Abstract:
A method and a terminal device for keeping a subscriber identity module card in a standby state are provided. The method for keeping a subscriber identity module card in a standby state includes receiving, by a terminal device, an enabling request, where the enabling request is used for requesting simultaneous standby of a first subscriber identity module card and a second subscriber identity module card; invoking a third-party invocation interface provided by an operating system of the terminal device; performing interaction with a subscriber identity module card control module, so as to complete a network access process of the first subscriber identity module card on the basis of a data file of the first subscriber identity module card; and keeping the first subscriber identity module card and the second subscriber identity module card in a standby state at the same time according to the enabling request.
Abstract:
Disclosed is a content encoding pre-synchronization method, comprising: a network device selecting a popular index with a high frequency of appearance from all indexes stored by the network device; determining, among base stations under management, another base station that is of the same type as a base station receiving the popular index, and when the link is idle, sending the popular index and data corresponding to the popular index to the base station. In the content encoding pre-synchronization method provided by an embodiment of the present invention, a popular index and a base station to which the index may be sent can be predetermined, and when the link is idle, the popular index is sent to the corresponding base station in advance, thereby reducing the sending delay in busy time, improving the compression ratio in busy time, and avoiding a loss of synchronization data caused by a busy link.
Abstract:
A method for service migration between user devices includes: receiving a migration from request MFR transmitted by a service migration protocol application SMPA entity of a first device; transmitting a service migration protocol SMP resolution request SRR to a service migration protocol server SMPS entity; receiving a response message transmitted by the SMPS entity; transmitting a migration to request MTR to an SMPA entity of the second device; transmitting a service acquired from the service source device to the second device, after the second device initiates the service application and switches the first SID to the second SID, so as to migrate the service of the first device to the second device. The present invention enables each user to perform seamless migration between different devices of the user in different situations without interrupting the service reception, or even receive the service with a preference device of the user.
Abstract:
In a manner in which a network device configures computing power of a terminal device based on first configuration information, the terminal device serves as a computing node to participate in a computing process corresponding to a computing power instance. This can effectively improve a computing resource reuse degree, to increase network revenue. In the method, the terminal device receives a first message from the network device, where the first message includes first configuration information, and the first configuration information includes configuration information of at least one computing power instance; the terminal device obtains first information, where the first information indicates a first computing power instance, and the first computing power instance is a computing power instance in the at least one computing power instance; and the terminal device executes the first computing power instance based on the first information.
Abstract:
Embodiments of the present disclosure provide a Radio-resource management (RRM) configuration device, and corresponding method, for a network comprising a plurality of access nodes. The device is configured to divide the plurality of access nodes of the network into clusters, and to select at least one access node of each cluster as RRM controller. Further, the device is configured to determine the non-selected access nodes of each cluster as slave nodes, and to select, for each cluster, an RRM split between each slave node and the at least one RRM controller of the respective cluster. The device is also configured to transmit, to each access node, information about its cluster, the at least one RRM controller of the cluster, and the selected RRM split.
Abstract:
A communications system comprising a core network, a radio access network and at least one user equipment device, wherein: the core network is configured for communicating with the user equipment device to form a first estimate of the location of the user equipment device; the radio access network is configured for communicating with the user equipment device to form a second estimate of the location of the user equipment device; and the core network is configured for forming a third estimate of the location of the user equipment device by synthesizing the first and second estimates.
Abstract:
Embodiments of the present invention provide an access network system, and a data packet processing method and apparatus. The system includes: a controller, configured to perform configuration a flow table for a switching module and a protocol function for at least one functional module; the switching module, configured to send a first data packet to a first functional module of the at least one functional module according to the flow table configured by the controller, where the first functional module is a functional module first indicated in the flow table to process the first data packet; and the at least one functional module, configured to process the first data packet according to the protocol function configured by the controller.
Abstract:
A method and a terminal device for keeping a subscriber identity module card in a standby state, including receiving an enabling request to enable dual standby of a first subscriber identity module (SIM) card and a second SIM card in the terminal device, wherein the first SIM card is software-implemented, and wherein the second SIM card is hardware-implemented, accessing a first network for the first SIM card by invoking a third-party interface of an operating system of the terminal and using a data file associated with the first SIM card, and implementing a dual standby of the first SIM card and the second SIM card.
Abstract:
The invention relates to a network entity configured to control a handover of a user equipment from a serving base station to a candidate target base station of a mobile communication network, wherein the serving base station provides at least a first slice of a first slice type and the candidate target base station provides at least a second slice of a second slice type, wherein the user equipment is registered to the first slice of the serving base station. The network entity comprises a processor configured to control, in response to a handover trigger, the handover of the user equipment on the basis of a requested slice type and the second slice type provided by the candidate target base station. Moreover, the invention relates to a corresponding target base station.
Abstract:
Embodiments of the present application provide a switching control method, an apparatus, and a wireless communications network. The switching control method in the present application includes: receiving a path switching request sent by a radio node (RN), and obtaining information about user equipment (UE), an identifier of a source RN, and an identifier of a destination RN according to the path switching request; determining, according to the information about the UE, the identifier of the source RN, and the identifier of the destination RN, a function node (FN) that provides a service to the destination RN, and generating a path switching rule according to the FN; sending the path switching rule to an ingress network element. The embodiments of the present application resolve a problem that when system performance is insufficient, free extension cannot be performed due to mutual restriction between multiple functions.