IP Library › Granted Patent US 9,949,212
Granted Patent B2
US 9,949,212 · App. 14/474,472 · Granted Apr 17, 2018

Mobile communication system, power control method, and base station device of small cell

Inventors: Fumiyasu Kurokochi (Yokohama, JP); Koji Ogawa (Yokohama, JP)
Assignee: FUJITSU LIMITED
H04W52/265H04W16/18H04W16/32H04W52/0206H04W52/244H04W84/10H04W88/08Y02D70/00Y02D70/1262Y02D70/164
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Quick Facts
Patent No.
US 9,949,212
App. No.
14/474,472
Granted
Apr 17, 2018
Kind
B2
Abstract

A mobile communication system of an overlay configuration includes small cells that are arranged in a macro cell, in which a base station of each small cell executes shifting to a standby state in which transmission power is turned off when a mobile terminal is not in the small cell, and measuring a quality of radio waves received from the mobile terminal that is present in the macro cell, and reporting a measurement result to a base station control device, and the base station control device executes selecting one of the small cells in which the mobile terminal is to be contained, based on the measurement results reported from the base stations of the small cells, and instructing the base station of the selected small cell to shift to a communication state in which the transmission power is turned on.

Claims (43)

1. A mobile communication system of an overlay configuration in which a plurality of small cells are arranged in a macro cell, the mobile communication system comprising:

a base station of each of the plurality of small cells, communicable with a mobile terminal: and

a base station control device communicable with the base station, wherein the base station has a first processor programmed to execute a process including

shifting to a standby state in which transmission power is turned off when the mobile terminal is not contained in a corresponding one of the plurality of small cells, and

measuring a quality of radio waves received from the mobile terminal that is present in the macro cell, and reporting a measurement result to the base station control device, and

wherein the base station control device has a second processor programmed to execute a process including

selecting one of the plurality of small cells in which the mobile terminal is to be contained, based on the measurement result reported from the base station of each of the plurality of small cells, and

instructing the base station of the selected one of the plurality of small cells to shift to a communication state in which the transmission power is turned on,

wherein the first processor is programmed to execute the process further including

shifting from the standby state to a communication state in which the transmission power is turned on when a signal instructing a shift to the communication state is received in response to reporting the measurement result to the base station control device, and

shifting from the communication state to the standby state, when a predetermined time elapses in a state in which no mobile terminals are contained in the corresponding one of the plurality of small cells, and radio waves are received from a base station of the macro cell.

2. The mobile communication system according to claim 1 , wherein

the second processor is programmed to execute the process further including

instructing the base station of one of the plurality of small cells adjacent to the selected one of the plurality of small cells, to shift to the communication state in which the transmission power is turned on.

3. The mobile communication system according to claim 2 , wherein

transmission of radio waves from the mobile terminal that is present in the macro cell, and reception of radio waves received at the base stations of the plurality of small cells from the mobile terminal that is present in the macro cell, are performed in synchronization with each other.

4. The mobile communication system according to claim 1 , wherein

the base station control device is provided in a management device in the mobile communication system.

5. The mobile communication system according to claim 1 , wherein

the base station control device is provided in a base station of the macro cell.

6. A power control method executed by a mobile communication system of an overlay configuration in which a plurality of small cells are arranged in a macro cell, wherein

a base station of each of the plurality of small cells executes a process that includes

shifting to a standby state in which transmission power is turned off when a mobile terminal is not contained in a corresponding one of the plurality of small cells, and

measuring, in the standby state, a quality of radio waves received from the mobile terminal that is present in the macro cell, and reporting a measurement result to a base station control device, wherein

the base station control device executes a process that includes

selecting one of the plurality of small cells in which the mobile terminal is to be contained, based on the measurement result reported from the base station of each of the plurality of small cells, and

instructing the base station of the selected one of the plurality of small cells to shift to a communication state in which the transmission power is turned on, wherein

the base station of each of the plurality of small cells executes the process that further includes

shifting from the standby state to communication state in which the transmission power is turned on when a signal instructing a shift to the communication state is received in response to reporting the measurement result to the base station control device, and

shifting from the communication state to the standby state, when a predetermined time elapses in a state in which no mobile terminals are contained in the corresponding one of the plurality of small cells, and radio waves are received from a base station of the macro cell.

7. The power control method according to claim 6 , wherein

the base station control device executes the process further including

instructing the base station of one of the plurality of small cells adjacent to the selected one of the plurality of small cells, to shift to the communication state in which the transmission power is turned on.

8. The power control method according to claim 7 , further comprising:

performing, in synchronization with each other, transmission of radio waves from the mobile terminal that is present in the macro cell, and reception of radio waves received at the base stations of the plurality of small cells from the mobile terminal that is present in the macro cell.

9. The power control method according to claim 6 , wherein the base station control device is provided in a management device in the mobile communication system.

10. The power control method according to claim 6 , wherein the base station control device is provided in a base station of the macro cell.

11. A base station of each of a plurality of small cells in a mobile communication system of an overlay configuration in which the plurality of small cells are arranged in a macro cell, the base station comprising:

a processor programmed to execute a process including

shifting to a standby state in which transmission power is turned off when a mobile terminal is not contained in a corresponding one of the plurality of small cells,

measuring, in the standby state, a quality of radio waves received from the mobile terminal that is present in the macro cell, and reporting a measurement result to a base station control device,

shifting from the standby state to a communication state in which the transmission power is turned on when a signal instructing a shift to the communication state is received in response to reporting the measurement result to the base station control device, and

shifting from the communication state to the standby state, when a predetermined time elapses in a state in which no mobile terminals are contained in the corresponding one of the plurality of small cells, and radio waves are received from a base station of the macro cell.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2014
From: KUROKOCHI, FUMIYASU; OGAWA, KOJI
To: FUJITSU LIMITED
Reel/Frame 033758/0088 →
Continuity (2)
Continuation PCTJP2012056982 · Mar 19, 2012
Related Publication 20140370930A1 · Dec 18, 2014