Method and apparatus for transmitting control information
The present invention relates to a wireless communication system. More particularly, the present invention relates to a method and an apparatus for transmitting an uplink control signal in a carrier aggregation-based wireless communication system, the method comprising a step of receiving, at one or more cells from among a plurality of cells, one or more downlink signals in subframe #(n−k); and a step of transmitting, in subframe #n, an uplink control signal including information on the acknowledgement to the one or more downlink signals. The bit number of the information on the acknowledgement corresponding to a specific cell from among the plurality of cells in the subframe #(n−k) is given as a first value according to the transmission mode of the specific cell if the subframe #(n−k) is a first subframe, and given as a predetermined second value if the subframe #(n−k) is a second subframe.
1. A method for transmitting an uplink control signal by a communication apparatus for which a plurality of cells is configured in a carrier aggregation-based wireless communication system, the method comprising:
receiving, in one or more cells from among the plurality of cells, one or more downlink signals in subframe #(n−k); and
transmitting, in subframe #n, an uplink control signal including acknowledgement information on the one or more downlink signals,
wherein the number of acknowledgement information bits corresponding to a specific cell from among the plurality of cells in the subframe #(n−k) is given as a first value of 1 or 2 according to a transmission mode of the specific cell when the subframe #(n−k) is a non-MBSFN (Multicast Broadcast Single Frequency Network) subframe, and given as a predetermined second value when the subframe #(n−k) is an MBSFN subframe, and
wherein the predetermined second value is 1 when the specific cell is a primary cell (PCell) and 0 when the specific cell is a secondary cell (SCell).
2. The method according to claim 1 , wherein the specific cell is a cell composed of a specific number of resource blocks (RBs) or less, the non-MBSFN subframe is a subframe having no broadcast channel and synchronization channel, and the MBSFN subframe is a subframe having at least one of a broadcast channel and a synchronization channel.
3. The method according to claim 1 ,
wherein the non-MBSFN subframe includes a downlink (DL) subframe or a first special subframe and the MBSFN subframe includes a second special subframe, and
wherein the first special subframe is a subframe in which the number of orthogonal frequency division multiplexing (OFDM) symbols reserved for DL transmission is greater than N and the second special subframe is a subframe in which the number of OFDM symbols reserved for DL transmission is equal to or less than N.
4. The method according to claim 1 , wherein the uplink control signal is transmitted using a physical uplink control channel (PUCCH) format 3 or a channel selection scheme.
5. A communication apparatus configured to transmit an uplink control signal in a carrier aggregation-based wireless communication system, comprising:
a radio frequency (RF) unit; and
a processor,
wherein the processor is configured to receive, in one or more cells from among a plurality of cells, one or more downlink signals in subframe #(n−k) and to transmit, in subframe #n, an uplink control signal including acknowledgement information on the one or more downlink signals,
wherein the number of acknowledgement information bits corresponding to a specific cell from among the plurality of cells in the subframe #(n−k) is given as a first value of 1 or 2 according to a transmission mode of the specific cell when the subframe #(n−k) is a non-MBSFN (Multicast Broadcast Single Frequency Network) subframe, and given as a predetermined second value when the subframe #(n−k) is a MBSFN subframe, and
wherein the predetermined second value is 1 when the specific cell is a primary cell (PCell) and 0 when the specific cell is a secondary cell (SCell).
6. The communication apparatus according to claim 5 , wherein the specific cell is a cell composed of a specific number of RBs or less, the non-MBSFN subframe is a subframe having no broadcast channel and synchronization channel, and the MBSFN subframe is a subframe having at least one of a broadcast channel and a synchronization channel.
7. The communication apparatus according to claim 5 ,
wherein the non-MBSFN subframe includes a DL subframe or a first special subframe and the MBSFN subframe includes a second special subframe, and
wherein the first special subframe is a subframe in which the number of OFDM symbols reserved for DL transmission is greater than N and the second special subframe is a subframe in which the number of OFDM symbols reserved for DL transmission is equal to or less than N.
8. The communication apparatus according to claim 5 , wherein the uplink control signal is transmitted using a PUCCH format 3 or a channel selection scheme.