IP Library › Granted Patent US 9,894,622
Granted Patent B2
US 9,894,622 · App. 15/492,827 · Granted Feb 13, 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 9,894,622
App. No.
15/492,827
Granted
Feb 13, 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 (25)

1. A radio communication terminal apparatus comprising:

one or more outputs; and

control circuitry coupled to at least one of the one or more outputs, wherein the control circuitry, in operation:

calculates transmission power of a plurality of uplink channels on a plurality of component carriers of carrier aggregation;

detects, using the calculated transmission power, whether or not a total value of the transmission power of the uplink channels transmitted on the plurality of component carriers exceeds a maximum transmission power specific to the terminal apparatus and whether power scaling occurs as a result; and

when the power scaling is detected and when a plurality of reference signals is transmitted using a primary cell and a secondary cell, preferentially allocates transmission power with respect to a reference signal of the primary cell over a reference signal of the secondary cell, selects a periodic reference signal on a component carrier in accordance with a length of a transmission cycle of a periodic reference signal and lowers power allocation priority for the selected periodic reference signal, reduces transmission power of the selected periodic reference signal, stops transmission thereof or sets the transmission power thereof to be equal to zero.

2. The radio communication terminal apparatus according to claim 1 , wherein the control circuitry, in operation, sets transmission power of the reference signal of the primary cell to be not greater than a component carrier specific maximum transmission power, keeps the transmission power of the reference signal of the primary cell and reduces transmission power of the reference signal of the secondary cell.

3. The radio communication terminal apparatus according to claim 1 , wherein the control circuitry, in operation, keeps transmission power of the reference signal of the primary cell, and stops transmission of the reference signal of the secondary cell or sets transmission power of the reference signal of the secondary cell to be equal to zero.

4. The radio communication terminal apparatus according to claim 1 , wherein, when there is a plurality of reference signals of the secondary cell, the control circuitry, in operation, reduces transmission power of the reference signals of the secondary cell, stops transmission thereof, or sets transmission power thereof to be equal to zero in ascending order of the transmission power of the reference signals of the secondary cell.

5. The radio communication terminal apparatus according to claim 1 , wherein, when there is a plurality of reference signals of the secondary cell, the control circuitry, in operation, uniformly reduces transmission power of the plurality of reference signals of the secondary cell.

6. The radio communication terminal apparatus according to claim 1 , wherein, when there is a plurality of reference signals of the secondary cell, the control circuitry, in operation, stops transmission of all of the plurality of reference signals of the secondary cell or sets the transmission power thereof to be equal to zero.

7. The radio communication terminal apparatus according to claim 1 , wherein, when transmission power of the reference signal of the secondary cell is not greater than a threshold, the control circuitry, in operation, reduces the transmission power of the reference signal of the secondary cell, stops transmission of the reference signal of the secondary cell, or sets the transmission power of the reference signal of the secondary cell to be equal to zero.

8. The radio communication terminal apparatus according to claim 1 , wherein, when the reference signal of the secondary cell has transmission power that differs, by at least a determined value, from a largest transmission power among a plurality of reference signals, the control circuitry, in operation, reduces transmission power of the reference signal of the secondary cell, stops transmission of the reference signal of the secondary cell, or sets the transmission power of the reference signal of the secondary cell to be equal to zero.

9. The radio communication terminal apparatus according to claim 1 , wherein the control circuitry, in operation, lowers power allocation priority, reduces transmission power, stops transmission, or sets the transmission power to be equal to zero for a reference signal having a low power spectrum density rather than a reference signal having a high power spectrum density.

10. The radio communication terminal apparatus according to claim 1 , wherein the control circuitry, in operation, selects a reference signal on a component carrier in accordance with a bandwidth of the reference signal and lowers power allocation priority for the selected reference signal, reduces transmission power of the selected reference signal, stops transmission thereof, or sets the transmission power thereof to be equal to zero.

11. The radio communication terminal apparatus according to claim 10 , wherein the control circuitry, in operation, selects a reference signal having a wide bandwidth rather than a reference signal having a narrow bandwidth.

12. The radio communication terminal apparatus according to claim 10 , wherein the control circuitry, in operation, selects a reference signal having a narrow bandwidth rather than a reference signal having a wide bandwidth.

13. The radio communication terminal apparatus according to claim 1 , wherein the control circuitry, in operation, raises power allocation priority for a reference signal on a component carrier on which uplink control information is triggered and lowers power allocation priority for a reference signal on a component carrier on which the uplink control information is not triggered among reference signals of a plurality of secondary cells.

14. The radio communication terminal apparatus of claim 1 , comprising:

one or more inputs; and

an antenna system coupled to at least one of the one or more inputs and to at least one of the one or more outputs.

15. A power allocation method comprising:

calculating transmission power of a plurality of uplink channels on a plurality of component carriers of carrier aggregation;

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 exceeds a maximum transmission power specific to a corresponding terminal apparatus and whether power scaling occurs as a result; and

preferentially allocating, in response to detecting that power scaling occurs when a plurality of reference signals is transmitted using a primary cell and a secondary cell, transmission power with respect to a reference signal of the primary cell over a reference signal of the secondary cell, the preferentially allocating including selecting a periodic reference signal on a component carrier in accordance with a length of a transmission cycle of a periodic reference signal and lowering power allocation priority for the selected periodic reference signal, reducing transmission power of the selected periodic reference signal, stopping transmission thereof or setting the transmission power thereof to be equal to zero.

Priority Claims (2)
JP 2010-249005 · Nov 5, 2010 · national
JP 2010-258360 · Nov 18, 2010 · national
Continuity (2)
Continuation 13883100
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