Method and apparatus for transmitting ACK/NACK signal in wireless communication system
The present invention relates to a method and apparatus for transmitting an acknowledgement/not-acknowledgement (ACK/NACK) signal in a wireless communication system. The method includes the steps of: receiving a transmission block; and transmitting an ACK/NACK signal for the transmission block in a first subframe or a second subframe according to the size of the transmission block, wherein, when the size of the transmission block is smaller than or equal to a reference value, the ACK/NACK signal is transmitted in the first frame, when the size of the transmission block is greater than the reference value, the ACK/NACK signal is transmitted in the second subframe, and the second subframe is behind the first subframe in a time domain.
1. A method for transmitting an acknowledgement/not-acknowledgement (ACK/NACK) of a user equipment (UE), the method comprising:
receiving, by the UE, a first downlink control information (DCI) or a second DCI from a base station;
receiving, by the UE, a transport block scheduled by the first DCI or the second DCI from a base station; and
transmitting, by the UE, an ACK/NACK signal for the transport block to the base station in a first subframe or a second subframe,
wherein if the UE has received the first DCI, the UE transmits the ACK/NACK signal in the first subframe and
if the UE has received the second DCI, the UE transmits the ACK/NACK signal in the second subframe, and
wherein the second subframe is later than the first subframe in a time domain.
2. The method of claim 1 , wherein when a subframe receiving the transport block is subframe n, the first subframe is subframe n+4 and the second subframe is subframe n+kadd (kadd is a natural number larger than 4).
3. The method of claim 1 , wherein when the first subframe is subframe n+kdefault (kdefault is any one of natural numbers of 4 or more), the second subframe is subframe n+kdefault+kadd (kadd is a natural number larger than 0).
4. The method of claim 1 , wherein when the first subframe is subframe n+kdefault (kdefault is any one of natural numbers of 4 or more) and the second subframe is subframe n+kdefault+kadd, the kadd is one of a plurality of fixed values.
5. The method of claim 1 ,
wherein the second DCI includes a field indicating the second subframe.
6. A user equipment (UE) comprising:
a transceiver which transmits or receives a radio signal; and
a processor connected with the transceiver,
wherein the processor controls the transceiver to receive a first downlink control information (DCI) or a second DCI from a base station, receive a transport block which scheduled by the first DCI or the second DCI from the base station, and transmit an ACK/NACK for the transport block to the base station in a first subframe or a second subframe,
wherein if the UE has received the first DCI, the UE transmits the ACK/NACK signal in the first subframe, and if the UE has received the second DCI, the UE transmits the ACK/NACK signal in the second subframe, and
wherein the second subframe is later than the first subframe in a time domain.
7. The UE of claim 6 , wherein when a subframe receiving the transport block is subframe n, the first subframe is subframe n+4 and the second subframe is subframe n+kadd (kadd is a natural number larger than 4).
8. The UE of claim 6 , wherein when the first subframe is subframe n+kdefault (kdefault is any one of natural numbers of 4 or more), the second subframe is subframe n+kdefault+kadd (kadd is a natural number larger than 0).
9. The UE of claim 6 , wherein when the first subframe is subframe n+kdefault (kdefault is any one of natural numbers of 4 or more) and the second subframe is subframe n+kdefault+kadd, the kadd is one of a plurality of fixed values.
10. The UE of claim 6 ,
wherein the second DCI includes a field indicating the second subframe.