Method for carrying out access procedure and transmitting/receiving data in wireless communication system and device therefor
The method for a terminal receiving data may comprise the steps of: carrying out an access procedure; on the basis of the access procedure, receiving configuration information associated with physical control channel control resources, wherein one or more of the control resources included in the configuration information are each configured into a first control resource group or a second control resource group; receiving a first physical control channel and a second physical control channel on the basis of the configuration information; receiving a first physical data channel on the basis of the first control resource group which is associated with the control resource on which the first physical control channel is received; and receiving a second physical data channel on the basis of the second control resource group which is associated with the control resource on which the second physical control channel is received.
1. A method comprising:
transmitting a preamble for an access procedure;
receiving a response with respect to the preamble;
transmitting a message requesting higher layer connection based on the response;
receiving information indicating setup of the higher layer connection;
receiving configuration information related to a control resource set based on the higher layer connection;
receiving a data channel configuration that includes a first scrambling identifier and a second scrambling identifier;
receiving (i) a first control channel scheduling a first data channel and (ii) the first data channel; and
receiving (i) a second control channel scheduling a second data channel and (ii) the second data channel,
wherein a first control resource set (CORESET) and a second CORESET, which are related to different CORESET pool indexes, are configured based on the configuration information,
wherein the first scrambling identifier is related to a first CORESET pool index for the first CORESET, and the second scrambling identifier is related to a second CORESET pool index for the second CORESET in a same bandwidth part (BWP) as the first CORESET,
wherein a scrambling sequence generator related to each data channel is initialized with c init =n RNTI ·2 15 +q·2 14 +n ID ,
wherein the n RNTI is based on a Radio Network Temporary Identifier (RNTI) associated with the each data channel, the q is a value based on a codeword related to the each data channel, and the n ID is different from a cell identity,
wherein, based on the first data channel being scheduled based on the first CORESET with the first CORESET pool index, the nip equals the first scrambling identifier, and
wherein, based on the second data channel being scheduled based on the second CORESET with the second CORESET pool index, the nip equals the second scrambling identifier.
2. The method of claim 1 , further comprising:
decoding the first data channel and the second data channel.
3. The method of claim 1 ,
wherein the first data channel is descrambled based on the first scrambling identifier and the second data channel is descrambled based on the second scrambling identifier.
4. The method of claim 2 , wherein spatial related information for receiving each control channel is configured for each control resource set.
5. The method of claim 4 , wherein the spatial related information includes at least one of a quasi co-location (QCL) application related parameter, QCL type information, or QCL related reference signal information.
6. A user equipment (UE) comprising:
one or more transceivers;
one or more processors; and
one or more memories configured to store instructions for operations executed by the one or more processors and connected to the one or more processors,
wherein the operations include:
transmitting a preamble for an access procedure;
receiving a response with respect to the preamble;
transmitting a message requesting higher layer connection based on the response;
receiving information indicating setup of the higher layer connection for the message;
receiving configuration information related to a control resource set based on the higher layer connection;
receiving a data channel configuration that includes a first scrambling identifier and a second scrambling identifier;
receiving (i) a first control channel scheduling a first data channel and (ii) the first data channel; and
receiving (i) a second control channel scheduling a second data channel and (ii) the second data channel,
wherein a first control resource set (CORESET) and a second CORESET, which are related to different CORESET pool indexes, are configured based on the configuration information,
wherein the first scrambling identifier is related to a first CORESET pool index for the first CORESET, and the second scrambling identifier is related to a second CORESET pool index for the second CORESET in a same bandwidth part (BWP) as the first CORESET,
wherein a scrambling sequence generator related to each data channel is initialized with c init =n RNTI ·2 15 +q·2 14 +n ID ,
wherein the n RNTI is based on a Radio Network Temporary Identifier (RNTI) associated with the each data channel, the q is a value based on a codeword related to the each data channel, and the n ID is different from a cell identity,
wherein, based on the first data channel being scheduled based on the first CORESET with the first CORESET pool index, the nip equals the first scrambling identifier, and
wherein, based on the second data channel being scheduled based on the second CORESET with the second CORESET pool index, the nip equals the second scrambling identifier.
7. The UE of claim 6 , wherein the operations further include: decoding the first data channel and the second data channel.
8. The UE of claim 6 ,
wherein the first data channel is descrambled based on the first scrambling identifier and the second data channel is descrambled based on the second scrambling identifier.
9. A base station comprising:
one or more transceivers;
one or more processors; and
one or more memories configured to store instructions for operations executed by the one or more processors and connected to the one or more processors,
wherein the operations include:
receiving a preamble for an access procedure;
transmitting a response with respect to the preamble;
receiving a message requesting higher layer connection based on the response;
transmitting information indicating setup of the higher layer connection for the message;
transmitting configuration information related to a control resource set (CORESET) based on the higher layer connection;
transmitting a data channel configuration that includes a first scrambling identifier and a second scrambling identifier;
transmitting (i) a first control channel scheduling a first data channel and (ii) the first data channel; and
transmitting (i) a second control channel scheduling a second data channel and (ii) the second data channel,
wherein a first control resource set (CORESET) and a second CORESET, which are related to different CORESET pool indexes, are configured based on the configuration information,
wherein the first scrambling identifier is related to a first CORESET pool index for the first CORESET, and the second scrambling identifier is related to a second CORESET pool index for the second CORESET in a same bandwidth part (BWP) as the first CORESET,
wherein a scrambling sequence generator related to each data channel is initialized with c init =n RNTI ·2 15 +q·2 14 +n ID ,
wherein the n RNTI is based on a Radio Network Temporary Identifier (RNTI) associated with the each data channel, the q is a value based on a codeword related to the each data channel, and the n ID is different from a cell identity,
wherein, based on the first data channel being scheduled based on the first CORESET with the first CORESET pool index, the nip equals the first scrambling identifier, and
wherein, based on the second data channel being scheduled based on the second CORESET with the second CORESET pool index, the nip equals the second scrambling identifier.