of the terminal stations is further configured to:

calculate an error rate of a reception signal; and

provide the error rate to each of the base stations, and the centralized controller is configured to:

change patterns of transmission power for the plurality of base stations;

collect the error rate corresponding to each of the patterns from each of the terminal stations via a corresponding one of the base stations; and

determine the command for transmission power to be given to each of the plurality of base stations on a basis of the error rate collected.

3. The wireless communication system according to claim 2 , wherein:

to collect the error rate, the centralized controller is configured to collect error rates for all communications to which the base stations controlled by the centralized controller are related, and

to determine the command for transmission power, the centralized processor is configured to:

determine whether or not the error rates satisfy a predetermined requirement;

search for a pattern of transmission power in which all of the error rates satisfy the predetermined requirement; and

give the command for transmission power to the plurality of base stations in accordance with a pattern obtained as a result of the searching.

4. The wireless communication system according to claim 3 , wherein:

to collect the error rate, the centralized processor is further configured to collect the error rates for all patterns of transmission power possible in the plurality of base stations, and

to determine the command for transmission power, the centralized processor is further configured to:

select an optimal pattern in accordance with a predetermined rule among patterns of transmission power in which all of the error rates satisfy the predetermined requirement; and

give the command for transmission power to the plurality of base stations in accordance with the optimal pattern.

5. A wireless communication method using a plurality of base stations and terminal stations that perform wireless communication by using a single-carrier multi-value modulation scheme,

each of the base stations including a transmission signal amplifier enabled to vary transmission power,

the wireless communication method comprising:

providing a specification regarding an input-output characteristic of the transmission signal amplifier from each of the base stations to each of the terminal stations;

providing transmission power used by each of the base stations for data transmission to each of the terminal stations;

causing each of the terminal stations to estimate a constellation of signal points on a basis of the transmission power and the specification;

causing each of the terminal stations to detect a coordinate point on constellation coordinates, of a reception signal;

causing each of the terminal stations to detect interference power received from a base station that is not a communication partner;

causing each of the terminal stations to calculate a reception point in which an influence of the interference power is reflected on the coordinate point;

causing each of the terminal stations to calculate likelihood with the signal points for the reception point; and

causing each of the terminal stations to specify a symbol intended by the reception signal on a basis of a calculation result of the likelihood.

6. The wireless communication method according to claim 5 , further comprising:

giving a command for transmission power to each of the plurality of base stations;

calculating an error rate of a reception signal in each of the terminal stations;

changing patterns of transmission power for the plurality of base stations;

collecting the error rate corresponding to each of the patterns; and

determining the command for transmission power to be given to each of the plurality of base stations on a basis of the error rate collected.

7. A centralized controller that controls a wireless communication system including a plurality of base stations and terminal stations that perform wireless communication by using a single-carrier multi-value modulation scheme, wherein:

each of the base stations includes a transmission signal amplifier enabled to vary transmission power, and is configured to:

provide a specification regarding an input-output characteristic of the transmission signal amplifier to each of the terminal stations; and

provide transmission power used for data transmission to each of the terminal stations, and

each of the terminal stations is configured to:

estimate a constellation of signal points on a basis of the transmission power and the specification;

detect a coordinate point on constellation coordinates, of a reception signal;

detect interference power received from a base station that is not a communication partner;

calculate a reception point in which an influence of the interference power is reflected on the coordinate point;

calculate likelihood with the signal points for the reception point;

specify a symbol intended by the reception signal on a basis of a calculation result of the likelihood; and

calculate an error rate of the reception signal,

the centralized controller being configured to:

change patterns of transmission power for the plurality of base stations;

collect the error rate corresponding to each of the patterns; and

determine a command for transmission power to be given to each of the plurality of base stations such that all of the error rates collected satisfy a predetermined requirement.

8. A non-transitory storage medium storing a computer readable wireless communication program for implementing the centralized controller according to claim 7 ,

the wireless communication program comprising a program for causing one or more processor included in the centralized controller to:

change patterns of transmission power for the plurality of base stations;

collect the error rate corresponding to each of the patterns; and

determine the command for transmission power to be given to each of the plurality of base stations such that all of the error rates collected satisfy a predetermined requirement.

Assignments (3)
CHANGE OF NAME Recorded Aug 21, 2025
From: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
To: NTT, INC.
Reel/Frame 072499/0774 →
CORRECTIVE ASSIGNMENT TO CORRECT THE 4TH INVENTOR NAME PREVIOUSLY RECORDED AT REEL: 66614 FRAME: 451. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Mar 18, 2024
From: FUKUZONO, HAYATO; KURIYAMA, KEITA; YOSHIOKA, MASAFUMI; MIYAGI, TOSHIFUMI
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 066816/0761 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 1, 2024
From: FUKUZONO, HAYATO; KURIYAMA, KEITA; YOSHIOKA, MASAFUMI; MIYAGA, TOSHIFUMI
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 066614/0451 →
Continuity (1)
Related Publication 20240406051A1 · Dec 5, 2024
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Ibnkahla et al., “High-Speed Satellite Mobile Communications: Technologies and Challenges”, Proceedings of the IEEE, vol. 92, No. 2, Feb. 2004, pp. 312-339. [cited by applicant]