IP Library Granted Patent US 9,516,605
Granted Patent B2
US 9,516,605 · App. 14/113,651 · Granted Dec 6, 2016

Terminal apparatus, base station apparatus, transmission method and reception method

Inventors: Takashi Iwai (Ishikawa, JP); Daichi Imamura (Beijing, JP); Masayuki Hoshino (Kanagawa, JP); Akihiko Nishio (Osaka, JP); Takashi Tamura (Kanagawa, JP); Kazuki Takeda (Kanagawa, JP)
Assignee: Sun Patent Trust
H04W52/246H04L1/0077H04L5/0048H04W52/244H04W52/325H04B7/024H04W52/146H04W52/16H04W52/242H04W52/40
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Quick Facts
Patent No.
US 9,516,605
App. No.
14/113,651
Granted
Dec 6, 2016
Kind
B2
Abstract

Provided is a terminal apparatus in which, a transmission control unit ( 204 ) controls the transmission power of a sounding reference signal (SRS) by use of an offset value relative to the transmission power of a data signal, and a transmission unit ( 206 ) transmits the SRS by use of the transmission power as controlled. If a subframe to be used for transmitting the SRS is a predetermined subframe, the transmission control unit ( 204 ) uses a first offset value to control the transmission power of the SRS. Otherwise, the transmission control unit ( 204 ) uses a second offset value to control the transmission power of the SRS. The second offset value is an offset value that has been established so as to be transmitted to the serving cell of the terminal ( 200 ), and the first offset value is greater than the second offset value.

Claims (33)

1. A terminal apparatus comprising:

a receiver which, in operation, receives from a base station an offset value included in control information for controlling a transmission power of a sounding reference signal (SRS);

a transmission controller which, in operation, controls the transmission power of the SRS using the received offset value; and

a transmitter which, in operation, transmits the SRS using the controlled transmission power, wherein

the offset value used to control the transmission power is set within one of a first offset setting range having a first lower limit value and a first upper limit value and a second offset setting range having a second lower limit value and a second upper limit value, the second lower limit value and the second upper limit value being generated by adding an identical value to the first lower limit value and the first upper limit value, respectively, and

the SRS is a first SRS that is periodically transmitted or a second SRS that is aperiodically transmitted, and the offset value for the first SRS and the offset value for the second SRS are respectively set.

2. The terminal apparatus according to claim 1 , wherein a step width of the offset values within the first offset setting range equals a step width of the offset values within the second offset setting range.

3. The terminal apparatus according to claim 1 , wherein a bit length of the offset value within the first offset setting range equals a bit length of the offset value within the second offset setting range.

4. The terminal apparatus according to claim 1 , wherein the offset value is received from the base station as higher layer control information.

5. The terminal apparatus according to claim 1 , wherein the second offset setting range is used when a path loss between the terminal apparatus and a serving cell exceeds a predetermined value.

6. The terminal apparatus according to claim 1 , wherein the first offset setting range is used during transmission to a serving cell.

7. A communication method implemented by a terminal apparatus, the method comprising:

receiving from a base station an offset value included in control information for controlling a transmission power of a sounding reference signal (SRS);

controlling the transmission power of the SRS using the received offset value; and

transmitting the SRS using the controlled transmission power, wherein

the offset value used to control the transmission power is set within one of a first offset setting range having a first lower limit value and a first upper limit value and a second offset setting range having a second lower limit value and a second upper limit value, the second lower limit value and the second upper limit value being generated by adding an identical value to the first lower limit value and the first upper limit value, respectively, and

the SRS is a first SRS that is periodically transmitted or a second SRS that is aperiodically transmitted, and the offset value for the first SRS and the offset value for the second SRS are respectively set.

8. The communication method according to claim 7 , wherein a step width of the offset values within the first offset setting range equals a step width of the offset values within the second offset setting range.

9. The communication method according to claim 7 , wherein a bit length of the offset value within the first offset setting range equals a bit length of the offset value within the second offset setting range.

10. The communication method according to claim 7 , wherein the offset value is received from the base station as higher layer control information.

11. The communication method according to claim 7 , wherein the offset value is selected from the second offset setting range when a path loss between the terminal apparatus and a serving cell exceeds a predetermined value.

12. The communication method according to claim 7 , wherein the offset value is selected from the first offset setting range during transmission from the terminal apparatus to a serving cell.

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

receiving from a base station an offset value included in control information for controlling a transmission power of a sounding reference signal (SRS);

controlling the transmission power of the SRS using the received offset value; and

transmitting the SRS using the controlled transmission power, wherein

the offset value used to control the transmission power is set within one of a first offset setting range having a first lower limit value and a first upper limit value and a second offset setting range having a second lower limit value and a second upper limit value, the second lower limit value and the second upper limit value being generated by adding an identical value to the first lower limit value and the first upper limit value, respectively, and

the SRS is a first SRS that is periodically transmitted or a second SRS that is aperiodically transmitted, and the offset value for the first SRS and the offset value for the second SRS are respectively set.

14. The integrated circuit according to claim 13 , wherein a step width of the offset values within the first offset setting range equals a step width of the offset values within the second offset setting range.

15. The integrated circuit according to claim 13 , wherein a bit length of the offset value within the first offset setting range equals a bit length of the offset value within the second offset setting range.

16. The integrated circuit according to claim 13 , wherein the offset value is received from the base station as higher layer control information.

17. The integrated circuit according to claim 13 , wherein the offset value is selected from the second offset setting range when a path loss between the terminal apparatus and a serving cell exceeds a predetermined value.

18. The integrated circuit according to claim 13 , wherein the offset value is selected from the first offset setting range during transmission from the terminal apparatus to a serving cell.

Assignments (3)
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 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2013
From: IWAI, TAKASHI; IMAMURA, DAICHI; HOSHINO, MASAYUKI; NISHIO, AKIHIKO; TAMURA, TAKASHI; TAKEDA, KAZUKI
To: PANASONIC CORPORATION
Reel/Frame 031784/0275 →
Priority Claims (2)
JP 2011-154885 · Jul 13, 2011 · national
JP 2012-102744 · Apr 27, 2012 · national
Continuity (1)
Related Publication 20140050182A1 · Feb 20, 2014