IP Library › Granted Patent US 11,412,491
Granted Patent B2
US 11,412,491 · App. 17/183,377 · Granted Aug 9, 2022

Communication control device, communication control method, and terminal device

Inventor: Hiroaki Takano (Saitama, JP)
Assignee: SONY CORPORATION
H04W72/0413H04L5/001H04L5/0035H04L5/0055H04L5/0098H04W16/32H04W72/1284H04W76/15H04W76/19H04W84/10H04L5/0044H04W84/045
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Quick Facts
Patent No.
US 11,412,491
App. No.
17/183,377
Granted
Aug 9, 2022
Kind
B2
Abstract

To enable a reduction in the effect of backhauling on wireless communications in the case of carrier aggregation, provided herein is a communication control device that acquires information about a terminal device that uses one component carrier of a macro cell as a primary component carrier, sets one or more component carriers of a small cell partially or fully overlapping with the macro cell as an additional component carrier to be used additionally by the terminal device, and sets one component carrier among the one or more component carriers as a special component carrier on which the terminal device is able to transmit uplink control information on an uplink control channel, wherein the uplink control information includes at least one of an acknowledgement (ACK) and a negative acknowledgement (NACK) regarding reception of a downlink signal, an uplink scheduling request, or periodically reported channel state information.

Claims (71)

1. A method for a radio communication apparatus which is part of a first base station, or which is the first base station, the method comprising:

communicating with a user equipment which has a Radio Resource Control (RRC) connection with the first base station, the user equipment aggregating:

a first component carrier, as a primary component carrier, served by the first base station, and

a second component carrier, as a special component carrier on which uplink control information is transmitted, served by a second base station which is connected with the first base station via X2 interface,

wherein the special component carrier is not used to establish the RRC connection;

receiving an RRC message from the user equipment, the RRC message including information indicating that a timer to detect a radio link failure on the special component carrier, which corresponds to the second component carrier served by the second base station, has expired,

wherein the timer to detect the radio link failure is started upon detecting a radio link problem by the user equipment,

wherein the radio link failure on the special component carrier is detected by the user equipment when the timer expires;

after receiving the RRC message including the information indicating that the timer to detect the radio link failure on the special component carrier has expired, sending a RRC connection reconfiguration message to the user equipment via the primary component carrier, the RRC connection reconfiguration message including information indicating that the special component carrier assigned to the user equipment is changed from the second component carrier to a third component carrier, and

wherein the uplink control information includes at least one of:

an acknowledgement (ACK) and a negative acknowledgement (NACK) regarding reception of a downlink signal on one or more component carriers, including the second component carrier and the third component carrier, served by the second base station,

an uplink scheduling request for the one or more component carriers, including the second component carrier and the third component carrier, served by the second base station, or

channel state information for the one or more component carriers, including the second component carrier and the third component carrier, served by the second base station.

2. The method according to claim 1 , wherein

the first component carrier is different from the second component carrier,

the first component carrier is solely served by the first base station and not by the second base station, and

the second component carrier is solely served by the second base station and not by the first base station.

3. The method according to claim 1 , wherein a frequency band used in the second component carrier is higher than a frequency band used in the first component carrier.

4. The method according to claim 1 , further comprising:

performing a RRC connection reconfiguration with the user equipment for the third component carrier based on a second timer.

5. A method for a user equipment, the method comprising:

establishing a Radio Resource Control (RRC) connection on a first component carrier served by a first base station;

aggregating:

the first component carrier, as a primary component carrier, and

a second component carrier, as a special component carrier on which uplink control information is transmitted, served by the second base station which is connected with the first base station via X2 interface,

wherein the special component carrier is not used to establish the RRC connection;

sending an RRC message to the first base station, the RRC message including information indicating that a timer to detect a radio link failure on the special component carrier, which corresponds to the second component carrier served by the second base station, has expired,

wherein the timer to detect the radio link failure is started upon detecting a radio link problem by the user equipment,

wherein the radio link failure on the special component carrier is detected by the user equipment when the timer expires;

after sending the RRC message including the information indicating that the timer to detect the radio link failure on the special component carrier has expired, receiving a RRC connection reconfiguration message via the primary component carrier, the RRC connection reconfiguration message including information indicating that the special component carrier assigned to the user equipment is changed from the second component carrier to a third component carrier, and

wherein the uplink control information includes at least one of:

an acknowledgement (ACK) and a negative acknowledgement (NACK) regarding reception of a downlink signal on one or more component carriers, including the second component carrier and the third component carrier, served by the second base station,

an uplink scheduling request for the one or more component carriers, including the second component carrier and the third component carrier, served by the second base station, or

channel state information for the one or more component carriers, including the second component carrier and the third component carrier, served by the second base station.

6. The method according to claim 5 , wherein

the first component carrier is different from the second component carrier,

the first component carrier is solely served by the first base station and not by the second base station, and

the second component carrier is solely served by the second base station and not by the first base station.

7. The method according to claim 5 , wherein a frequency band used in the second component carrier is higher than a frequency band used in the first component carrier.

8. The method according to claim 5 , further comprising:

performing a RRC connection reconfiguration with the first base station for the third component carrier based on a second timer.

9. A radio communication apparatus which is part of a first base station, or which is the first base station, the radio communication apparatus comprising:

a radio transceiver; and

a processor including hardware, the processor configured to:

via the radio transceiver, communicate with a user equipment which has a Radio Resource Control (RRC) connection with the first base station, the user equipment aggregating:

a first component carrier, as a primary component carrier, served by the first base station, and

a second component carrier, as a special component carrier on which uplink control information is transmitted, served by a second base station which is connected with the first base station via X2 interface,

wherein the special component carrier is not used to establish the RRC connection;

via the radio transceiver, receive an RRC message from the user equipment, the RRC message including information indicating that a timer to detect a radio link failure on the special component carrier, which corresponds to the second component carrier served by the second base station, has expired,

wherein the timer to detect the radio link failure is started upon detecting a radio link problem by the user equipment,

wherein the radio link failure on the special component carrier is detected by the user equipment when the timer expires;

after receiving the RRC message including the information indicating that the timer to detect the radio link failure on the special component carrier has expired, via the radio transceiver, send a RRC connection reconfiguration message to the user equipment via the primary component carrier, the RRC connection reconfiguration message including information indicating that the special component carrier assigned to the user equipment is changed from the second component carrier to a third component carrier, and

wherein the uplink control information includes at least one of:

an acknowledgement (ACK) and a negative acknowledgement (NACK) regarding reception of a downlink signal on one or more component carriers, including the second component carrier and the third component carrier, served by the second base station,

an uplink scheduling request for the one or more component carriers, including the second component carrier and the third component carrier, served by the second base station, or

channel state information for the one or more component carriers, including the second component carrier and the third component carrier, served by the second base station.

10. A user equipment comprising:

a radio transceiver; and

a processor including hardware, the processor configured to:

establish a Radio Resource Control (RRC) connection on a first component carrier served by a first base station;

aggregate:

the first component carrier, as a primary component carrier, and

a second component carrier, as a special component carrier on which uplink control information is transmitted, served by the second base station which connected with the first base station via X2 interface,

wherein the special component carrier is not used to establish the RRC connection; send an RRC message to the first base station, the RRC message including information indicating that a timer to detect a radio link failure on the special component carrier, which corresponds to the second component carrier served by the second base station, has expired,

wherein the timer to detect the radio link failure is started upon detecting a radio link problem by the user equipment,

wherein the radio link failure on the special component carrier is detected by the user equipment when the timer expires;

after sending the RRC message including the information indicating that the timer to detect the radio link failure on the special component carrier has expired, receive a RRC connection reconfiguration message via the primary component carrier, the RRC connection reconfiguration message including information indicating that the special component carrier assigned to the user equipment is changed from the second component carrier to a third component carrier, and

wherein the uplink control information includes at least one of:

an acknowledgement (ACK) and a negative acknowledgement (NACK) regarding reception of a downlink signal on one or more component carriers, including the second component carrier and the third component carrier, served by the second base station,

an uplink scheduling request for the one or more component carriers, including the second component carrier and the third component carrier, served by the second base station, or

channel state information for the one or more component carriers, including the second component carrier and the third component carrier, served by the second base station.

Priority Claims (1)
JP JP2013-242831 · Nov 25, 2013 · national
Continuity (4)
Continuation 16430422 · Jun 4, 2019
Continuation 15921043 · Mar 14, 2018
Continuation 15022139
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