IP Library Granted Patent US 8,472,394
Granted Patent B2
US 8,472,394 · App. 13/243,292 · Granted Jun 25, 2013

Base station, communication terminal, transmission method and reception method

Inventors: Kenichi Higuchi (Saitama, JP); Mamoru Sawahashi (Yokohama, JP); Nobuhiko Miki (Yokohama, JP); Yoshihisa Kiskiyama (Yokosuka, JP)
Assignee: NTT DoCoMo, Inc.
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Quick Facts
Patent No.
US 8,472,394
App. No.
13/243,292
Granted
Jun 25, 2013
Kind
B2
Abstract

A base station includes: means configured to manage frequency blocks; means configured to determine, for each frequency block, scheduling information for assigning one or more resource blocks to a communication terminal being in a good channel state; means configured to generate a control channel including the scheduling information for each frequency block; and means configured to frequency multiplexing control channels within the system frequency band and to transmit it. In addition, the base station transmits the control channel by separating a non-specific control channel to be decoded by a non-specific communication terminal and a specific control channel to be decoded by a communication terminal to which one or more resource blocks are assigned.

Claims (32)

1. A transmission apparatus comprising:

a frequency scheduling unit configured to assign at least one resource block to individual communication terminals, wherein a frequency band provided to a communication system includes a plurality of frequency blocks each of which includes a plurality of resource blocks; and

a first generation unit configured to generate a data channel for a communication terminal to which at least one resource block is assigned in the frequency scheduling unit;

a second generation unit configured to generate a specified control channel for a communication terminal, on a terminal-by-terminal basis, to which at least one resource block is assigned in the frequency scheduling unit;

a third generation unit configured to generate an unspecified control channel common to communication terminals to which at least one resource block is assigned in the frequency scheduling unit;

a fourth generation unit configured to generate a broadcast channel including broadcast information to be reported to a communication terminal;

a multiplexing unit configured to arrange the broadcast channel generated in the fourth generation unit on a frequency block which includes a center frequency among the plurality of frequency blocks included in the frequency band provided to the communication system, and arrange the unspecified control channel generated in the third generation unit, at least one specified control channel generated in the second generation unit and at least one data channel generated in the first generation unit over the plurality of frequency blocks included in the frequency band provided to the communication system: and

a transmission unit configured to transmit an output signal of the multiplexing unit,

wherein the number of symbols in a part which includes at least one specified control channel generated in the second generation unit is variable, and

the unspecified control channel generated in the third generation unit includes information related to the number of symbols in a part which includes at least one specified control channel generated in the second generation unit.

2. The transmission apparatus as claimed in claim 1 , wherein the specified control channel generated in the second generation unit includes information related to a data modulation scheme.

3. The transmission apparatus as claimed in claim 1 , wherein the specified control channel generated in the second generation unit includes information related to a coding scheme.

4. The transmission apparatus as claimed in claim 1 , wherein the specified control channel generated in the second generation unit includes information related to hybrid retransmission control.

5. The transmission apparatus as claimed in claim 1 , wherein the specified control channel generated in the second generation unit includes precoding information for use in a MIMO scheme.

6. The transmission apparatus as claimed in claim 1 , wherein the multiplexing unit time multiplexes at least one data channel generated in the first generation unit onto the unspecified control channel generated in the third generation unit and at least one specified control channel generated in the second generation unit.

7. The transmission apparatus as claimed in claim 1 , wherein the multiplexing unit arranges a paging channel in a similar way to the data channel.

8. A transmission method comprising the steps of:

assigning at least one resource block to individual communication terminals, wherein a frequency band provided to a communication system includes a plurality of frequency blocks each of which includes a plurality of resource blocks; and

generating a data channel for a communication terminal to which at least one resource block is assigned;

generating a specified control channel for a communication terminal, on a terminal-by-terminal basis, to which at least one resource block is assigned;

generating an unspecified control channel common to communication terminals to which at least one resource block is assigned;

generating a broadcast channel including broadcast information to be reported to a communication terminal;

arranging the broadcast channel on a frequency block which includes a center frequency among the plurality of frequency blocks included in the frequency band provided to the communication system, and arranging the unspecified control channel, at least one specified control channel and at least one data channel over the plurality of frequency blocks included in the frequency band provided to the communication system; and

transmitting an output signal from the step of arranging,

wherein the number of symbols in a part which includes at least one specified control channel generated in the step of generating the specified control channel is variable, and

the unspecified control channel generated in the step of generating the unspecified control channel includes information related to the number of symbols in a part which includes at least one specified control channel generated in the step of generating the specified control channel.

9. The transmission method as claimed in claim 8 , wherein the specified control channel generated in the step of generating the specified control channel includes information related to a data modulation scheme.

10. The transmission method as claimed in claim 8 , wherein the specified control channel generated in the step of generating the specified control channel includes information related to a coding scheme.

11. The transmission method as claimed in claim 8 , wherein the specified control channel generated in the step of generating the specified control channel includes information related to hybrid retransmission control.

12. The transmission method as claimed in claim 8 , wherein the specified control channel generated in the step of generating the specified control channel includes precoding information for use in a MIMO scheme.

13. The transmission method as claimed in claim 8 , wherein, in the step of arranging, at least one data channel is time-multiplexed onto the unspecified control channel and at least one specified control channel.

14. The transmission method as claimed in claim 8 , wherein, in the step of arranging, a paging channel is arranged in a similar way to the data channel.

Priority Claims (4)
JP 2006-010496 · Jan 18, 2006 · national
JP 2006-127987 · May 1, 2006 · national
JP 2006-272347 · Oct 3, 2006 · national
JP 2006-298312 · Nov 1, 2006 · national
Continuity (2)
Continuation 12161429
Related Publication 20120020321A1 · Jan 26, 2012