Abstract:
An apparatus and method for feeding back hybrid automatic repeat request-acknowledgement (HARQ-ACK) information are provided. The apparatus and method include user equipment (UE) that first receives a downlink grant (DL-GRANT) which schedules downlink HARQ transmission in a time-frequency bundling window corresponding to an uplink subframe used for feeding back HARQ-ACK, obtains a DL downlink assignment index (DL DAI) in the DL-GRANT, and determines a mapping value of each DL DAI. Then, according to the mapping value of the corresponding DL DAI, the HARQ-ACK bit of each HARQ feedback unit is mapped to a corresponding bit of a feedback bit sequence. According to the method and apparatus provided by the present disclosure, useless HARQ-ACK bits may be effectively removed, and efficiency for feeding back HARQ-ACK may be increased. As such, a downlink peak rate of a UE is ensured.
Abstract:
The present disclosure discloses methods, systems and devices for supporting local breakout in a small cell architecture. A MME sends information of a local breakout bearer for a UE to a MeNB, and the MeNB determines a local home network to which the local breakout bearer belongs according to the received information. When the MeNB is to switch the local breakout bearer between different eNBs, the MeNB selects an eNB in the local home network to which the local breakout bearer belongs as a target eNB. By the present disclosure, the continuity of local breakout traffic may be ensured when a User Equipment (UE) moves in a small cell scenario, thereby avoiding data loss and improving user experiences. Further, a local breakout bearer may be released timely and reasonably, thereby saving system resources.
Abstract:
The present invention discloses a method of and system for performing the access control as well as a radio resource management entity. The method includes: detecting, by a hybrid radio resource management entity, an access control trigger event, determining, by the hybrid radio resource management entity, a non-Closed Subscriber Group (CSG) User Equipment to be removed, and disconnecting, by the hybrid radio resource management entity, the connection with the non-CSG User Equipment to be removed.
Abstract:
A method of Minimization of Drive Tests (MDT) continuous measurement under multiple Public Land Mobile Networks (PLMNs) is provided. The method includes sending, by an eNB, MDT-related information to a target eNB, or, requesting, by the target eNB, for user consent information from an MME, and transmitting the user consent information among multiple PLMNs without being lost during transmission. In addition, a method for achieving MDT reporting is provided. The method includes reporting, by the UE, a new indication, or, reporting, by the UE, a PLMN identifier configuring the MDT to the eNB, and enabling the eNB to correctly determine whether the UE is requested to report the measurement record to the eNB.
Abstract:
The present invention discloses a method for detecting a cause for a Radio Link Failure (RLF) or handover failure is provided. The method includes when a User Equipment (UE) enters a connection mode after encountering RLF or handover failure, sending a RLF report that the UE encounters RLF or handover failure to a base station; determining, by the base station, a cause for RLF or handover failure according to the RLF report, if it is determined that the cause for RLF or handover failure is a problem of Mobility Robustness Optimization (MRO) or a problem of coverage, when it is a problem of MRO, sending, by the base station, a MRO report to a base station at which a cell which triggers handover for the last time is located.
Abstract:
The disclosure relates to a 5G or 6G communication system for supporting a higher data transmission rate. A method performed by a first node in a wireless communication system, including receiving, from a second node, downlink user data through a first radio bearer, the downlink user data including multicast service data; transmitting, to at least one UE, the downlink user data through a second radio bearer; and transmitting, to the second node, a downlink data delivery status including PDCP sequence number information, wherein the PDCP sequence number information includes a higher PDCP sequence number between a highest PDCP sequence number successfully delivered in sequence associated with a first transmission mode and a highest PDCP sequence number transmitted to lower layers associated with a second transmission mode.
Abstract:
The disclosure relates to a method and device for self-optimization and self-configuration, and provides a method performed by a first node in a wireless communication system, including: acquiring, by the first node, first configuration information related to a successful handover report (SHR); transmitting, by the first node, the first configuration information to a user equipment (UE).
Abstract:
A method performed by a first network node in a wireless communication system is provided. The method includes determining whether to establish an F1 tunnel with a third node, transmitting, to a second node, a first message including a first indication, wherein the first indication indicates that a user plane between the third node and the first node has not been established, and transmitting, to the third node, a second message including a second indication, wherein the second indication indicates that the user plane between the third node and the first node has not been established.
Abstract:
The disclosure relates to a 5G or 6G communication system for supporting a higher data transmission rate. A method performed by a node (a device) in a wireless communication system, and a node (a device) are provided. A method performed by a first node in a wireless communication system is provided. The method includes acquiring time information related to data, and transmitting a first message to a second node based on the time information related to the data, wherein the first message includes identity information of the data and at least one configuration information.
Abstract:
The disclosure relates to a 5G or 6G communication system for supporting a higher data transmission rate. The present application relates to methods and devices for session establishments. According to an aspect of the present application, there is disclosed a method performed by a second node in a wireless communication system, which includes: receiving a message for bearer establishment request from a first node; transmitting a message for bearer establishment response to the first node.