Terminal and transmission method
In the present invention, regarding a narrowband used in a subframe for transmitting uplink data, if a switch is made from a first narrowband used in a first subframe to a second narrowband that is different from the first narrowband, with respect to a second subframe continuing to the first subframe, a final one symbol of the first subframe and an initial one symbol of the second subframe are punctured and set as a retuning time to transmit the uplink data in the first narrowband and the second narrowband.
1. An integrated circuit comprising:
circuitry, which, in operation, controls
setting a retuning time, when retuning from a first narrowband for transmitting a first channel in a first subframe to a second narrowband different from the first narrowband for transmitting a second channel in a second subframe, the second subframe being consecutive to the first subframe along a time axis; and
transmitting the first channel and the second channel; wherein:
when the first channel and the second channel are a PUCCH (Physical Uplink Control Channel) for transmitting a channel state information (CSI), the circuitry sets the last symbol of the first subframe and the first symbol of the second subframe as the retuning time, the CSI being generated using a normal PUCCH format, and some of the CSI being punctured for the retuning time.
2. The integrated circuit according to claim 1 , wherein,
when the first channel is the PUCCH for transmitting an ACK/NACK (Acknowledgement/Negative Acknowledgement) signal and the second channel is a PUSCH (Physical Uplink Shared Channel) for transmitting uplink data, the circuitry sets first two symbols of the second subframe as the retuning time.
3. The integrated circuit according to claim 1 , wherein,
when the first channel is the PUSCH for transmitting uplink data and the second channel is the PUCCH for transmitting an ACK/NACK signal, the circuitry sets last two symbols of the first subframe as the retuning time.
4. The integrated circuit according to claim 1 , wherein the circuitry retunes from the first narrowband to the second narrowband using frequency hopping.
5. The integrated circuit according to claim 1 , wherein,
when the first channel and the second channel are the PUCCH for transmitting the ACK/NACK signal, the circuitry sets a last symbol of the first subframe and a first symbol of the second subframe as the retuning time, the ACK/NACK signal being generated using a shortened PUCCH format for the retuning time.
6. The integrated circuit according to claim 1 , wherein the first narrowband and the second narrowband are set for MTC (Machine Type Communication) terminals.