IP Library › Granted Patent US 10,051,583
Granted Patent B2
US 10,051,583 · App. 15/860,381 · Granted Aug 14, 2018

Wireless communication terminal device and power allocation method

Inventors: Shinsuke Takaoka (Osaka, JP); Hidetoshi Suzuki (Kanagawa, JP); Akihiko Nishio (Osaka, JP); Takashi Iwai (Ishikawa, JP)
Assignee: Sun Patent Trust
H04W52/367H04L5/005H04W28/0268H04W52/30H04W52/346H04W52/42H04W52/146H04W52/34
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Quick Facts
Patent No.
US 10,051,583
App. No.
15/860,381
Granted
Aug 14, 2018
Kind
B2
Abstract

Provided are a wireless communication terminal device and a power allocation method, wherein transmission channel quality information, regarding a Pcell having a high probability that UCI is multiplied therein, can be accurately estimated by an SRS having high priority in power allocation, and an eNB can instruct appropriate transmission power to an UL channel which transmits the subsequent UCI. A power scaling detection unit detects whether or not a total transmission power value of the UL channels transmitted by the plurality of CC exceeds the maximum transmission power specific to the UE. When a plurality of SRS are simultaneously transmitted using a Pcell and a Scell, and power scaling occurs, a power scaling control unit performs power allocation so that transmission power of the SRS of the Pcell has the higher priority than that of the SRS of the Scell.

Claims (27)

1. A radio communication terminal apparatus, comprising:

transmission power calculating circuitry which, in operation, calculates transmission power of a plurality of uplink channels on a plurality of component carriers/cells of carrier aggregation, the plurality of component carriers/cells including a primary cell group including one or a plurality of component carriers/cells and a secondary cell group including one or a plurality of component carriers/cells;

power scaling detecting circuitry which, in operation,

detects, using the calculated transmission power, whether a total value of the transmission power of the uplink channels transmitted on the plurality of component carriers/cells exceeds a maximum transmission power specific to the apparatus and whether simultaneous transmission of the plurality of uplink channels on the plurality of component carriers/cells occurs; and

detects, using the calculated transmission power, whether the total value of the transmission power of the uplink channels transmitted on the plurality of component carriers/cells exceeds the maximum transmission power and whether there is more than one transmission power value of the uplink channels of the plurality of component carriers/cells; and

power scaling controlling circuitry which, in operation, preferentially allocates, when the total value of the transmission power of the uplink channels transmitted on the plurality of component carriers/cells does not exceed the maximum transmission power and, when the simultaneous transmission is detected or when there is more than one transmission power value, in a case where a plurality of reference signals and the uplink channels of the primary cell group on which uplink control information is multiplexed are simultaneously transmitted using the plurality of cells of the primary cell group and the secondary cell group, transmission power with respect to the uplink channels of the primary cell group on which the uplink control information is multiplexed over the plurality of reference signals,

wherein the power scaling controlling circuitry, in operation, performs control of uniformly reducing the transmission power of the plurality of reference signals when the power scaling controlling circuitry preferentially allocates the transmission power with respect to the uplink channels of the primary cell group on which the uplink control information is multiplexed over the plurality of reference signals.

2. The radio communication terminal apparatus according to claim 1 , wherein the reference signal is one of a periodic reference signal and an aperiodic reference signal.

3. The radio communication terminal apparatus according to claim 1 , wherein when transmission power of a reference signal included in the plurality of reference signals is not greater than a determined threshold, the power scaling controlling circuitry, in operation, stops transmission of the reference signal whose transmission power is not greater than the threshold, or sets the transmission power of the reference signal whose transmission power is not greater than the threshold to be equal to zero.

4. The radio communication terminal apparatus according to claim 3 , wherein the plurality of reference signals is a plurality of reference signals of the secondary cell group.

5. The radio communication terminal apparatus according to claim 1 , wherein:

the power scaling detecting circuitry, in operation, detects whether the total value of the transmission power of the uplink channels transmitted on the plurality of component carriers/cells exceeds the maximum transmission power specific to the apparatus and whether power scaling occurs as a result; and

when the power scaling is detected in a case where the plurality of reference signals and the uplink channels on which the uplink control information is multiplexed are simultaneously transmitted using the plurality of cells of the primary cell group and the secondary cell group, the power scaling controlling circuitry, in operation, stops transmission of the plurality of reference signals, sets the transmission power of the plurality of reference signals to be equal to zero, or drops the plurality of reference signals.

6. The radio communication terminal apparatus according to claim 1 , wherein the power scaling controlling circuitry, in operation, preferentially allocates, when the plurality of reference signals is transmitted using the plurality of cells of the primary cell group and the secondary cell group, the transmission power with respect to the reference signal of the primary cell group over the reference signal of the secondary cell group.

7. The radio communication terminal apparatus according to claim 6 wherein the control of uniformly reducing the transmission power of the plurality of reference signal corresponds to control of uniformly reducing a transmission power of a reference signal of the secondary cell group.

8. The radio communication terminal apparatus according to claim 1 wherein the control of uniformly reducing the transmission power of the plurality of reference signal corresponds to control of uniformly reducing a transmission power of a reference signal of the secondary cell group.

9. The radio communication terminal apparatus according to claim 1 , wherein the power scaling controlling circuitry, in operation, preferentially allocates the transmission power with respect to the uplink channels of the primary cell group on which uplink control information is multiplexed over the plurality of reference signals of the primary cell group and the secondary cell group.

10. The radio communication terminal apparatus according to claim 1 , wherein the uplink channel is one of physical uplink control channel (PUCCH) and physical uplink shared channel (PUSCH).

11. The radio communication terminal apparatus according to claim 1 , wherein the plurality of cells of the primary cell group and the secondary cell group is indicated using a higher layer signaling.

12. The radio communication terminal apparatus according to claim 1 , wherein the uplink control information is one of an acknowledgement/non acknowledgement (ACK/NACK), an aperiodic channel state information (CSI) and a periodic CSI.

13. The radio communication terminal apparatus according to claim 5 , wherein the power scaling controlling circuitry, in operation, stops transmission of all of the plurality of reference signals, sets the transmission power of all of the plurality of reference signals to be equal to zero, or drops all of the plurality of reference signals.

14. The radio communication terminal apparatus according to claim 5 , wherein the transmission power calculating circuitry, in operation, stops, at a last symbol position of a subframe, transmission of the plurality of reference signals, sets, at a last symbol position of a subframe, the transmission power of the plurality of reference signals to be equal to zero, or drops, at a last symbol position of a subframe, the plurality of reference signals.

15. A radio communication method using a plurality of component carriers/cells of carrier aggregation, the plurality of component carriers/cells including a primary cell group including one or a plurality of component carriers/cells and a secondary cell group including one or a plurality of component carriers/cells, the method comprising:

a transmission power calculating step of calculating transmission power of a plurality of uplink channels on the plurality of component carriers/cells of the carrier aggregation;

a power scaling detecting step of detecting, using the calculated transmission power, whether a total value of the transmission power of the uplink channels transmitted on the plurality of component carriers/cells exceeds a maximum transmission power specific to the apparatus and whether simultaneous transmission of the plurality of uplink channels on the plurality of component carriers/cells occurs, and detecting, using the calculated transmission power, whether the total value exceeds the maximum transmission power and whether there is more than one transmission power value of the uplink channels of the plurality of component carriers/cells; and

a power scaling controlling step of preferentially allocating, when the total value of the transmission power of the uplink channels transmitted on the plurality of component carriers/cells does not exceed the maximum transmission power and, when the simultaneous transmission is detected or when there is more than one transmission power value, in a case where a plurality of reference signals and the uplink channels of the primary cell group on which uplink control information is multiplexed are simultaneously transmitted using the plurality of cells of the primary cell group and the secondary cell group, transmission power with respect to the uplink channels of the primary cell group on which the uplink control information is multiplexed over the plurality of reference signals,

wherein in the power scaling controlling step, control of uniformly reducing the transmission power of the plurality of reference signals is performed when the power scaling controlling step preferentially allocates the transmission power with respect to the uplink channels of the primary cell group on which the uplink control information is multiplexed over the plurality of reference signals.

Priority Claims (2)
JP 2010-249005 · Nov 5, 2010 · national
JP 2010-258360 · Nov 18, 2010 · national
Continuity (3)
Continuation 15492827 · Apr 20, 2017
Continuation 13883100
Related Publication 20180146441A1 · May 24, 2018