Abstract:
A first node includes a processor. The processor is configured to execute a computer program thereby causing the first node to generate a first message, and send the first message to a third node. The first message is useable to indicate information about a network environment change of a second node. The second node is configured to execute a first task.
Abstract:
This application discloses a task processing method and an apparatus. The method includes the following steps: A first node determines a first task, and sends a first message. The first node includes a first core network device and/or a first access network device, the first task is a task related to artificial intelligence AI, the first message includes identification information of a second task and/or configuration information of the second task, the second task is a subtask of the first task, the second task is executed by a second node, and the second node is one of nodes configured to execute the first task.
Abstract:
A terminal device sends suggestion information to a network device, where the suggestion information indicates a suggestion for activating or deactivating at least one secondary cell. The terminal device receives a configuration parameter for activating or deactivating the at least one secondary cell from the network device. The suggestion information may be included in an RRC message and includes timer duration information or adjustment amount information, or is included in a MAC CE and includes a state indicator for activating or deactivating a secondary cell, and further includes at least one of the following: effective time length information, probability information, target information, or reward information.
Abstract:
There is provided, a network slice programming and management system for slicing a network to multiple groups of logical network slices composed of a collection of logical network functions, each dedicated to supporting a specific respective use for subscribers of the slice, comprising of a programming interface configured to receive commands for creation and/or configuration of network slice design comprising the constraints and requirements defining an architecture of logical network functions that when deployed form a network slice of a network, the commands include selection of at least one network function and a definition of an interaction of the selected at least one network function with other network functions.
Abstract:
This application provides a communication method, apparatus, and system. In the method, a first terminal device sends request information including a first task to a first network function entity. After receiving the request information of the first task, the first network function entity may manage the first task, to be specific, allocate at least one first node for executing a subtask of the first task, and send configuration information of a subtask corresponding to each first node. The first node executes the subtask of the first task corresponding to the first node based on the configuration information of the subtask, to implement a task-centric communication mode. In addition, when a plurality of first nodes execute subtasks of the first task, task execution efficiency can be improved, thereby improving task service efficiency of the communication system.
Abstract:
Example methods and apparatus for application of a computing bearer is described. One example method includes establishing a first bearer and a second bearer by a first communication apparatus, where the first bearer is a computing bearer between the first communication apparatus and a second communication apparatus, and the second bearer is a computing bearer between the first communication apparatus and a first application. The first communication apparatus receives first data from the second communication apparatus over the first bearer, and forwards the first data over the second bearer. Additionally or alternatively, the first communication apparatus receives second data over the second bearer, and forwards the second data to the second communication apparatus over the first bearer.
Abstract:
The present invention discloses a cellular communication system, an inter-cell handover method for a UE, and a macro base station. The cellular communication system includes a macro base station and at least one micro base station within coverage of the macro base station. The macro base station is configured to: establish a control channel for a UE served by the micro base station; perform an access management operation for the UE served by the micro base station within the coverage of the macro base station; and receive a handover request of the UE and hand over the UE to another micro base station within the coverage of the macro base station. The micro base station is configured to establish a data channel for the accessed UE and perform data transmission with the UE.
Abstract:
A method comprises: a first device obtains, by receiving first signaling, a type and/or a granularity of a computing power capability that needs to be reported, so that a control plane in a network may subsequently perform dynamic computing power scheduling and adjust a computing power scheduling policy, based on the computing power capability reported by the first device, to improve efficiency of sensing the computing power capability by the network and efficiency of configuring computing power.
Abstract:
A communication system, method, and apparatus are provided. The communication system includes a first edge cloud deploying first group of user service nodes (USNs) that form a hash ring corresponding to the first edge cloud and a second edge cloud deploying a second group of USNs that form a hash ring corresponding to the second edge cloud. A USN is configured to provide a service for a terminal device corresponding to the USN. The communication system may further include a mapping system including one or more distributed mapping nodes that store information about the USNs on the first and second edge cloud. The information about a USN includes identification information of the USN and identification information of the terminal device corresponding to the USN. When the mapping system includes a plurality of distributed mapping nodes, the mapping nodes form one or more hash rings corresponding to the mapping system.
Abstract:
This application provides a clock frequency determining method and a clock frequency determining apparatus. The method includes: An access network device receives a combined optical signal from a radio over fiber RoF device, where the combined optical signal is obtained by coupling an optical signal of a first frequency and an optical signal of a second frequency; the access network device converts the combined optical signal into an electrical signal; and the access network device sets a local clock frequency based on a signal frequency of the electrical signal and a first preset rule, where the signal frequency of the electrical signal is equal to an absolute value of a frequency difference between the first frequency and the second frequency.