Method and user equipment for receiving downlink channel, and method and base station for transmitting downlink channel
A method and apparatus for transmitting/receiving a downlink channel in a wireless communication system are provided. A physical downlink control channel (PDCCH) can be transmitted using one or more resource element groups (REGs) among a plurality of REGs in a transmission time interval (TTI). Each of the plurality of REGs occupies 12 consecutive resource elements (REs) belonging to a physical resource block (PRB) along a frequency domain within an orthogonal frequency division multiplexing (OFDM) symbol with or without a reference signal (RS) in the TTI.
1. A method for wireless communication, the method comprising:
receiving, at a user equipment (UE), a physical downlink control channel (PDCCH) on a resource block (RB) set for PDCCH reception; and
receiving, at the UE, a physical downlink shared channel (PDSCH) based on the PDCCH,
wherein the RB set includes a plurality of resource element groups (REGs),
wherein each REG of the plurality of REGs equals one RB in a frequency domain during one orthogonal frequency division multiplexing (OFDM) symbol,
wherein the PDCCH consists of one or more consecutive control channel elements (CCEs), and
wherein each of the one or more consecutive CCEs consists of multiple REGs that comprise at least i) N REGs on an RB within N OFDM symbols used for the PDCCH reception on the RB set and ii) N REGs on a next RB within the N OFDM symbols on the RB set, where N is a positive integer greater than 1.
2. The method according to claim 1 , wherein each REG of the plurality of REGs occupies a respectively different RB or a respectively different OFDM symbol.
3. The method according to claim 1 , wherein the PDCCH is received in a transmission time interval (TTI) which is equal to or shorter than 0.5 ms in a time domain.
4. The method according to claim 1 , wherein each RB on the RB set is defined as 12 consecutive subcarriers in the frequency domain.
5. A method for wireless communication, the method comprising:
transmitting, from a base station (BS), a physical downlink control channel (PDCCH) on a resource block (RB) set for PDCCH transmission; and
transmitting, from the BS, a physical downlink shared channel (PDSCH) based on the PDCCH,
wherein the RB set includes a plurality of resource element groups (REGs),
wherein each REG of the plurality of REGs equals one RB in a frequency domain during one orthogonal frequency division multiplexing (OFDM) symbol,
wherein the PDCCH consists of one or more consecutive control channel elements (CCEs), and
wherein each of the one or more consecutive CCEs consists of multiple REGs that comprise at least i) N REGs on an RB within N OFDM symbols used for the PDCCH reception on the RB set and ii) N REGs on a next RB within the N OFDM symbols on the RB set, where N is a positive integer greater than 1.
6. The method according to claim 5 , wherein each REG of the plurality of REGs occupies a respectively different RB or a respectively different OFDM symbol.
7. The method according to claim 5 , wherein the PDCCH is transmitted in a transmission time interval (TTI) which is equal to or shorter than 0.5 ms in a time domain.
8. The method according to claim 5 , wherein each RB on the RB set is defined as 12 consecutive subcarriers in the frequency domain.
9. A user equipment (UE), comprising:
a transceiver,
a processor, and
a memory storing instructions that cause the processor to perform operations comprising:
receiving, via the transceiver, a physical downlink control channel (PDCCH) on a resource block (RB) set for PDCCH reception; and
receiving, via the transceiver, a physical downlink shared channel (PDSCH) based on the PDCCH,
wherein the RB set includes a plurality of resource element groups (REGs),
wherein each REG of the plurality of REGs equals one RB in a frequency domain during one orthogonal frequency division multiplexing (OFDM) symbol,
wherein the PDCCH consists of one or more consecutive control channel elements (CCEs), and
wherein each of the one or more consecutive CCEs consists of multiple REGs that comprises at least i) N REGs on an RB within N OFDM symbols used for the PDCCH reception on the RB set and ii) N REGs on a next RB within the N OFDM symbols on the RB set, where N is a positive integer greater than 1.
10. The UE according to claim 9 , wherein each REG of the plurality of REGs occupies a respectively different RB or a respectively different OFDM symbol.
11. The UE according to claim 9 , wherein the PDCCH is received in a transmission time interval (TTI) which is equal to or shorter than 0.5 ms in a time domain.
12. The UE according to claim 9 , wherein each RB on the RB set is defined as 12 consecutive subcarriers in the frequency domain.
13. A base station (BS), comprising:
a transceiver,
a processor, and
a memory storing instructions that cause the processor to perform operations comprising:
transmitting, via the transceiver, a physical downlink control channel (PDCCH) on a resource block (RB) set for PDCCH transmission; and
transmitting, via the transceiver, a physical downlink shared channel (PDSCH) based on the PDCCH,
wherein the RB set includes a plurality of resource element groups (REGs),
wherein each REG of the plurality of REGs equals one RB in a frequency domain during one orthogonal frequency division multiplexing (OFDM) symbol,
wherein the PDCCH consists of one or more consecutive control channel elements (CCEs), and
wherein each of the one or more consecutive CCEs consists of multiple REGs that comprises at least i) N REGs on an RB within N OFDM symbols used for the PDCCH reception on the RB set and ii) N REGs on a next RB within the N OFDM symbols on the RB set, where N is a positive integer greater than 1.
14. The BS according to claim 13 , wherein each REG of the plurality of REGs occupies a respectively different RB or a respectively different OFDM symbol.
15. The BS according to claim 13 , wherein the PDCCH is transmitted in a transmission time interval (TTI) which is equal to or shorter than 0.5 ms in a time domain.
16. The BS according to claim 13 , wherein each RB on the RB set is defined as 12 consecutive subcarriers in the frequency domain.