IP Library Granted Patent US 9,497,711
Granted Patent B2
US 9,497,711 · App. 14/239,907 · Granted Nov 15, 2016

Terminal, base station, and communication method

Inventors: Kazuki Takeda (Kanagawa, JP); Akihiko Nishio (Osaka, JP); Daichi Imamura (Beijing, CN)
Assignee: Sun Patent Trust
H04W52/18H04W52/146H04W52/248H04W52/325H04W72/042H04W52/58
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Quick Facts
Patent No.
US 9,497,711
App. No.
14/239,907
Granted
Nov 15, 2016
Kind
B2
Abstract

Provided is a terminal with which it is possible, in a heterogeneous cell network, to transmit a Periodic-Sounding Reference Signal (P-SRS) at a transmission bandwidth and power density necessary for carrying out both a process of selection of a transceiving participating base station and a process of frequency scheduling of a Physical Uplink Shared Channel (PUSCH). A terminal ( 300 ) comprises a receiving unit ( 301 ) which receives control information which includes information which denotes a P-SRS transmission parameter, and a transmission unit ( 303 ) which, using a transmission parameter which is included in the received control information, transmits a first P-SRS provided with a first bandwidth and a first power density at a first period, and transmits a second P-SRS provided with a second bandwidth which is narrower than the first bandwidth and second power density which is higher than the first power density at a second period.

Claims (23)

1. A communication terminal apparatus comprising:

a receiver which, in operation, receives a transmission request for an aperiodic sounding reference signal (A-SRS), and a transmission power control command (TPC command) for transmission control of the A-SRS, the TPC command being received in a Physical Downlink Control Channel (PDCCH),

a controller which, in operation, controls a transmission power value of a first A-SRS using a TPC command when the TPC command is received within a first time period, and controls a transmission power value of a second A-SRS using a TPC command when the TPC command is received within a second time period other than the first time period, the first and second time periods having different time lengths and the second time period following the first time period, transmission power values of the first A-SRS and the second A-SRS being controlled independently of each other, and

a transmitter which, in operation, transmits the first A-SRS at the controlled transmission power value, and transmits the second A-SRS at the controlled transmission power value.

2. The communication terminal apparatus according to claim 1 , wherein the controller, in operation, controls the transmission power value of the first A-SRS using the TPC command received within a first band, and controls the transmission power value of the second A-SRS using the TPC command received within a second band which is different from the first band.

3. The communication terminal apparatus according to claim 1 , wherein the relationship between transmission timing of the TPC command and transmission timing of the A-SRS to which the TPC command is applied is predetermined.

4. The communication terminal apparatus according to claim 1 , wherein the controller, in operation, controls the transmission power value of the first A-SRS independently of transmission power control of a Physical Uplink Shared Channel (PUSCH).

5. A communication method comprising:

receiving a transmission request for an aperiodic sounding reference signal (A-SRS), and a transmission power control command (TPC command) for transmission control of the A-SRS, the TPC command being received in a Physical Downlink Control Channel (PDCCH),

controlling a transmission power value of a first A-SRS using a TPC command when the TPC command is received within a first time period,

controlling a transmission power value of a second A-SRS using a TPC command when the TPC command is received within a second time period other than the first time period, the first and second time periods having different time lengths and the second time period following the first time period, transmission power values of the first A-SRS and the second A-SRS being controlled independently of each other,

transmitting the first A-SRS at the controlled transmission power value, and

transmitting the second A-SRS at the controlled transmission power value.

6. The communication method according to claim 5 , further comprising controlling the transmission power value of the first A-SRS using the TPC command received within a first band, and controlling the transmission power value of the second A-SRS using the TPC command received within a second band different from the first band.

7. The communication method according to claim 5 , wherein the relationship between transmission timing of the TPC command and transmission timing of the A-SRS to which the TPC command is applied is predetermined.

8. The communication method according to claim 5 , further comprising controlling the transmission power value of the first A-SRS independently of transmission power control of a Physical Uplink Control Channel (PUCCH).

9. An integrated circuit that controls a process performed at a communication terminal apparatus, the integrated circuit comprising:

at least one input which, in operation, receives a transmission request for an aperiodic sounding reference signal (A-SRS), and a transmission power control command (TPC command) for transmission control of the A-SRS, the TPC command being received in a Physical Downlink Control Channel (PDCCH),

circuitry coupled to the at least one input, wherein the circuitry, in operation, controls a transmission power value of a first A-SRS using a TPC command when the TPC command is received within a first time period, and controls a transmission power value of a second A-SRS using a TPC command when the TPC command is received within a second time period other than the first time period, the first and second time periods having different time lengths and the second time period following the first time period, transmission power values of the first A-SRS and the second A-SRS being controlled independently of each other, and

at least one output coupled to the circuitry, wherein the at least one output, in operation, outputs the first A-SRS at the controlled transmission power value, and outputs the second A-SRS at the controlled transmission power value.

10. The integrated circuit according to claim 9 , wherein the circuitry, in operation, controls the transmission power value of the first A-SRS using the TPC command received within a first band, and controls the transmission power value of the second A-SRS using the TPC command received within a second band which is different from the first band.

11. The integrated circuit according to claim 9 , wherein the relationship between transmission timing of the TPC command and transmission timing of the A-SRS to which the TPC command is applied is predetermined.

12. The integrated circuit according to claim 9 , wherein the circuitry, in operation, controls the transmission power value of the first A-SRS independently of transmission power control of a Physical Uplink Shared Channel (PUSCH).

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 29, 2016
From: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
To: SUN PATENT TRUST
Reel/Frame 038299/0156 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2014
From: PANASONIC CORPORATION
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 033033/0163 →
CORRECTIVE ASSIGNMENT TO CORRECT THE WRONG ASSIGNOR NAME AKIHIRO NISHIO PREVIOUSLY RECORDED ON REEL 032524 FRAME 0218. ASSIGNOR(S) HEREBY CONFIRMS THE CORRECT ASSIGNOR NAME IS AKIHIKO NISHIO. Recorded Apr 11, 2014
From: TAKEDA, KAZUKI; NISHIO, AKIHIKO; IMAMURA, DAICHI
To: PANASONIC CORPORATION
Reel/Frame 032661/0133 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2014
From: TAKEDA, KAZUKI; NISHIO, AKIHIRO; IMAMURA, DAICHI
To: PANASONIC CORPORATION
Reel/Frame 032524/0218 →
Priority Claims (2)
JP 2011-219540 · Oct 3, 2011 · national
JP 2012-108449 · May 10, 2012 · national
Continuity (1)
Related Publication 20140211737A1 · Jul 31, 2014