Abstract:
A method for transmitting data during base station handover is provided. In the method, a User Equipment (UE) hands over a Master eNB (MeNB) from a first base station to a target base station according to a received Radio Resource Control Connection Reconfiguration (RRC CR) message; and the UE maintains a connection between the UE and a second base station unchanged and maintains a protocol entity, which corresponds to a Secondary eNB Cell Group (SCG) bearer reserved to be transmitted on the second base station, unchanged. Another method for transmitting data during base station handover, a UE, a base station, and a storage medium are also provided.
Abstract:
A method for controlling creation of a mobile communication network connection, the method includes the following steps: after establishing a network connection with a user equipment, a control device detecting and receiving service data transmitted by the user equipment, and acquiring service feature information corresponding to the service data (S11); the control device analyzing whether the acquired service feature information contains a preset identifier (S12); and if the acquired service feature information does not contain the preset identifier, the control device disconnecting the network connection with the user equipment after transmitting the service data to a destination end corresponding to the service data (S13).
Abstract:
Disclosed are a baseband processing combination (BPC) capability configuration method and device, a base station and a computer storage medium. The base station includes a network element and a second network element connected to the first network element. The first network element and the second network element are separately deployed, the first network element is responsible for radio resource management, and the second network element is responsible for underlying radio transmission management. In the process of a UE accessing the second network element of the base station, the second network element of the base station selects a BPC for the UE, and the base station can then schedule the UE according to the BPC selected by the second network element for the UE and perform necessary radio resource configuration.
Abstract:
Provided are a configuration method, apparatus, system and device for a data flow, and a computer medium. The configuration method for a data flow includes: when the first network element needs to offload part of QFs in a PDU Session to a second network element for transmission, a request message is sent to the second network element, where the request message carries an uplink interface address on a core network side; the second network element receives the request message sent by the first network element, and obtains, according to the request message, the uplink interface address on the core network side required for a QF offloaded to the second network element.
Abstract:
Disclosed are a baseband processing combination (BPC) capability configuration method and device, a base station and a computer storage medium. The base station includes a network element and a second network element connected to the first network element. The first network element and the second network element are separately deployed, the first network element is responsible for radio resource management, and the second network element is responsible for underlying radio transmission management. In the process of a UE accessing the second network element of the base station, the second network element of the base station selects a BPC for the UE, and the base station can then schedule the UE according to the BPC selected by the second network element for the UE and perform necessary radio resource configuration.
Abstract:
The present disclosure relates to methods and devices for transmitting data. A method includes: receiving, by one or more intermediate nodes in an ultra dense network, user plane data sent from a first node; and forwarding, by the one or more intermediate nodes, the user plane data to a second node.
Abstract:
Provided are a method, apparatus, and system for transmitting data during a handover procedure, relating to the technical field of mobile communications. The method includes: receiving RRC signaling sent by a source MeNB, herein the RRC signaling carries first resource configuration information corresponding to a target MeNB to be accessed by a terminal and second resource configuration information corresponding to a SeNB already accessed by the terminal; when the terminal leaves a serving cell covered by the source MeNB, according to the second resource configuration information maintaining a radio connection with the serving cell of the SeNB, retaining a protocol layer at the SeNB corresponding to a Split bearer to be unchanged, and initiating a random access to the target MeNB according to the first resource configuration information.
Abstract:
Embodiments of the present disclosure disclose a base station handover method in a heterogeneous network, and a base station. The method includes: after receiving a handover request message of a first base station, a target base station executes an admission control, and judges whether a connection of UE at a second base station is reserved for the UE after an access of the UE; if the connection is reserved, the target base station sends an assistance request message to the second base station to request the second base station to assist the target base station to provide a dual connectivity service for the UE, and replies a handover request acknowledgment message to the first base station after a reply message of the second base station is obtained.
Abstract:
Disclosed are a method for radio resource management, a macro eNB and a low power node. The method is applied to a long term evolution (LTE) system introduced with a low power node, including: a macro eNB selecting a low power node for an accessed user equipment to provide a joint transmission service; the low power node and the macro eNB jointly providing a radio resource management service for the user equipment. The macro eNB includes a selection unit and a first resource management unit. The low power node includes a second resource management unit and a data transmission unit.