Abstract:
Embodiments of the present invention disclose a method and an apparatus for transmitting multi-subframe scheduling signaling, relate to the field of wireless communications technologies, and ensure correct transmission of scheduling information. The present invention includes: acquiring a first correspondence, and determining multiple hybrid automatic repeat request HARQ processes according to the first correspondence, where the first correspondence is a correspondence between process numbers of the multiple HARQ processes and an HARQ process field; generating scheduling signaling according to the first correspondence and the multiple HARQ processes; and sending the scheduling signaling and a data packet corresponding to the multiple HARQ processes scheduled by the scheduling signaling to a user equipment. The embodiments of the present invention are mainly used in a process of transmitting the multi-subframe scheduling signaling.
Abstract:
The present invention discloses a method and a terminal for receiving and sending scheduling information, and relates to the field of communications technologies. The method comprises: obtaining, by a terminal, transmission mode information of each carrier of N carriers configured by a network device, where N is a natural number greater than 1; determining a set of candidate downlink control information DCI formats according to the transmission mode information, where the set of candidate DCI formats includes at least a first DCI format and a second DCI format, where a physical downlink control channel PDCCH corresponding to the first DCI format carries scheduling information of at least two carriers of the N carriers, and a PDCCH corresponding to the second DCI format carries scheduling information of one carrier of the N carriers; and receiving and detecting a PDCCH corresponding to each DCI format in the set of candidate DCI formats.
Abstract:
The present invention discloses a method and device for transmitting ACK/NACK indication information. A network-side device configures at least two carriers for a UE; transmits PDCCH information to the UE; selects one of at least two timing relationships as a first timing relationship; determines a corresponding third uplink subframe and first carrier; indicate related information corresponding to the third uplink subframe and the first carrier to the UE; in the third uplink subframe of the first carrier, determines a first channel resource, and indicates the first channel resource to the UE; and receives an ACK/NACK fed back by the UE on the allocated resource.
Abstract:
The embodiments of the present disclosure disclose a method and an apparatus for information transmission which relate to the communication technologies, so as to solve a problem how to transmit information in a scenario of applying a dynamic TDD subframe. For a user equipment, the method includes: determining, by a user equipment, an attribute of a dynamic subframe, wherein the attribute of the dynamic subframe indicates that the dynamic subframe is an uplink subframe or that the dynamic subframe is a downlink subframe; and performing an information transmission according to the attribute of the dynamic subframe. The embodiments of the present disclosure are applicable to an information transmission in the scenario of applying the dynamic TDD subframe in a time division duplexing system.
Abstract:
This application discloses a communication method and apparatus, and relates to the wireless communication field, so that a frequency resource may be flexibly scheduled, a transmission delay is low, and resource utilization is high. The method includes: receiving, from a network device, first indication information used by a terminal to determine a plurality of first frequency units in a first frequency unit set, and detecting first control information on a frequency unit in the plurality of first frequency units, where the first frequency unit is a candidate frequency unit for carrying the first control information, and the first control information is used to schedule data transmission on a second frequency unit.
Abstract:
Embodiments of this application disclose a measurement reporting method and an apparatus, and relate to the field of communication technologies. When a preset condition is met, a terminal device may complete CSI measurement and reporting in shorter time, so that a network device can obtain channel information in a timely manner, and can perform more accurate data scheduling, to improve reliability of service data transmission.
Abstract:
Embodiments of this application provide a communication method, apparatus, and system. In an example method, in response to determining that a first condition is met, a terminal device determines a target physical uplink control channel (PUCCH) resource, and sends an acknowledgment codebook to a network device on the target PUCCH resource. The first condition includes: a first PUCCH resource overlaps a second PUCCH resource, or a first PUCCH resource and a second PUCCH resource are in a same time unit. The first PUCCH resource carries first feedback information corresponding to first downlink data. The first feedback information includes first negative acknowledgement (NACK) information of the first downlink data but does not include first positive acknowledgement (ACK) information.
Abstract:
A communication method and apparatus to reduce a waiting latency in a retransmission process. A terminal device receives a first PDSCH from a network device. In response to failing to decode data carried on the first PDSCH, the terminal device sends an SRS to the network device on a first time-frequency resource. In response to the network device not receiving feedback information of the first PDSCH, or receiving feedback information of the first PDSCH that is a NACK, the network device retransmits the first PDSCH based on a result of measuring the SRS. After determining that the first PDSCH fails to be decoded, the terminal device directly sends the SRS to the network device by using the first time-frequency resource.
Abstract:
This application provides a communication method and apparatus. One example method includes, obtaining, by a terminal device, a first frequency domain resource and a second frequency domain resource, wherein the first frequency domain resource and the second frequency domain resource are independently configured, and the second frequency domain resource comprises a control-resource set (CORESET) 0 and an initial bandwidth part (BWP); and receiving, by the terminal device, first information, wherein the first information is used to schedule a downlink data channel, the first information comprises frequency domain resource assignment information, wherein the frequency domain resource assignment information indicates a frequency domain resource of the downlink data channel within a range of the first frequency domain resource, and the first information is scrambled by using a group-radio network temporary identifier (G-RNTI) this application.
Abstract:
This application discloses a method for sending a physical uplink shared channel and an apparatus and relates to the communication field, to resolve a problem of how to transmit uplink data to different TRPs by using different precoding matrices. A network device sends indication information to a terminal device, where the indication information is used to indicate first information and second information. The first information is used to indicate first precoding information corresponding to a first nominal PUSCH repetition. The second information is used to indicate second precoding information corresponding to a second nominal PUSCH repetition. The terminal device sends N PUSCHs based on precoding information indicated by the indication information. The precoding information corresponding to the N PUSCHs includes at least one of the first precoding information and the second precoding information.