Abstract:
Embodiments of the present invention provide a downlink control information communication method, a terminal, and a base station. The downlink control information communication method includes: receiving first-type downlink control information (DCI) sent by a base station, where the first-type DCI carries DCI indication information, and the DCI indication information is used to indicate a sending status of second-type DCI; determining, based on the DCI indication information in the currently received first-type DCI, whether the currently received first-type DCI is valid; and when the first-type DCI is valid, performing data scheduling based on most recently received second-type DCI and the currently received first-type DCI.
Abstract:
A method for transmitting an absolute grant (AG) value and a user equipment, where the method includes receiving, by a user equipment, a conventional enhanced-absolute grant channel (E-AGCH) and a newly-added grant value detecting E-AGCH that are sent by a network side device, detecting, by the user equipment, AG information carried on at least one channel of the conventional E-AGCH and the newly-added grant value detecting E-AGCH, and controlling data transmission of the user equipment according to a detection result. Hence, continuity of the data transmission of the user equipment may be ensured, and transmission efficiency is improved.
Abstract:
A scheduling grant control method, user equipment, and a network device are disclosed. The method includes: receiving grant information sent by a network device, where the grant information indicates a grant value of data transmission on an uplink data channel by user equipment; determining an effectively starting moment of the grant information according to the grant value and a reception moment at which the grant information is received; and adjusting, on the uplink data channel and based on the grant value, transmission of the data at the effectively starting moment. Based on the foregoing technical solutions, in the scheduling grant control method in embodiments of the present invention, after receiving grant information, UE may flexibly select different effectively starting moments according to different grant information.
Abstract:
A scheduling information transmission method, device, and communications system are provided. The method includes: generating a channel attribute parameter and a serving grant (SG), where the channel attribute parameter and the SG are used for data scheduling of uplink multiple input multiple output (MIMO); and delivering the channel attribute parameter and the SG to a user equipment (UE) through a target channel, where the channel attribute parameter is used by the UE to determine a primary-stream enhanced dedicated channel transport format combination indicator (E-TFCI) and a secondary-stream E-TFCI. In the scheduling information transmission method, device, and communications system that are provided in embodiments of the present invention, the determined E-TFCIs can better adapt to different channel conditions, which improves data transmission performance.
Abstract:
The present invention discloses a multi-carrier receiving device and method. The multi-carrier receiving device includes an antenna, a splitter, a plurality of analog extraction modules, a combiner, an analog-to-digital converter, and a plurality of digital extraction modules, where input ends of the plurality of analog extraction modules are connected to an output end of the splitter; an input end of the combiner is connected to output ends of the plurality of analog extraction modules, and an output end of the combiner is connected to an input end of the analog-to-digital converter; an output end of the analog-to-digital converter is connected to each of the plurality of digital extraction modules; and the plurality of digital extraction modules extracts a single-carrier digital signal from a digital signal obtained after analog-to-digital conversion.
Abstract:
This application relates to the field of communications technologies, and discloses a communication method and apparatus. The method includes: when a terminal device determines transmission statuses of N time-frequency resource groups based on transmission indication information sent by a network device, if a time-frequency resource group is separated into a former half and a latter half by one or more first symbols in time domain, the former half of the time-frequency resource group may be combined into a previous time-frequency resource group of the time-frequency resource group, or the latter half of the time-frequency resource group may be combined into a next time-frequency resource group of the time-frequency resource group, to determine a transmission status. This ensures continuity, in time domain, of the time-frequency resource group indicated by the transmission indication information, and can avoid unnecessary uplink transmission cancellation or downlink transmission interruption, thereby increasing a network capacity.
Abstract:
A method for sending and receiving a HARQ-ACK message is provided. The method includes: A terminal device selects a first PUCCH resource from at least one first PUCCH resource set based on a first time subunit. The first time subunit is a time subunit in which the HARQ-ACK message is located. The first PUCCH resource is a PUCCH resource in the first time subunit. The at least one first PUCCH resource set is configured by a network device for the terminal device based on a time unit. The terminal device sends the HARQ-ACK message to the network device based on the first PUCCH resource.
Abstract:
Channel information sending methods or channel information receiving methods are provided. One example method includes that a network device configures for a terminal device Q DMRS ports used for measurement, where the Q DMRS ports used for measurement include M DMRS ports that can carry downlink data, and Q is greater than M; and selects, based on channel information of P DMRS ports that is sent by the terminal device, an appropriate DMRS port to send the downlink data, where the P DMRS ports belong to the Q DMRS ports used for measurement.
Abstract:
Embodiments of this application provide a blind detection method. A terminal side device receives first indication information from a network side device, where the first indication information is used to determine at least one of N time units, a first time unit in the N time units corresponds to a type of terminal operation, the terminal operation is not performing a first operation, a second operation, and a third operation, the N time units belong to a same transmission time unit, and any one of the N time units includes at least one symbol, where N is an integer greater than 0. The terminal side device determines the N time units based on the first indication information, and performs the corresponding terminal operation in the first time unit in the N time units.
Abstract:
A resource determining method includes: receiving configuration information of a PDCCH candidate set, the PDCCH candidate set includes a first PDCCH candidate group and a second PDCCH candidate group, the first PDCCH candidate group includes a first PDCCH candidate, the second PDCCH candidate group includes a plurality of second PDCCH candidates, and a resource corresponding to a target first PDCCH candidate in the first PDCCH candidate group and a resource corresponding to a target second PDCCH candidate in the second PDCCH candidate group have a first overlapping part; receiving a first PDCCH, where the first PDCCH indicates a second resource available for a first PDSCH, and the first resource and the second resource have a second overlapping part; and receiving the first PDSCH on a resource obtained by removing the second overlapping part from the second resource.