Abstract:
A method for operating a terminal in a carrier aggregation system and a corresponding apparatus. In the method, downlink control information (DCI) including a downlink assignment index (DAI) can be received via an enhanced physical downlink control channel (E-PDCCH). The DCI received via the E-PDCCH includes an additional field which does not exist in the DCI received via a physical downlink control channel (PDCCH). If the DAI value is larger than 1, the additional field is used in selecting one of a plurality of PUCCH resources set by the upper layer, and the selected one resource is used in transmitting ACK/NACK.
Abstract:
The present disclosure relates to a method for allocating resource performed by a base station in a wireless communication system that supports a direct communication between user equipments (UEs) includes acquiring position information and transmission power of a first UE and a second UE; and allocating the resource to the first UE and the second UE based on the acquired position information and transmission power of the first UE and the second UE, wherein allocating the resource preferentially allocates the resource to the first UE.
Abstract:
The present invention relates to a method for transmitting and receiving data in a wireless communication system supporting device to device (D2D) communication. The method performed by first User Equipment (UE) includes receiving first control information related to D2D communication from an eNB, transmitting second control information, including resource information related to D2D data transmission, to second UE based on the received first control information, and transmitting the D2D data to the second UE. Receiving the first control information includes allocating, by the eNB, a resource pool related to the D2D communication through high layer signaling.
Abstract:
A method and a user equipment for receiving, and a method and an eNodeB for transmitting, downlink control information in a wireless communication system are discussed. The method for receiving downlink control information according to an embodiment includes receiving information on a starting symbol for monitoring an enhanced physical downlink control channel (EPDCCH) from an eNodeB; and receiving downlink control information by monitoring the EPDCCH in a specific region of a subframe starting from a starting symbol from the eNodeB. The starting symbol is determined based on a downlink bandwidth assigned to the user equipment and the information on the starting symbol.
Abstract:
The present invention relates to a method in which a user equipment transmits and receives a synchronization signal of the user equipment for device-to-device (D2D) communication in a wireless communication system. Specifically, the method comprises a step of monitoring the synchronization signal for the D2D communication (D2DSS), wherein the D2DSS is assigned in an interval of a multiple raster unit from a center frequency.
Abstract:
A method for transmitting a signal by using a plurality of antenna ports and a transmission end apparatus for same are disclosed. A method for a transmission end, which supports signal transmission through the plurality of antenna ports, transmitting the signal using the plurality of antenna ports, according to the present invention, comprises the following steps: transmitting a control channel to a reception end through a first antenna using a first resource domain; and transmitting a data channel to the reception end through the plurality of antenna ports including first antenna port using a second resource domain, wherein the second resource domain and the first resource domain have identical time domains but different frequency domains, and wherein from the time and frequency domains that belong to the first resource domain, the data channel is not transmitted through at least one antenna port from the antenna ports excluding the first antenna port.
Abstract:
A predetermined number of cyclic shift values are defined for a demodulation of uplink data. An available portion of the cyclic shift values from among the cyclic shift values is transmitted to user equipment. Control information for uplink data is transmitted to the user equipment via a physical control channel. The control information includes information indicating one cyclic shift value for generating a reference signal from among the portion of the cyclic shift values. The user equipment transmits the uplink data based on the control information and a reference signal for a demodulation of the uplink data.
Abstract:
Disclosed is a method for transmission of a device-to-device (D2D) signal by a terminal in a wireless communication system. The method for transmission of a D2D signal, according to an embodiment of the present invention, comprises the steps of: receiving a location of resources, for transmitting a scheduling assignment, from a base station; and transmitting the scheduling assignment by means of the resources, wherein the scheduling assignment comprises information indicating a subframe, for transmitting a D2D-related signal in a scheduling assignment period that is subsequent to the subframe in which the scheduling assignment is transmitted.
Abstract:
The present invention provides a method and a device for differing the scheme of accessing a reception device on the basis of the probability of attempted access to the reception device or an indicator similar thereto. The transmission device according to the present invention transmits signals according to a first scheme or a second scheme on the basis of access attempts or indicators similar thereto and receives signals according to the first scheme or second scheme on the basis of the access attempts or indictors similar thereto.
Abstract:
The present invention relates to a wireless communication system. More particularly, the present invention relates to a method and an apparatus for obtaining traffic information by a terminal in a wireless communication system. The method comprises the steps of: broadcasting a first D2D discovery signal requesting traffic information to a plurality of first surrounding terminals; receiving, in response to the first D2D discovery signal, a second D2D discovery signal indicating surrounding traffic information from one or more second surrounding terminals among the plurality of first surrounding terminals; and updating the traffic information of the surrounding area on the basis of the one or more second D2D discovery signals.