Abstract:
Embodiments of the present disclosure relate to the field of communications technologies, and disclose a data stream transmission method, and a related device and system. The data stream transmission method includes: a user equipment establishes a first network link over a first network and a second network link over a second network with a network side, where the first network is different from the second network; the user equipment associates the first network link with the second network link; and the user equipment distributes, according a scheduling algorithm, a data stream to the first network link and to the second network link for transmission. In the embodiments of the present disclosure, hybrid transmission of a data stream may be implemented in different networks. Compared with an existing solution, in the embodiments of the present disclosure, distribution may be performed more flexibly, and a quality of service assurance may be improved.
Abstract:
Embodiments of the present invention relate to the field of communications technologies, and disclose a method for accessing media content, a service server and a mobile terminal, where the method for accessing the media content includes: receiving an access request which is for accessing the media content and is sent by the mobile terminal; according to the access request, generating an address list for accessing the media content, where the address list contains a first access address of a first network access manner and a second access address of a second network access manner; sending the address list to the mobile terminal. By using the present invention, when the mobile terminal is switched to a new network access manner, the mobile terminal continues to access the media content according to an access address which corresponds to the new network access manner and is in the address list.
Abstract:
The present invention provides a virtual multiple-input multiple-output communication method and device. The method includes: determining a user set to which a user equipment in a sector belongs, where the user set includes a first user set and a second user set, a user equipment in the first user set is in a beam coverage area of a first antenna group in the sector but is not in a beam coverage area of a second antenna group of the sector, and a user equipment in the second user set is in the beam coverage area of the second antenna group but is not in the beam coverage area of the first antenna group (101); and selecting, when a scheduled user equipment belongs to the first user set, an unscheduled user equipment in the second user set for pairing.
Abstract:
The technology of this application relates to a transmission control method and apparatus. The method includes obtaining traffic information of a first node at M sample moments, where M is a positive integer greater than or equal to 1, determining first traffic information of the first node at a first moment based on the traffic information of the first node at the M sample moments, where the first moment does not belong to the M sample moments, determining first rate-limited traffic based on the first traffic information, where the first rate-limited traffic indicates maximum traffic that is allowed to pass through a first queue of the first node at the first moment, and limiting traffic of the first queue at the first moment based on the first rate-limited traffic.
Abstract:
A decoding method performed by a receive end device is disclosed. The decoding method includes: receiving a first bit signal; performing level-M forward error correction (FEC) decoding on the first bit signal to obtain a second bit signal, where M is a positive integer greater than zero; checking the second bit signal to obtain a first check result; performing level-(M+1) FEC decoding on the second bit signal based on the first check result to obtain a third bit signal; and, upon determining that M+1 reaches a first preset threshold, performing data processing on the third bit signal to obtain a fourth bit signal, where the fourth bit signal is used by the receive end device to obtain service data transmitted by a transmit end device.
Abstract:
The channel switch method includes: playing stream media data of a current channel by a playing module of a stream media client; after a channel switch agent receives a channel switch request message sent from a service module of the stream media client, sending the channel switch request message to a stream media server by the channel switch agent, wherein the channel switch request message carries with switched channel ID information and client ID information of the stream media client; sending stream media data corresponding to the switched channel ID to the playing module of the stream media client by the stream media server through a stream playing session corresponding to the client ID, and playing the stream media data corresponding to the switched channel ID by the playing module.
Abstract:
A cloud resource recommendation method and a related device are provided. The cloud resource recommendation device obtains a requirement of a user on a cloud resource and obtains information about the cloud node, where the requirement of the user includes a quality of service requirement of the user on a routing path between a cloud node and an access device of the user, where the information includes quality of service information of a routing path between the cloud node and the access device of the user. The cloud resource recommendation device determines a cloud resource recommendation result based on the quality of service requirement and the quality of service information, where the cloud resource recommendation result includes a recommended cloud node, and quality of service information of at least one routing path between the recommended cloud node and the access device of the user meets the quality of service requirement.
Abstract:
The present disclosure relates to modulation methods. One example method includes performing distribution matching (DM) encoding on N1 first bits to obtain N2 first symbols, determining N4 to-be-phase-modulated symbols whose signal powers are equal to a preset signal power from the N2 first symbols, performing phase modulation on the N4 to-be-phase-modulated symbols based on N3 second bits to obtain N4 second symbols, performing binary labeling (BL) encoding on the N4 second symbols and N2-N4 first symbols to obtain N5 BL encoded output bits, performing forward error correction (FEC) encoding on the N5 BL encoded output bits to obtain N6 FEC redundant bits, and performing quadrature amplitude modulation (QAM) mapping based on the N6 FEC redundant bits and the N5 BL encoded output bits to obtain N2 target QAM signals.
Abstract:
A method, device and system for regulating power consumption are provided in the embodiments of the present invention. A method for regulating power consumption includes: obtaining, by a base station, an application point and a configuration parameter; sending, by the base station, an indication message to a terminal according to the application point and configuration parameter; regulating, by the base station, the power consumption of the base station by using the configuration parameter at the application point; the configuration parameter comprises cell antenna information or system bandwidth information; the indication message instructs the terminal to use the configuration parameter at the application point. Under the condition that user's normal communication is remained, the number of cell antennas or the cell bandwidth is dynamically changed. This reduces the power consumption of the network device.
Abstract:
A method, device and system for regulating power consumption are provided in the embodiments of the present invention. A method for regulating power consumption includes: obtaining, by a base station, an application point and a configuration parameter; sending, by the base station, an indication message to a terminal according to the application point and configuration parameter; regulating, by the base station, the power consumption of the base station by using the configuration parameter at the application point; the configuration parameter comprises cell antenna information or system bandwidth information; the indication message instructs the terminal to use the configuration parameter at the application point. Under the condition that user's normal communication is remained, the number of cell antennas or the cell bandwidth is dynamically changed. This reduces the power consumption of the network device.