Abstract:
Embodiments of the present invention disclose a communication method and a communications apparatus. In the communication method, a network-side device determines a resource configuration policy. The network-side device determines an operation mode of a terminal based on the resource configuration policy; broadcasts information about a plurality of configured resource pools and the operation mode, so that the terminal performs sending based on the configured one or more resource pools; and determines, based on the operation mode, that the terminal sends information on one or more resource units of the plurality of resource pools. According to the communication method and the communications apparatus provided in the specific embodiments of the present invention, the one or more resource pools are configured for a plurality of carriers for inter-terminal communication, so that the terminal can send a message on the one or more resource pools of the plurality of carriers.
Abstract:
An uplink control information transmission method includes: determining, by a terminal device, symbols occupied by first uplink control information in M time resource units; and transmitting the first uplink control information based on the symbols occupied by the first uplink control information in the M time resource units, where the first uplink control information occupies some or all symbols that are used to transmit uplink control information in each of the M time resource units, and occupies all symbols that are used to transmit the uplink control information in each of N−M time resource units other than the M time resource units.
Abstract:
Example methods and apparatus for transmitting ACK/NACK information for data are disclosed. One method includes sending a data packet from a base station to a user equipment. A control signaling is transmitted from the base station to the user equipment and is used to indicate a subframe to be used by the user equipment to send ACK/NACK information corresponding to the data packet.
Abstract:
The present invention provides a data transmission method, apparatus, and system, so as to resolve a prior-art problem that data transmission is delayed when a device needs to re-preempt an unlicensed carrier to transmit a retransmission packet. The data transmission method includes: transmitting, by a first device, data to a second device on a first carrier; obtaining, by the first device, first configuration information; and transmitting, by the first device, a retransmission packet of the data to the second device on a second carrier according to the first configuration information, where the first configuration information indicates a sequence or a location of transmitting the retransmission packet on the second carrier.
Abstract:
The present invention provides a transmission resource determining method and a related device. The method includes: receiving, by a first device, status information sent by all devices in a region; determining, by the first device, an idle resource in a resource pool according to a transmission pattern and resources in the resource pool that are used when all the devices in the region send the status information; and determining, by the first device according to a first rule, a first transmission resource from the idle resource as a resource for sending status information of the first device.
Abstract:
A communication method and a communications device are disclosed. A first device in a communications system separately sends, to a second device, responses used to indicate a transmission result of target data: a first response and a second response. An indication manner of the first response is different from an indication manner of the second response. This approach can improve flexibility of a response indication manner. Therefore, the communications system can flexibly adjust indication manners of responses sent at different times to ensure indication precision of the responses while reducing transmission resources of the responses.
Abstract:
A method for determining priorities of scheduling requests including: determining, by a terminal device, that a first time domain resource collides with a second time domain resource, where the first time domain resource is used to transmit a first scheduling request, and the second time domain resource is used to transmit a second scheduling request; determining, by the terminal device, a priority of the first scheduling request and a priority of the second scheduling request according to first priority information of the first scheduling request and first priority information of the second scheduling request; and if the priority of the first scheduling request is higher than the priority of the second scheduling request, sending, by the terminal device, the first scheduling request to a base station.
Abstract:
Example resource indication methods and apparatus are described. One example method includes determining a resource used by a terminal to send an uplink control signal by a base station. The base station sends indication information to the terminal, where the indication information is used to indicate the resource or a target parameter. The target parameter includes at least one of parameters used by the terminal to determine the resource. The described methods are applicable to the field of communications technologies.
Abstract:
According to example data transmission methods and related devices provided in the present disclosure, a base station receives first channel state information (CSI) and an indication message that are sent by a first terminal, and may determine a size of a downlink transmission data block from the base station to the first terminal according to the first CSI and the indication message. In doing so, a downlink transmission rate from the base station to the first terminal matches a downlink transmission rate from the first terminal to a second terminal.
Abstract:
The present invention provides a method and a system for simulating multiple processors in parallel, and a scheduler. In this embodiment, the scheduler maps debug interface information of a to-be-simulated processor requiring debugging onto the scheduler during parallel simulation of multiple processors, so that the scheduler is capable of debugging, by using a master thread, the to-be-simulated processor requiring debugging via a debug interface of the to-be-simulated processor requiring debugging pointed by the debug interface information, thereby implementing debugging during parallel simulation of multiple processors.