Abstract:
Disclosed are a capability for reporting Feature Group indicators (FGI) capability by the terminal and a method for configuring a measurement task for the terminal by the network side and a terminal, a network side device and a system thereof. Wherein, the method for reporting the FGI capability by the terminal comprises: when reporting the FGI capability of the terminal to the network side, for each Radio Access Technology (RAT), the terminal reporting whether the terminal supports Automatic Neighbor Relation (ANR) capability of the RAT or not. The method for configuring the measurement task for the terminal by the network side comprises: when obtaining the FGI capability of the terminal, the network side also obtaining whether the terminal supports the ANR capability of each RAT or not, and configuring a measurement task corresponding to the FGI capability for the terminal according to the FGI capability supported by the terminal.
Abstract:
Embodiments of the disclosed technologies provide a carrier frequency selecting method and apparatus. The method comprises: determining, by UE, whether information of a service carrier frequency sent by a base station is received, wherein the service carrier frequency is the carrier frequency to carry traffic selected by the base station when a target cell carrying the UE is a multi-carrier cell; residing, by the UE, at a carrier frequency corresponding to the information for a service carrier frequency, if so; and, otherwise, residing, by the UE, at an original camped carrier frequency. With the embodiments of the disclosed technologies, the problem that a service carrier frequency selecting strategy in related techniques is to perform selection passively and lacks initiative is solved, and a technical basis for balancing loads on carrier frequencies carrying traffic is provided and further system efficiency is enhanced for an NB-IoT system, which is mainly to transmit small data.
Abstract:
Embodiments of the disclosed technologies provide a carrier frequency selecting method and apparatus. The method comprises: determining, by UE, whether information of a service carrier frequency sent by a base station is received, wherein the service carrier frequency is the carrier frequency to carry traffic selected by the base station when a target cell carrying the UE is a multi-carrier cell; residing, by the UE, at a carrier frequency corresponding to the information for a service carrier frequency, if so; and, otherwise, residing, by the UE, at an original camped carrier frequency. With the embodiments of the disclosed technologies, the problem that a service carrier frequency selecting strategy in related techniques is to perform selection passively and lacks initiative is solved, and a technical basis for balancing loads on carrier frequencies carrying traffic is provided and further system efficiency is enhanced for an NB-IoT system, which is mainly to transmit small data.
Abstract:
Embodiments of the disclosed technologies provide a carrier frequency selecting method and apparatus. The method comprises: determining, by UE, whether information of a service carrier frequency sent by a base station is received, wherein the service carrier frequency is the carrier frequency to carry traffic selected by the base station when a target cell carrying the UE is a multi-carrier cell; residing, by the UE, at a carrier frequency corresponding to the information for a service carrier frequency, if so; and, otherwise, residing, by the UE, at an original camped carrier frequency. With the embodiments of the disclosed technologies, the problem that a service carrier frequency selecting strategy in related techniques is to perform selection passively and lacks initiative is solved, and a technical basis for balancing loads on carrier frequencies carrying traffic is provided and further system efficiency is enhanced for an NB-IoT system, which is mainly to transmit small data.
Abstract:
Methods, systems, and devices related to time-domain transmission scheduling for user equipment that is capable of operating in dual connections are described. In one exemplary aspect, a method for wireless communication is described. The method includes receiving, at a wireless device, information indicating a time-domain transmission pattern, determining a periodic transmission pattern based on the time-domain transmission pattern and an offset of the wireless device, and transmitting data, to the communication node, according to the periodic transmission pattern.
Abstract:
The present invention discloses a method for determining cell selection and reselection parameters, a base station, a terminal and a system, and relates to the field of communication. The method for determining cell selection and reselection parameters includes: setting at least two sets of cell selection and reselection parameters according to a terminal capability parameter, and sending the at least two sets of cell selection and reselection parameters, wherein, one set of cell selection and reselection parameters, which matches with the terminal capability parameter of a terminal, of the at least two sets of cell selection and reselection parameters is used for cell selection and/or reselection of the terminal. The present invention further discloses a computer storage medium.
Abstract:
A cellular network relocation method and base station. The method comprises: transmitting, by a source base station and to a relocation target base station, a relocation request message used to instruct the target base station to perform a main user plane function, the relocation request message carrying context information of a terminal in the source base station; receiving, by the target base station, the relocation request message, and then returning to the source base station a relocation request acknowledgement message used to acknowledge that the target base station itself is a main base station after the relocation, the relocation request acknowledgement message carrying a user plane address of the target base station for receiving a data package after the relocation; receiving, by the source base station, the relocation request acknowledgement message, then transmitting the context information of the main user plane function of said base station to the target base station, and terminating performing of the main user plane function; and receiving, by the target base station, the context information of the main user plane function transmitted from the source base station, and then performing the main user plane function. The technical solution of the present invention can address a problem of frequent interruptions in a high-density micro-cellular network.