Abstract:
A method is provided for transmitting Device-to-Device (D2D) data by a first user equipment (UE) in a wireless communication system. The first UE configured a subframe set for D2D communication through a Radio Resource Control (RRC) signaling. The first UE receives a Physical Downlink Control Channel (PDCCH) including first D2D scheduling information from a base station in a subframe #n, wherein n is an integer of 0 or more. The first UE transmits the D2D data to a second UE based on the first D2D scheduling information, in a first available subframe of the subframe set for D2D communication after a subframe #(n+k), where k is a positive integer.
Abstract:
The present invention relates to a method and a device for transmitting, by a first terminal, a device-to-device (D2D) signal in a wireless communication system. Particularly, the method comprises the steps of: performing D2D transmission scheduling for a device-to-device synchronization signal (D2DSS) and a device-to-device channel (D2DCH); and transmitting a D2D signal on a first D2D subframe among a plurality of D2D subframes, wherein the first D2D subframe is a D2D subframe in which a D2D synchronization signal transmission for the first terminal is configured among D2D subframes configured to enable a D2D synchronization signal transmission, and the D2D signal drops the D2DCH when the D2DSS and the D2DCH are simultaneously scheduled on the first D2D subframe.
Abstract:
The present invention provides a method for transmitting and receiving a signal for device-to-device (D2D) communication and apparatus for the same, which are used in a wireless access system supporting D2D communication. As one aspect of the present invention, a method for transmitting and receiving a D2D signal by a terminal comprises the steps of: determining whether a D2D signal can be transmitted and received in at least one frequency band; transmitting, to a base station, information on a frequency band capacity; and generating the D2D signal according to the information on a frequency band capacity.
Abstract:
Disclosed is a method for acquiring a synchronization by a device to device (D2D) terminal in a wireless communication system, according to an embodiment of the present invention, the method comprising the steps of: measuring D2D synchronization signal reception power and/or D2D synchronization signal reception quality from a D2D synchronization signal; selecting a D2D synchronization signal to be used for synchronization acquisition on the basis of the measurement result; and acquiring a synchronization from the selected D2D synchronization signal, wherein the D2D synchronization signal reception quality is a value obtained by dividing the D2D synchronization signal reception power by the differential between total reception power and the D2D synchronization signal reception power.
Abstract:
Disclosed is a method for allowing a terminal to transmit and receive signals to and/from a base station in a wireless communication system using a time division multiplexing method. Specifically, the method comprises the steps of: receiving a request signal for resetting into a second uplink/downlink setting while transmitting and receiving a signal according to a first uplink/downlink setting; terminating an uplink retransmission process associated with a specific uplink subframe when the use of the specific uplink subframe is changed into a downlink subframe according to the second uplink/downlink setting; and applying the second uplink/downlink setting at a specific time point to transmit and receive signals.
Abstract:
Disclosed are a method for measuring channel state information in a wireless access system that supports an environment in which an amount of uplink resource and an amount of downlink resource dynamically change, and an apparatus for the method. In detail, the method comprises: a step of receiving interference measurement resource information including information on the location of an interference measurement resource set in an uplink resource for interference measurement; a step of measuring interference being received from an adjacent cell at the location of the interference measurement resource a step of calculating channel state information using the measured interference value; and a step of transmitting the calculated channel state information to a base station.
Abstract:
A transmission terminal randomly selects, from a base station, one signature for device to device (D2D) communication from among a prescribed number of signatures for D2D communication, transmits a first message by means of resources that have been randomly selected from among predetermined time-frequency resources, receives, from the base station, a second message that comprises control information for a D2D broadcast or a groupcast signal transmission, uses the control information received via the second message to transmit a third message including the D2D broadcast or groupcast signal to one or more reception terminals, and receives a retransmission request signal for the third message from any one or more among the one or more reception terminals, the retransmission of the third message being carried out by means of a device other than the transmission terminal.
Abstract:
Disclosed are a method and an apparatus for uplink transmission. A method for uplink transmission for a machine-type communication (MTC) terminal comprises: a step of transmitting first uplink (UL) information via a first UL channel in a first terminal-specific frequency band of a first subframe; and a step of transmitting second UL information via a second UL channel in a second terminal-specific frequency band of a second subframe subsequent to the first subframe. The first subframe and the second subframe each include a plurality of orthogonal frequency division multiplexing (OFDM) symbols. If the first terminal-specific frequency band and the second terminal-specific frequency band do not overlap one another, the second UL information may not be transmitted in a first OFDM symbol of the second subframe. Thus, a wireless resource can be efficiently utilized.
Abstract:
A method of performing interference management by a base station (BS) in a wireless communication system. The BS receives, from another BS, an interference management message including a silenced subframe pattern of the another BS. The BS transmits, to a user equipment (UE), a radio resource configuration (RRC) message including subframe set information for interference measurement, and receives, from the UE, channel state information (CSI) feedback including a result of the interference measurement. The subframe set information is configured based on the silenced subframe pattern of the another BS, and the subframe set information restricts the interference measurement of the UE to specific subframes.
Abstract:
Disclosed is a method by which a transmission terminal transmits a signal by using device-to-device direct communication in a wireless communication system. Particularly, the method comprises the steps of: identifying each of a plurality of resource units as a clean unit or a dirty unit; selecting one of the clean units as a transmission resource if the number of clean units is a first threshold value or more; selecting, as the transmission resource, one among the one or more dirty units from which interference that is a second critical value or more is detected if the number of clean units is less than the first threshold value; and transmitting a device-to-device direct communication signal by using the selected transmission resource.