Abstract:
The present invention discloses a method for transmitting/receiving data in a wireless communication system supporting NB-IoT and a device for the method. More specifically, the method comprises monitoring a first search space configured for a first NPDCCH, wherein the first NPDCCH includes first control information for scheduling a first NPDSCH carrying an SC-MCCH; receiving the first NPDSCH based on the first control information; monitoring a second search space configured for a second NPDCCH by using a group identifier acquired through the SC-MCCH, wherein the second NPDCCH includes second control information for scheduling a second NPDSCH carrying an SC-MTCH; and receiving the second NPDSCH based on the second control information, wherein the second NPDCCH and the second NPDSCH are transmitted on one carrier, and carrier configuration information representing the one carrier is carried through the SC-MCCH.
Abstract:
A disclosure of the present specification provides a method for transmitting data by a transmitter. The method may comprise the steps of: when a transport block (TB) is divided into n data blocks, adding additional information after each of the n data blocks; and adding a cyclic redundancy check (CRC) after the last additional information. Here, the CRC may be generated on the basis of the n data blocks, and the n pieces of additional information added after each of data blocks.
Abstract:
A method for transmitting signals based on dual sensing in a wireless communication system is disclosed. One or more sensor nodes receive Gaussian codes corresponding respectively to the one or more sensor nodes, allocated from a fusion center. The one or more sensor nodes determine whether to operate at a specific time. At least one sensor node that has determined to operate among the one or more sensor nodes multiplies the Gaussian codes by a transmission signal and transmits the multiplied signal to the fusion center.
Abstract:
Disclosed are a method and apparatus for performing PUCCH transmission in a wireless communication system. The method by which a terminal performs PUCCH transmission, according to an embodiment of the present disclosure, may comprise the steps of: receiving, from a base station, configuration information related to the number of first plurality of unit times at which the same PUCCH is to be transmitted; receiving DCI from the base station; and performing the PUCCH transmission at each of unit times corresponding to the number of second plurality of unit times that are based on information related to the DCI.
Abstract:
According to at least one of the embodiments disclosed in the present specification, configuration information for a first signal is received, a second signal including information about the first signal is received from at least one of time resources determined on the basis of a plurality of periodicities, the validity of the configuration information for the first signal is determined on the basis of the reception of the second signal, and an operation related to the first signal is performed on the basis of the determination that the configuration information for the first signal is valid, wherein the terminal can determine the validity of the configuration information for the first signal on the basis of the position of a time resource at which the second signal was received within a corresponding time resource group.
Abstract:
A common downlink signal of a first cell may be transmitted/monitored on the first cell in a first mode with a first periodicity. A configuration related to a second mode including cell information regarding a second cell associated with the first cell may be provided. Based on transition from the first mode to the second mode, the common downlink signal of the first cell may be transmitted/monitored on the second cell within a first time period.
Abstract:
A method for a terminal to perform positioning in a wireless communication system according to an embodiment disclosed herein comprises the steps of: receiving configuration information related to a resource for a measurement for the positioning; receiving configuration information related to discontinuous reception (DRX); and performing the measurement for the positioning on the basis of the configuration information related to the resource for the measurement, wherein the measurement for the positioning is performed on the basis of a measurement period for performing the measurement for the positioning in a radio resource control (RRC) deactivation state, and the measurement period is configured within a DRX cycle that is the period according to which a DRX operation of the terminal is performed.
Abstract:
The present disclosure discloses a method by which a terminal receives downlink control information (DCI) in a wireless communication system. Particularly, the method is characterized by: receiving first information related to discontinuous reception (DRX); a timer for a DRX active time running on the basis of the first information; receiving, on the basis of the DRX active time, second information related to physical downlink control channel (PDCCH) monitoring adaptation; performing, on the basis of the second information, the PDCCH monitoring adaptation during a certain duration; and on the basis of a PDCCH monitoring occasion for a wake-up signal (WUS) being included within a duration in which the DRX active time and the certain duration overlap each other, receiving DCI including the WUS on the PDCCH monitoring occasion.
Abstract:
A method and apparatus for performing uplink transmission and reception in a wireless communication system are disclosed. The method performed by a UE, according to an embodiment of the present disclosure, comprises the steps of receiving, from a base station, first configuration information related to a first initial uplink bandwidth part for a RedCap UE; and transmitting a first PUCCH to the base station on the first initial uplink BWP by using a PUCCH resource set provided by second configuration information related to a PUCCH resource for the RedCap UE, wherein information related to deactivation of frequency hopping for transmission of the first PUCCH may be received together with the second configuration information from a base station.
Abstract:
A terminal according to the present disclosure receives configuration information for a paging early indication (PEI) including first offset information and second offset information, monitors a first physical downlink control channel (PDCCH) for the PEI on the basis of the configuration information for the PEI, and monitors a second PDCCH for scheduling a paging message on the basis of paging occasions (POs) associated with the PEI, wherein the first offset information may indicate an interval between a paging frame (PF) and a first frame including monitoring opportunities of the first PDCCH, and the second offset information may indicate an interval between a lead monitoring opportunity from among the monitoring opportunities of the first PDCCH and the start of the first frame.