Abstract:
A method and apparatus are described for adaptive interference discovery of a licensed shared access (LSA) system. The method includes: an LSA controller selects a measurement node according to interference protection information of an LSA licensed system; the LSA controller sends a measurement configuration message to the measurement node; and the LSA controller receives a measurement response message returned by the measurement node and determines whether to perform LSA spectrum resource reconfiguration according to the measurement response message.
Abstract:
The various embodiments of the present disclosure describes a method, apparatus, system, and a storage medium for paging optimization, the method comprising: obtaining past visiting information of a UE to be paged and optimize paging message conveying range based on the past visiting information the UE and a predefined optimization strategy. In embodiments of the present disclosure, a better optimized paging strategy can be provided based on the past visiting information of the UE to be paged in order to prevent signaling storm caused by paging, and avoid excessive radio-frequency consumption to some extent, such that balance user paging experience and consumption of radio-frequency resources.
Abstract:
A cell discovery method and device are disclosed, which relates to the field of mobile communication and solves a problem that a small cell discovery process is not timely triggered and the power consumption is greater. The method includes: a network node acquiring location information containing altitude information of a user equipment; and the network node sending measurement configuration related information to the user equipment according to the location information of the user equipment, and instructing the user equipment to execute a corresponding measurement according to the measurement configuration related information. The technical scheme provided in the embodiments of the present invention is applicable to an LTE network, which implements convenient and efficient small cell discovery.
Abstract:
A method and system for notifying a transport layer address are disclosed. The method includes: a first base station sending transport layer address information of an X2 gateway connected to the first base station to a second base station, wherein, the first base station is a home base station (step 10); and the second base station initiating an X2 connection establishment flow according to the received transport layer address information of the X2 gateway (step 20). The system includes: a first base station, configured to: send transport layer address information of an X2 gateway connected to the first base station to a second base station; wherein, the first base station is a home base station; and the second base station, configured to: initiate an X2 connection establishment flow according to the received transport layer address information of the X2 gateway.
Abstract:
A method for gateway relocation, an MME and a DeNB are disclosed. The method includes: in a process of an MRN performing handover of the DeNB, the MME of the MRN judging whether it is required to execute a relocation of a gateway serving the MRN according to the current location of the MRN.
Abstract:
A method for measuring and reporting resource in a long term evolution system comprises: a source base station encapsulating a resource status request message and sending the message to a target base station; after receiving the resource status request message, the target base station processing the message, and sending a resource status success response to the source base station if the processing is successful, or else sending a resource status failure response if the processing is failed; the source base station encapsulating at least a message type (2), a measurement request type (3), a source base station global identifier (4) and measurement configuration information (5) in the resource status request message, wherein, the measurement request type (3) is modify; the measurement configuration information (5) is measurement configuration information (5) in current measurement request type (3).
Abstract:
Presented are systems and methods for radio access network (RAN) visible quality of experience (QoE) measurement in dual connectivity architecture. A first network node of a radio access network (RAN) may generate a first configuration for at least one quality of experience (QoE) measurement that is to be utilized by the RAN. The first network node may send the first configuration to a wireless communication device to collect the at least one QoE measurement according to the first configuration.
Abstract:
Presented are systems and methods for logged Quality of Experience (QoE) measurement. A wireless communication device (e.g., a UE) may store a measurement of QoE as QoE buffered data. The wireless communication device may send a first message including the QoE buffered data to a wireless communication node (e.g., a BS).
Abstract:
This disclosure relates to a mechanism for inter-node communications for facilitating fast link failure recovery and for enabling self-optimization of network nodes in response to link failures. For example, in a dual connectivity scenario, a radio link from a terminal device to a master access network node associated with a mater cell group may fail. During a subsequent information exchange for implementing a fast link recovery procedure, the information exchange path via a secondary access network node may also fail under various network conditions along such a path. Various example implementations are disclosed for reporting such interrupting network conditions to the various relevant network nodes such that these network nodes are informed of the network conditions and are provided with an opportunity to perform self-optimization of network configurations in order to reduce a likelihood of interruption to any future fast radio link recovery procedures.
Abstract:
Presented are systems, methods, apparatuses, or computer-readable media for coordinating Quality of Experience (QoE) management collection (QMC) configuration. A first network node may receive a QMC configuration from a network management system. The first network node may send a notification to a second network node informing about the receipt of the QMC configuration. The first network node may receive a response from the second network node indicating whether the second network node received the QMC configuration.