Abstract:
Provided are methods and apparatuses for processing indication information. According to a method for processing indication information, a predetermined network element determines a Multimedia Broadcast Multicast Service (MBMS) to be suspended; and the predetermined network element sends, to an Evolved Node B (eNB), indication information used for indicating that the MBMS is to be suspended. The indication information is used for indicating the eNB receiving the indication information to send Multicast Channel (MCH) Scheduling Information (MSI) to User Equipment (UE), and the MSI includes a specific value used for notifying the UE of the MBMS to be suspended.
Abstract:
At least some embodiments of the disclosure include a method and device for information identification. In the method, a base station acquires a notification message about a start of a traffic information service, wherein the notification message carries a traffic information identifier and a timestamp, the traffic information identifier is a service identifier for indicating traffic information, and the timestamp indicates a time point when the base station sends MSI; and the base station sends the MSI according to the notification message, in which the MSI is indicative of position information and expansion information of a sub-frame where a MTCH corresponding to the traffic information is.
Abstract:
A method and device for managing vehicles in Internet of Vehicles (IOV) are provided. The method includes: acquiring, by a leading vehicle in the IOV, management authority from a network side equipment, the management authority is authority of the leading vehicle for managing a vehicle group to which the leading vehicle belongs, and the vehicle group includes a plurality of vehicles; managing, by the leading vehicle, the vehicle group to which the leading vehicle belongs according to the management authority. The present disclosure solves the problem in the related art that the network side equipment fails to allocate and release resources for vehicles in the IOV timely, thereby improving the efficiency in managing vehicles in the IOV.
Abstract:
Method, device and system for device-to-device (D2D) communication are provided. The method includes: a first D2D user equipment receives a signalling from a network side of an operator, wherein the signalling is used for notifying the D2D user equipment to perform a D2D communication by using a WLAN; the first D2D user equipment directly communicate with one or more second D2D user equipments in the predetermined area by using the WLAN. Thereby the load of the network of the operator incurred by the D2D user equipment is reduced.
Abstract:
A congestion control method and device are disclosed. The method comprises that: an MTC-IWF receives first instruction information from an SMS-SC via a T4 interface, wherein the first instruction information is used to instruct the MTC-IWF to perform a congestion control on Trigger information; the MTC-IWF performs the congestion control according to the first instruction information; and the SMS-SC receives congestion indication information from a serving node where a user equipment locates and performs a congestion control on trigger information according to the congestion indication information. The disclosure addresses the problem of how to perform a congestion control by a T4 interface existing in related art, improves the robustness and the stability of the system and enables an MTC-IWF and an SMS-SC to perform a congestion control on trigger information when the trigger information is sent via a T4 interface.
Abstract:
A method for trigger information transmission and protocol conversion is provides, and the method includes: an MTC-IWF which has received trigger information about an MTC device acquires routing information of the MTC device through a subscribed serving network element, the MTC-IWF transmits received trigger information about theMTC device to a serving core network node of the MTC device through an SMS core network node; the serving core network node of the MTC device transmits the trigger information to the MTC device; in the above process, the MTC-IWF or a dedicated IWF or an SMS router implements signaling conversion between an MAP protocol and a Diameter protocol. A system for trigger information transmission and protocol conversion is also provided for implementing above method. It is possible using the method and system to transmit trigger information through a T4 interface and establish a process of converting between an MAP protocol and a Diameter protocol.
Abstract:
A method, system and related device for overriding low priority and/or Extended Access Bar (EAB) are disclosed. The method includes the following steps: an Open Mobile Alliance (OMA) Device Management (DM) server sends dual-priority User Equipment (UE) a low priority overriding indicator and/or an EAB overriding indicator; and the dual-priority UE determines whether to override low priority and/or EAB according to the low priority overriding indicator and/or the EAB overriding indicator. The disclosure determines an EAB processing manner of dual-priority UE, implements the NAS functional parameter management for the dual-priority UE, and facilitates the application and promotion of the dual-priority UE.
Abstract:
The present disclosure relates to a single-cell multicast control channel (SC-MCCH) sending method and apparatus, and an SC-PTM receiving method and apparatus. An example SC-MCCH sending method includes: generating, by a base station, SC-MCCH information for indicating configuration information of a Single Cell Point-to-Multipoint (SC-PTM) service; sending, by the base station, frequency domain scheduling information of the SC-MCCH information on a Physical Downlink Control Channel (PDCCH); and sending, by the base station, the SC-MCCH information on a Physical Downlink Shared Channel (PDSCH). The SC-MCCH information includes: a mapping relationship between a TMGI of the SC-PTM service and a G-RNTI of the SC-PTM service on the PDCCH, and information of a time domain location of the SC-PTM service.
Abstract:
Provided is a method for sending a V2X service. The method includes: a Vehicle-to-Everything (V2X) Application Server (AS) classifies and identifies the V2X service, where different types of V2X service have different identifiers; the V2X AS sends a request message to a Broadcast Multicast Service Center (BM-SC), where the request message is used for instructing the BM-SC to establish a Multimedia Broadcast Multicast Service (MBMS) bearing corresponding to an identifier of the V2X service; and the V2X AS sends the V2X service through the MBMS bearing established by the BM-SC.
Abstract:
Provided are a random access method and apparatus. The method can include: a first cluster head in a first cluster formed by multiple UEs selects a preamble from a preset preamble set, and transmits the preamble to a base station, each preamble in the preamble set indicating the number of UEs corresponding to the each preamble, and the number of UEs corresponding to the selected preamble being equal to the number of cluster members in the first cluster; the first cluster head receives a response message transmitted by the base station in response to the preamble; and the first cluster head broadcasts, to each cluster member in the first cluster, the resource information for establishing the RRC connection and the C-RNTI.