Abstract:
A data routing method includes: receiving, by a home subscriber server (HSS), a route distinguisher of a mobile management entity (MME) serving user equipment (UE) and an information transmission manner supported by the MME that are sent by the MME; receiving, by the HSS, a query message, wherein the query message carries a UE identifier and an information transmission manner that needs to be used; determining, by the HSS according to the information transmission manner supported by the MME, the UE identifier, and the information transmission manner that needs to be used, that the MME supports the information transmission manner that needs to be used; and sending, by the HSS, the route distinguisher of the MME to a data routing apparatus, so that the data routing apparatus routes, according to the route distinguisher, a data packet that needs to be transmitted.
Abstract:
An access control method, including obtaining, by a protocol-stack upper layer of a terminal, an override identifier, starting, by the protocol-stack upper layer of the terminal, an application specific congestion control for data connectivity (ACDC) check according to a service initiated by the terminal, and, if the protocol-stack upper layer of the terminal confirms that the service initiated by the terminal can pass the ACDC check and determines that the override identifier corresponding to an application identifier of the service passing the ACDC check is overriding an access class barring (ACB) check, sending, by the protocol-stack upper layer of the terminal, an radio resource control (RRC) establishment request message to an access layer of the terminal, where the request message carries an indication of not performing an ACB check.
Abstract:
A data routing method includes: receiving a route distinguisher of an MME serving UE sent by the MME; determining an information transmission manner supported by the MME; receiving_a query message sent by an MTC-IWF, where the query message carries a user equipment UE identifier and an information transmission manner that needs to be used; determining according to the information transmission manner supported by the MME, the UE identifier, and the information transmission manner that needs to be used, that the MME serving the UE supports the information transmission manner that needs to be used; and sending a route distinguisher of the MME that corresponds to the information transmission manner that needs to be used to the MTC-IWF, so that the MTC-IWF performs routing according to the route distinguisher. Therefore, a most effective transmission path is selected for information transmission, thereby improving service experience of a user.
Abstract:
The present invention discloses a device discovery method which relates to the field of communications technologies, and can reduce signaling interaction in a process of discovering a nearby device and lower power consumption of the UE. The method in the present invention mainly includes: receiving, by a server, a discovery request, where the discovery request is used to request to discover another UE near a user equipment UE, and the discovery request includes a discovery category indication; generating discovery configuration information according to the discovery category indication, and sending the discovery configuration information to a base station or the UE, where the discovery configuration information is used to configure a parameter that is used when the base station or the UE detects another nearby UE; and receiving a discovery result sent by the base station or the UE.
Abstract:
The present invention provides an apparatus for cleaning an optical fiber connector, which includes a case, a tape collecting gear, a tape releasing gear, an operating portion, and a cleaning socket disposed on the case. The tape collecting gear and the tape releasing gear are rotatably accommodated in the case in sequence. The cleaning socket is located at a position between the tape collecting gear and the tape releasing gear. The operating portion includes a push rod, and an elastomer, a stop block, a sliding plate, and a toggling member that are installed in the case. In the case, one end of the sliding plate is connected to the push rod in the case and the other end shields the cleaning socket, the elastomer abuts between the stop block and the push rod.
Abstract:
A fiber patch cord apparatus and a port panel, which may simplify a structure of the fiber patch cord system. The fiber patch cord apparatus includes a crawler configured to move to a corresponding position of a source adapter port along a crawling guide rail provided by a port panel, a clamper configured to clamp a fiber patch cord on the source adapter port, and a puller and inserter configured to pull the fiber patch cord out of the source adapter port and a controller that is configured to control the fiber patch cord apparatus to move on a crawling guide rail, where the controller is further configured to control a mold strip group on the port panel to move. The embodiments of the present invention are used to pull and insert a fiber patch cord.
Abstract:
Embodiments of the present invention provide a method for access control handover of a user between base stations, which includes: acquiring, by one of a first base station and a second base station, a closed subscriber group identifier CSG ID supported by the other base station and CSG membership information of a user equipment UE in the first base station; and if the CSG ID acquired by the one base station is the same as a CSG ID supported by the local base station, performing, by the one base station, access control on the UE according to the acquired CSG membership information of the UE in the first base station and an access mode of the other base station.
Abstract translation:本发明的实施例提供了一种用于基站之间的用户的接入控制切换的方法,包括:由第一基站和第二基站中的一个获取由另一个基站支持的封闭用户组标识符CSG ID 以及第一基站中的用户设备UE的CSG成员资格信息; 并且如果由一个基站获取的CSG ID与本地基站所支持的CSG ID相同,则由所述一个基站根据所获取的所述UE的CSG成员资格信息,在所述一个基站中进行对所述UE的接入控制 第一基站和另一基站的接入模式。
Abstract:
Embodiments provide a device discovery method which relates to the field of communications technologies. The method includes: receiving, by a server, a discovery request, where the discovery request is used to request to discover another UE near a user equipment UE, and the discovery request includes a discovery category indication; generating discovery configuration information according to the discovery category indication, and sending the discovery configuration information to a base station or the UE, where the discovery configuration information is used to configure a parameter that is used when the base station or the UE detects another nearby UE; and receiving a discovery result sent by the base station or the UE.
Abstract:
An access control method, including obtaining, by a protocol-stack upper layer of a terminal, an override identifier, starting, by the protocol-stack upper layer of the terminal, an application specific congestion control for data connectivity (ACDC) check according to a service initiated by the terminal, and, if the protocol-stack upper layer of the terminal confirms that the service initiated by the terminal can pass the ACDC check and determines that the override identifier corresponding to an application identifier of the service passing the ACDC check is overriding an access class barring (ACB) check, sending, by the protocol-stack upper layer of the terminal, an radio resource control (RRC) establishment request message to an access layer of the terminal, where the request message carries an indication of not performing an ACB check.
Abstract:
An access control method includes: obtaining, by a protocol-stack upper layer of a terminal, an override identifier; starting, by the protocol-stack upper layer of the terminal, an application specific congestion control for data connectivity ACDC check according to a service initiated by the terminal; and, if the protocol-stack upper layer of the terminal confirms that the service initiated by the terminal can pass the ACDC check and determines that the override identifier corresponding to an application identifier of the service passing the ACDC check is overriding an access class barring ACB check, sending, by the protocol-stack upper layer of the terminal, an RRC establishment request message to an access layer of the terminal, where the request message carries an indication of not performing an ACB check. Therefore, even if the terminal cannot pass the ACB check, the terminal can still perform services of some particular applications.