IP Library Granted Patent US 12,483,507
Granted Patent B2
US 12,483,507 · App. 18/691,690 · Granted Nov 25, 2025

Communication system and communication control apparatus

Inventors: Kenji Miyamoto (Musashino, JP); Yoshihito Sakai (Musashino, JP); Tatsuya Shimada (Musashino, JP)
Assignee: NTT, Inc.
H04L47/22H04W28/0268H04W28/22
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Quick Facts
Patent No.
US 12,483,507
App. No.
18/691,690
Granted
Nov 25, 2025
Kind
B2
Abstract

Provided is a communication system comprising: at least one base station accommodating a wireless terminal; at least one transfer device which transfers, to a higher level, an uplink communication of the wireless terminal received via the base station; and a transfer device controller which controls the at least one transfer device, and the communication system further includes: an information acquisition unit for acquiring information regarding a wireless communication for each quality-of-service class between the base station and the wireless terminal; a rate determination unit for determining, for each of the quality-of-service classes, a shaping rate for traffic shaping such that a packet loss caused by congestion does not occur, on the basis of the information regarding the wireless communication for each quality-of-service class; and a communication control unit for executing, for each quality-of-service class, the traffic shaping at the higher level to the base station on the basis of the shaping rate determined by the rate determination unit.

Claims (42)

1 . A communication system comprising:

at least one base station that accommodates a wireless terminal;

at least one transfer device that transfers upstream communication of the wireless terminal received via the base station to a host side; and

a transfer device controller that controls the at least one transfer device,

wherein the communication system further comprises:

an information acquirer configured to acquire information regarding wireless communication between the base station and the wireless terminal for each service quality class;

a rate determiner configured to determine a shaping rate of traffic shaping for each service quality class on a basis of the information regarding wireless communication for each service quality class so that packet loss due to congestion does not occur; and

a communication controller configured to execute traffic shaping for each service quality class on a host side of the base station on a basis of the shaping rate determined by the rate determiner.

2 . The communication system according to claim 1 ,

wherein the information acquirer configured to acquire wireless quality information regarding wireless communication between the base station and the wireless terminal for each service quality class,

the rate determiner configured to determine a shaping rate to be applied to the at least one transfer device for each service quality class on a basis of correspondence information indicating a correspondence between wireless quality information and a shaping rate and wireless quality information acquired from the base station, and

the communication controller configured to execute traffic shaping at a shaping rate determined for each service quality class by the rate determiner in the at least one transfer device.

3 . The communication system according to claim 2 ,

wherein the wireless quality information includes at least one of a number of traffic flows for each service quality class or information indicating a traffic volume for each service quality class, and

the rate determiner configured to determine the shaping rate for each service quality class on a basis of the number of traffic flows and the traffic volume.

4 . The communication system according to claim 1 ,

wherein the base station includes a distributed station and a central station,

the information acquirer configured to acquire wireless quality information regarding wireless communication between the distributed station and the wireless terminal for each service quality class,

the rate determiner configured to determine a shaping rate to be applied to the at least one transfer device for each service quality class on a basis of correspondence information indicating a correspondence between wireless quality information and a shaping rate and wireless quality information acquired from the distributed station, and

the communication controller configured to execute traffic shaping at a shaping rate determined for each service quality class by the rate determiner in the at least one transfer device.

5 . The communication system according to claim 1 ,

wherein the base station includes a distributed station and a central station,

the information acquirer configured to acquire wireless quality information regarding wireless communication between the distributed station and the wireless terminal for each service quality class,

the rate determiner configured to determine a shaping rate to be applied to the at least one transfer device for each service quality class on a basis of correspondence information indicating a correspondence between wireless quality information and a shaping rate and wireless quality information acquired from the central station, and

the communication controller configured to execute traffic shaping at a shaping rate determined for each service quality class by the rate determiner determination unit in the at least one transfer device.

6 . The communication system according to claim 1 ,

wherein the base station includes a distributed station and a central station,

the information acquirer configured to acquire wireless quality information regarding wireless communication between the distributed station and the wireless terminal for each service quality class,

the rate determiner configured to determine a shaping rate to be applied to the at least one transfer device for each service quality class on a basis of correspondence information indicating a correspondence between wireless quality information and a shaping rate and wireless quality information acquired from the distributed station and the central station, and

the communication controller configured to execute traffic shaping at a shaping rate determined for each service quality class by the rate determiner in the at least one transfer device.

7 . A communication control method performed in a communication system including:

at least one base station that accommodates a wireless terminal;

at least one transfer device that transfers upstream communication of the wireless terminal received via the base station to a host side; and

a transfer device controller that controls the at least one transfer device,

wherein the communication control method comprising:

acquiring information regarding wireless communication between the base station and the wireless terminal for each service quality class;

determining a shaping rate of traffic shaping for each service quality class on a basis of the information regarding wireless communication for each service quality class so that packet loss due to congestion does not occur; and

executing traffic shaping for each service quality class on a host side of the base station on a basis of the shaping rate determined.

8 . A transfer device controller for controlling at least one transfer device that transfers upstream communication of a wireless terminal received via at least one base station that accommodates the wireless terminal to a host side,

the transfer device controller comprising:

a rate determiner configured to determine a shaping rate of traffic shaping for each service quality class on a basis of information regarding wireless communication between the base station and the wireless terminal for each service quality class so that packet loss due to congestion does not occur; and

a transmitter configured to transmit the shaping rate determined by the rate determiner to the transfer device that executes traffic shaping for each service quality class on a host side of the base station.

Assignments (2)
CHANGE OF NAME Recorded Sep 30, 2025
From: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
To: NTT, INC.
Reel/Frame 072983/0962 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2024
From: MIYAMOTO, KENJI; SAKAI, YOSHIHITO; SHIMADA, TATSUYA
To: NIPPON TELEGRAPH AND TELEPHONE CORPORATION
Reel/Frame 066771/0502 →
Continuity (1)
Related Publication 20250007844A1 · Jan 2, 2025
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