IP Library › Granted Patent US 9,860,045
Granted Patent B2
US 9,860,045 · App. 15/372,074 · Granted Jan 2, 2018

Communication device and integrated circuit

Inventors: Takashi Iwai (Ishikawa, JP); Daichi Imamura (Beijing, CN); Tomofumi Takata (Ishikawa, JP); Atsushi Matsumoto (Ishikawa, JP); Yoshihiko Ogawa (Kanagawa, JP); Sadaki Futagi (Ishikawa, JP)
Assignee: GODO KAISHA IP BRIDGE 1
H04L5/0053H04L5/0007H04L5/0048H04L5/0051H04L5/0082H04L27/2613H04W72/0446H04W74/0833
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Quick Facts
Patent No.
US 9,860,045
App. No.
15/372,074
Granted
Jan 2, 2018
Kind
B2
Abstract

Provided is a radio communication base station device which can suppress a use amount of an SRS communication resource. In this device, a correlation rule setting unit ( 102 ) sets a rule for correlating a preamble with an SRS transmission time interval so that the preamble transmission time band and the SRS transmission time band are in the same transmission time band. An SRS transmission band decision unit ( 103 ) decides a time interval of a transmission time band which can transmit the SRS according to the preamble transmission time interval inputted from a preamble transmission band decision unit ( 101 ) and the correlation rule setting unit ( 102 ).

Claims (37)

1. A mobile station, comprising:

a receiver, which, in operation:

receives configuration information indicating subframes in which Sounding Reference Signals (SRSs) may be transmitted; and

receives configuration information indicating subframes in which random access preambles may be transmitted by one or more communication devices; and

a transmitter, which, in operation, transmits SRSs, wherein,

the subframes in which SRSs may be transmitted include at least one subframe in which random access preambles may be transmitted; and

in the at least one subframe, an SRS is temporally aligned with a random access preamble guard time.

2. The mobile station according to claim 1 wherein nothing is transmitted by the one or more communication devices in the guard time of the at least one subframe.

3. The mobile station according to claim 1 wherein a random access preamble is a preamble sequence selected from a set of preamble sequences, and the guard time is of a given time length.

4. The mobile station according to claim 1 wherein when a random access preamble is transmitted from the one or more communication devices in a subframe, an SRS in the subframe is mapped such that a time gap between the SRS and the random access preamble is maximized.

5. The mobile station according to claim 1 wherein when a random access preamble is transmitted from the one or more communication devices in a subframe, an SRS is mapped in the subframe with a space provided between the random access preamble and the SRS.

6. The mobile station according to claim 1 wherein the one or more communication devices are non-synchronized in an uplink.

7. The mobile station of claim 1 wherein the received configuration information indicating subframes in which SRSs may be transmitted identifies a periodicity of subframes in which SRSs may be transmitted, and the received configuration information indicating subframes in which random access preambles may be transmitted identifies a periodicity of subframes in which random access preambles may be transmitted.

8. The mobile station according to claim 7 wherein the periodicity of subframes in which SRSs may be transmitted is m/n times the periodicity of subframes in which random access preambles may be transmitted, with m and n being positive integers.

9. A base station, comprising:

a transmitter, which, in operation:

transmits configuration information indicating subframes in which Sounding Reference Signals (SRSs) may be transmitted; and

transmits configuration information indicating subframes in which random access preambles may be transmitted by one or more communication devices; and

a receiver, which, in operation, receives SRSs and random access preambles, wherein,

the subframes in which SRSs may be transmitted include at least one subframe in which random access preambles may be transmitted; and

in the at least one subframe, an SRS is temporally aligned with a random access preamble guard time.

10. The base station according to claim 9 wherein nothing is transmitted by the one or more communication devices in the guard time of the at least one subframe.

11. The base station according to claim 9 wherein a random access preamble is a preamble sequence selected from a set of preamble sequences, and the guard time is of a given time length.

12. The base station according to claim 9 wherein when a random access preamble is transmitted from the one or more communication devices in a subframe, an SRS in the subframe is mapped such that a time gap between the SRS and the random access preamble is maximized.

13. The base station according to claim 9 wherein when a random access preamble is transmitted from the one or more communication devices in a subframe, an SRS is mapped in the subframe with a space provided between the random access preamble and the SRS.

14. The base station according to claim 9 wherein the one or more communication devices are non-synchronized in an uplink.

15. The base station of claim 9 wherein the transmitted configuration information indicating subframes in which SRSs may be transmitted identifies a periodicity of subframes in which SRSs may be transmitted, and the transmitted configuration information indicating subframes in which random access preambles may be transmitted identifies a periodicity of subframes in which random access preambles may be transmitted.

16. The base station according to claim 15 wherein the periodicity of subframes in which SRSs may be transmitted is m/n times the periodicity of subframes in which random access preambles may be transmitted, with m and n being positive integers.

17. A method, comprising:

receiving configuration information indicating subframes in which Sounding Reference Signals (SRSs) may be transmitted;

receiving configuration information indicating subframes in which random access preambles may be transmitted by one or more communication devices; and

transmitting SRSs, wherein,

the subframes in which SRSs may be transmitted include at least one subframe in which random access preambles may be transmitted; and

in the at least one subframe, an SRS is temporally aligned with a random access preamble guard time.

18. The method according to claim 17 wherein when a random access preamble is transmitted from the one or more communication devices in a subframe, an SRS in the subframe is mapped such that a time gap between the SRS and the random access preamble is maximized.

19. The method according to claim 17 wherein when a random access preamble is transmitted from the one or more communication devices in a subframe, an SRS is mapped in the subframe with a space provided between the random access preamble and the SRS.

20. The method of claim 17 wherein the received configuration information indicating subframes in which SRSs may be transmitted identifies a periodicity of subframes in which SRSs may be transmitted, and the received configuration information indicating subframes in which random access preambles may be transmitted identifies a periodicity of subframes in which random access preambles may be transmitted.

Priority Claims (1)
JP 2007-207187 · Aug 8, 2007 · national
Continuity (6)
Continuation 14531694 · Nov 3, 2014
Continuation 13608894 · Sep 10, 2012
Continuation 13293865 · Nov 10, 2011
Continuation 12853582 · Aug 10, 2010
Continuation 12672679
Related Publication 20170085351A1 · Mar 23, 2017