IP Library Granted Patent US 12,114,257
Granted Patent B2
US 12,114,257 · App. 17/569,565 · Granted Oct 8, 2024

Connection control device, communication system, and connection control method

Inventor: Teppei Oyama (Kawasaki, JP)
Assignee: FUJITSU LIMITED
H04W48/20H04W28/086
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Quick Facts
Patent No.
US 12,114,257
App. No.
17/569,565
Granted
Oct 8, 2024
Kind
B2
Abstract

A connection control device includes: a memory; and a processor coupled to the memory. The processor executes a process including: acquiring information on reception power in a plurality of terminal devices received from each of a plurality of radio units; aggregating an estimated communication load in each of the radio units by using the information on the reception power; determining a radio unit that belongs to each of a plurality of cells on a basis of an index indicating variance in a processing load for each cell associated with the estimated communication load in each of the radio units in the respective cells; and generating connection control information that allows a baseband processing device that manages a cell to be connected to the radio unit that belongs to the cell.

Claims (37)

1. A connection control device comprising:

a memory; and

processor circuitry coupled to the memory, and configured to execute a process including:

acquiring information on reception power in a plurality of terminal devices received from each of a plurality of radio units;

aggregating an estimated communication load in each of the radio units by using the information on the reception power;

determining a radio unit that belongs to each of a plurality of cells on a basis of an index indicating variance in a processing load for each cell associated with the estimated communication load in each of the radio units in the respective cells; and

generating connection control information that allows a baseband processing device that manages a cell to be connected to the radio unit that belongs to the cell,

wherein

the determining includes

selecting a parent radio unit belonging to each of the cells on a basis of positional relationships between the radio units, and

determining a child radio unit by determining, on a basis of the index indicating the variance in the processing load for each cell to which the parent radio unit belongs, whether an adjacent radio unit that is adjacent to the cell to which the parent radio unit belongs is allowed to be the child radio unit that belongs to the same cell as the cell to which the parent radio unit belongs.

2. The connection control device according to claim 1 , wherein the aggregating includes aggregating the number of connected terminals to be connected to each of the radio units in a case where each of the terminal devices serves as a connected terminal that performs radio communication with a radio unit contributing the maximum reception power.

3. The connection control device according to claim 1 , wherein the aggregating includes aggregating a traffic volume of connected terminals to be connected to each of the radio units in a case where each of the terminal devices serves as a connected terminal that performs radio communication with a radio unit contributing the maximum reception power.

4. The connection control device according to claim 1 , wherein the selecting includes selecting a first radio unit to which a maximum estimated communication load is applied as a parent radio unit that belongs to a first cell, and selecting a second radio unit in which a sum of distances between the second radio unit and each of the selected parent radio units is the maximum as a parent radio unit that belongs to another cell.

5. The connection control device according to claim 1 , wherein the determining the child radio unit includes adding the adjacent radio unit as the child radio unit belonging to the cell such that the index indicating the variance in the processing load for each cell is minimized.

6. The connection control device according to claim 1 , wherein the process further includes calculating an interference score indicating a magnitude of interference between a pair of the radio units by using the information on the reception power, and

the selecting includes selecting the parent radio unit on a basis of the positional relationships between the radio units in accordance with the interference score.

7. The connection control device according to claim 1 , wherein the process further includes calculating an interference score indicating a magnitude of interference between a pair of the radio units by using the information on the reception power, and

the determining the child radio unit includes determining whether the adjacent radio unit specified by using the interference score is allowed to be the child radio unit.

8. A communication system comprising a plurality of radio units that perform radio communication with a plurality of terminal devices, a plurality of baseband processing devices that are connected to the radio units, and a connection control device that controls a connection between the radio units and the baseband processing devices, wherein the connection control device includes

a memory, and

processor circuitry coupled to the memory, and configured to execute a process including:

acquiring information on reception power in the terminal devices received from each of the radio units;

aggregating an estimated communication load in each of the radio units by using the information on the reception power;

determining a radio unit that belongs to each of a plurality of cells on a basis of an index indicating variance in processing load for each cell associated with the estimated communication load in each of the radio units in the respective cells; and

generating connection control information that allows a baseband processing device that manages a cell to be connected to the radio unit that belongs to the cell, wherein

the determining includes

selecting a parent radio unit belonging to each of the cells on a basis of positional relationships between the radio units, and

determining a child radio unit by determining, on a basis of the index indicating the variance in the processing load for each cell to which the parent radio unit belongs, whether an adjacent radio unit that is adjacent to the cell to which the parent radio unit belongs is allowed to be the child radio unit that belongs to the same cell as the cell to which the parent radio unit belongs.

9. A connection control method comprising:

acquiring information on reception power in a plurality of terminal devices received from each of a plurality of radio units;

aggregating, by processor circuitry, an estimated communication load in each of the radio units by using the information on the reception power;

determining, by the processor circuitry, a radio unit that belongs to each of a plurality of cells on a basis of an index indicating variance in processing load for each cell associated with the estimated communication load in each of the radio units in the respective cells; and

generating, by the processor circuitry, connection control information that allows a baseband processing device that manages a cell to be connected to the radio unit that belongs to the cell, wherein

the determining includes

selecting a parent radio unit belonging to each of the cells on a basis of positional relationships between the radio units, and

determining a child radio unit by determining, on a basis of the index indicating the variance in the processing load for each cell to which the parent radio unit belongs, whether an adjacent radio unit that is adjacent to the cell to which the parent radio unit belongs is allowed to be the child radio unit that belongs to the same cell as the cell to which the parent radio unit belongs.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 5, 2026
From: FUJITSU LIMITED
To: 1FINITY INC.
Reel/Frame 074197/0244 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2022
From: OYAMA, TEPPEI
To: FUJITSU LIMITED
Reel/Frame 058580/0608 →
Priority Claims (1)
JP 2021-051931 · Mar 25, 2021 · national
Continuity (1)
Related Publication 20220312310A1 · Sep 29, 2022