Abstract:
A data transmission method includes: receiving, by a receive end, a Radio Link Control protocol data unit (RLC PDU); determining, by the receive end, whether the RLC PDU includes a complete service data unit (SDU) or an SDU segment, where the RLC PDU is transmitted in unacknowledged mode (UM); and transmitting, by the receive end to a Packet Data Convergence Protocol (PDCP) layer based on a result of the determining, the complete SDU or a complete SDU assembled by using the SDU segment. The data transmission method implements data transmission in UM at an RLC layer in 5G.
Abstract:
Embodiments of the present invention provide a random access method and an apparatus. PRACH configuration information of is acquired, and a preamble is sent from a corresponding start PRACH resource. The solution includes: acquiring at least one group of physical random access channel PRACH configuration information carried in system information, parsing the at least one group of PRACH configuration information to obtain a corresponding start PRACH resource; and sending a preamble to a base station starting from the start PRACH resource.
Abstract:
A handover method, an access network device, and a terminal device are provided. A handover method comprising: receiving by an access network device, a change instruction message, wherein the change instruction message is used to instruct the access network device to instruct a terminal device to perform an update, generating, by the access network device, an update message, wherein the update message is used to instruct the terminal device to perform an update; and sending by the access network device, the update message to the terminal device. Based on a handover procedure initiated by the second core network device, the connection between the terminal device and the second core network device may be switched to the connection between the terminal device and the first core network device without switching of the access network device, so that a network communication requirement is efficiently met.
Abstract:
A communication device receives a parallel hybrid automatic repeat request (HARQ) communication instruction, where the parallel HARQ communication instruction is used to instruct the communication device to send or receive data in a parallel HARQ manner, where the sending data in a parallel HARQ manner by the communication device is sending, by the communication device, at least one data packet with same content within a transmission time interval; and the receiving data in a parallel HARQ manner by the communication device is receiving at least one data packet with same content within a transmission time interval, and performing combined decoding on the received at least one data packet with same content; and the communication device sends or receives the data in the parallel HARQ manner according to the parallel HARQ communication instruction. According to the present invention, a delay of data transmission can be reduced.
Abstract:
Embodiments of the present disclosure disclose a discontinuous reception (DRX) implementation method, a DRX configuration method, and a related device. The DRX implementation method includes: receiving, by a terminal, DRX configuration information sent by a base station, where the terminal supports short transmission time interval (TTI) subframe transmission; and performing DRX according to the DRX configuration information, a system frame number (SFN), and a number of a short TTI subframe, where the short TTI subframe is a subframe numbered according to a short TTI, and a length of the short TTI subframe is less than 1 ms. In the embodiments of the present disclosure, DRX can be implemented at a short TTI, so as to improve overall performance of a system.
Abstract:
Disclosed are a signaling optimization method and device, to resolve a problem of heavy signaling overheads and long data transmission delay when a user equipment (UE) accesses a network side. The method includes: receiving, by the UE, configuration information sent by a first network side device, where the configuration information includes a list, and the list is a cell list or a base station list; and entering, by the UE, an intermediate state according to the configuration information, where the intermediate state means that: when the UE stores context information of the UE, if the UE moves and a cell movement range falls within a coverage area of a cell or a base station included in the list, the UE performs cell reselection according to the list. Embodiments of the present disclosure are applicable to optimization of signaling transmission between the UE and a network side.
Abstract:
Embodiments of the present disclosure disclose a data transmission method to resolve a collision problem in a data transmission process in a scenario in which different processing latencies coexist. The method includes: receiving, by a base station, a quality of service QoS parameter of at least one service, where the QoS parameter includes any one or a combination of at least two of: latency sensitivity, a resorting indication parameter, an RTT indication parameter, or a TTI indication parameter; configuring, by the base station, a radio bearer according to the QoS parameter; and transmitting the data according to the configured radio bearer.
Abstract:
Embodiments of the present invention provide an apparatus and a method for determining a transmission direction of a secondary carrier. A reference carrier of a first secondary carrier is obtained according to network configuration information, and a transmission direction of a subframe on the first secondary carrier is determined according to a transmission direction of a subframe on the reference carrier, so that data transmission directions of the reference carrier and the first secondary carrier are the same at a same moment. A transmission direction of data of the subframes on the first secondary carrier transmitted in a frequency band adjacent to a frequency band of the reference carrier is determined by using the reference carrier, thereby avoiding interference occurring when the adjacent frequency bands simultaneously transmit data of different directions.
Abstract:
The present disclosure discloses a method and a user equipment for processing frequency information. The method for processing frequency information includes: receiving a measurement control message from a network device, wherein the measurement control message includes frequency information for inter-frequency measurement without compressed mode; storing the frequency information for inter-frequency measurement without compressed mode; performing inter-frequency handover interaction with the network device; and clearing the stored frequency information for inter-frequency measurement without compressed mode according to a frequency used after the handover.
Abstract:
According to the embodiments of the present invention, a report measurement can be implemented between a radio network controller and a user equipment in a CELL_FACH state by using a current MC message and a current MR message; and in a process of implementing the report measurement, coordination between the report measurement and a cell reselection measurement executed by the user equipment can be implemented to minimize an impact of the report measurement on the cell reselection measurement.