Abstract:
A device-to-device (D2S) station including a receiving module, configured to receive a first DDM that is broadcast by a neighboring station at a first preset power, where the first DDM includes user information of the neighboring station, an obtaining module, configured to obtain information about a link between the D2D station and the neighboring station according to the first DDM received by the receiving module, a time determining module, configured to determine, according to the information that is about the link between the D2D station and the neighboring station and obtained by the obtaining module, a time interval for broadcasting a second DDM, and a sending module, configured to broadcast, at a second preset power, the second DDM at the time interval determined by the time determining module.
Abstract:
The present invention provides a data frame sending and receiving method and apparatus. The data frame sending method includes: receiving, by a first access point, first interference power parameters fed back by associated stations of the first access point, and receiving second interference power parameters sent by a second access point; if determining that a channel on which the first access point works is currently being occupied by the second access point, determining to-be-scheduled stations and transmission powers of the first access point for the to-be-scheduled stations, sending scheduling indication signaling at the determined transmission powers, and receiving scheduling indication response signaling sent by a schedulable station; and sending a data frame to the schedulable station at a transmission power corresponding to the schedulable station among the determined transmission powers.
Abstract:
Embodiments of the present invention provide a method and an apparatus for adjusting a network configuration, and the method includes: receiving requirement information sent by a terminal device (UE), where the requirement information includes electricity-saving request information of the UE or a maximum transmit power of the UE; acquiring a mapping relationship corresponding to the requirement information, where the mapping relationship is a correspondence between requirement information and a service mode; acquiring service mode information according to the mapping relationship and sending the service mode information to the UE, so that the UE acquires selection information according to the service mode information; and receiving the selection information sent by the UE and modifying a configuration of a network device according to a service mode corresponding to the selection information, where the selection information corresponds to a service mode in the service mode information.
Abstract:
In various embodiments, an access point sends a first frame. The first frame carries a TXOP handover enforcement THE indication field which is a first value or a second value. The first value instructs a station that has accessed a channel to hand over a held TXOP to the access point, and the second value instructs the station that has accessed the channel to hand over the held TXOP to the access point when a handover condition is satisfied. It can be learned that the STA hands over the held TXOP to the AP. Therefore, the AP may be a TXOP holder through the TXOP handover even if the AP fails to obtain the channel through contention, so that a probability of holding the TXOP by the AP is improved, a probability of scheduling a STA by the AP is improved, and system resource utilization is improved.
Abstract:
The method includes generating, by an access point (AP), signaling that includes an AP identifier (ID) field, a bandwidth (BW) field, a guard interval (GI) field, a cyclic redundancy check (CRC) field, and a tail field, the AP ID field is used to indicate an ID of the AP, the BW field is used to indicate bandwidth required for data transmission subsequent to the signaling, the GI is used to indicate a length of a cyclic prefix (CP) required for data transmission subsequent to the signaling, the CRC field is used to guard a field before the CRC field in the signaling, and the Tail field is used to empty an encoder and a decoder, where the CRC field and the Tail field are the last two fields of the signaling. The method also includes sending, by the AP, the signaling.
Abstract:
A method comprises constructing, by an access point (AP), a radio frame within a scheduling window, the radio frame including at least a preamble part compatible with an existing IEEE 802.11 preamble legacy preamble, a preamble part used in a next-generation IEEE 802.11 standard (HEW preamble), and the first downlink subframe (DL subframe); sending the Legacy preamble, the HEW preamble and the first DL subframe in the radio frame; receiving at least one uplink subframe (UL subframe) located after the first DL subframe; wherein each of the at least one UL subframes is triggered by one DL subframe located before the UL subframe.
Abstract:
The present invention discloses a data sending method and a communications device. The method includes: sensing, by a communications device, a carrier located in a first unlicensed frequency band, where the first unlicensed frequency band includes at least one carrier; and sending, by the communications device, data on a carrier whose channel state is sensed to be idle. The communications device senses a first carrier in the first unlicensed frequency band, and sends the data on the first carrier that is successfully sensed to be idle. Another communications device may also sense in the first unlicensed frequency band, and send data in the first unlicensed frequency band when sensing successfully. Therefore, users of different services may fairly contend and coexist in an unlicensed frequency band.
Abstract:
A channel access method is provided. Under the method, a network element performs random backoff listen before talk (LBT) for channel preemption, and after the preemption succeeds, performs signal transmission in the first transmission time interval TTI within a maximum channel occupancy time MCOT. The network element also performs nonrandom backoff LBT for channel preemption before another at least one TTI within the maximum channel occupancy time MCOT.
Abstract:
This application relates to the field of communications technologies, and in particular, to a communication method in a directional communications system, and a receiver. The method of this application includes: receiving a request message; and performing directional channel listening in a direction facing a transmitter, and sending a response message if it is learned through the listening that a channel is available, or skipping sending the response message if otherwise. According to the method of this application, after receiving the request message, the receiver performs directional channel listening in the direction facing the transmitter.
Abstract:
This application relates to the field of wireless communications technologies, and provides a method for communication between terminals, a network-side device, and a terminal. The method discloses that the network-side device allocates, to the terminal, time-frequency resources for transmitting uplink information and sidelink information. On the time-frequency resources and at a same moment in a range of time domain-frequency resources, the terminal transmits the uplink information used for performing uplink beamform training to the network-side device, and transmits the sidelink information used for performing sidelink beamform training to another terminal. According to solutions provided in this application, based on conventional uplink and downlink beamform training procedures, the terminal performs the sidelink beamform training without additionally using a new time-frequency resource.