Abstract:
Embodiments of the present disclosure disclose a mobility management method, user equipment, a storage node, and a base station. The mobility management method may include: determining, by user equipment (UE) in a connected state, a source identifier of the UE, where the source identifier is used to identify the UE; allowing the UE to enter a low consumption state after a low consumption activation condition is met, where in the low consumption state, the UE stores a connection context of the UE in the connected state and performs cell camping based on a cell reselection criterion in a moving process; and reporting, by the UE when a first preset condition is met, the source identifier to a second base station to which a second cell belongs, where the second cell is a serving cell on which the UE currently camps.
Abstract:
A method for switching of multi-carrier and device are provided. The method comprises: receiving a message sent from a source radio access network (RAN) node corresponding to a first link and comprising information of a second link; according to the information of the second link, establishing a connection between a target RAN node corresponding to the first link and an RAN node corresponding to the second link, so as to perform data transmission. The first link is a link in a first Radio Access Technology (RAT) network, and the second link is a link in a second RAT network. Embodiments of the present disclosure can ensure the continuity of the throughput of data transmission during switching under aggregation of multiple RAT carriers.
Abstract:
The present invention provides a communication method includes: determining, by a base station, radio frame configuration information; sending, by the base station, the determined radio frame configuration information to user equipment UE, where the radio frame configuration information is used to instruct the UE to set at least one of N consecutive downlink subframes of one radio frame as a first subframe, and/or the radio frame configuration information is used to instruct the UE to set at least one of M consecutive uplink subframes of one radio frame as a second subframe, where the first subframe is used for uplink service transmission, the second subframe is used for downlink service transmission, and N and M are positive integers not less than 2; and communicating, by the base station, with the UE by using a radio frame configured according to the radio frame configuration information.
Abstract:
Embodiments of the present disclosure disclose a data transmission method, user equipment, and a base station, so as to resolve a conflict problem in a data transmission process with coexistence of different processing delay scenarios. The method in the embodiments of the present disclosure includes: receiving, by user equipment, a control message sent by a base station, where the control message is used to determine an RTT length corresponding to data transmitted between the user equipment and the base station; determining, by the user equipment according to the control message, the round-trip time RTT length corresponding to the data transmitted between the user equipment and the base station; and performing, by the user equipment, transmission of the data with the base station according to the RTT length.
Abstract:
A subframe processing method and device are disclosed. A terminal can determine a special subframe in a non-contiguous secondary carrier according to a maximum continuous channel occupancy duration and a channel listening duration of the non-contiguous secondary carrier, and a channel occupancy start reference time point and/or a channel listening start reference time point of the non-contiguous secondary carrier that are obtained, where the special subframe includes all or some gap symbols occupied by the channel listening duration, use all symbols except the gap symbols in the special subframe as symbols that can be occupied by a PDCCH and/or a PDSCH, and correspondingly receive or decode the PDCCH and/or the PDSCH in the special subframe according to the symbols that can be occupied by the PDCCH and/or the PDSCH.
Abstract:
The disclosure provides a handover method at a terminal, including: receiving, measurement configuration information sent by a source base station; performing cell measurement according to the measurement configuration information; sending, by the terminal, a cell measurement result to the source base station when the terminal satisfies a measurement report condition; receiving a handover configuration message that is sent by the source base station according to the cell measurement result, and performing cell handover according to the handover configuration information when the terminal receives a handover instruction message that is sent by the source base station when the source base station determines that the terminal needs to perform cell handover, where the handover instruction message is used to instruct the terminal to perform cell handover, and a length of the handover instruction message is less than a length of the handover configuration message.
Abstract:
The present invention provides a handover method, a terminal, a base station, and a system, where the base station includes: a processing unit, configured to obtain first indication information, where the first indication information is used to indicate that a terminal is allowed to perform a forward handover; and a sending unit, configured to send the first indication information obtained by the processing unit to the terminal, so that the terminal sends a forward handover request message to a second base station according to the first indication information, receives a forward handover command message sent by the second base station according to the forward handover request message, and performs a forward handover from the first base station to the second base station according to the forward handover command message. Therefore, control by a base station over a handover process of a terminal can be improved in a wireless communications system.
Abstract:
The present application provides a method for adjusting resource configuration, a radio network controller, and a base station. The method includes sending configuration information of an uplink common enhanced dedicated transport channel E-DCH resource pool to a base station, where the configuration information of an uplink common E-DCH resource pool includes information of a first resource pool to which a first transmission time interval corresponds and information of a second resource pool to which a second transmission time interval corresponds. Indication information is sent by the base station according to usage of at least one of the resource pools. Configuration of the first resource pool can be adjusted according to the indication information. In embodiments of the present application, the range of the resource pool can be dynamically adjusted in the case that a plurality of transmission time intervals coexists.
Abstract:
Embodiments of the present invention provide a method and user equipment for transmitting data. The method includes: determining indication information used for indicating to the user equipment (UE) to use a dual stream mode to transmit data; and determining, according to the indication information and a transmission mode determining condition, a transmission mode used for transmitting data, where the transmit mode is a single stream mode or the dual stream mode. By using the method and user equipment for transmitting data in the embodiments of the present invention, a transmission mode is flexibly selected based on a transmission mode determining condition, and data transmission can be implemented at higher efficiency by combining advantages of the dual stream mode and the single stream mode.
Abstract:
The present invention discloses a method and a user equipment for processing frequency information. The method for processing frequency information includes: receiving a measurement control message sent from network device, where the measurement control message contains frequency information for inter-frequency measurement without compressed mode; and clearing stored frequency information for inter-frequency measurement without compressed mode if the type of frequency information for inter-frequency measurement without compressed mode that is contained in the measurement control message is different from the type of the stored frequency information for inter-frequency measurement without compressed mode. The technical solutions disclosed in the present invention avoid a problem of measurement failure when a UE performs measurement without compressed mode on an adjacent frequency.