Abstract:
Provided are a method and device for processing a D2D measurement. The method includes: D2D measurement configuration information transmitted by a network node is received, wherein the D2D measurement configuration information is UE-based D2D measurement configuration information; UE-based D2D measurement is performed according to the D2D measurement configuration information; and a D2D measurement result obtained by measurement is reported according to the D2D measurement configuration information. By the disclosure, the problem of incapability in effectively controlling D2D discovery and D2D communication in the related art is solved, and effects of effectively controlling D2D discovery and D2D communication, increasing a resource utilization rate and improving quality of user service are further achieved.
Abstract:
A device-to-device (D2D) discovery method, an eNodeB and a user equipment are disclosed. The method includes: a user equipment acquiring discovery signal resources allocated by an eNodeB (eNB) to the user equipment, wherein the discovery signal resources include time-frequency domain resources used for sending or monitoring a discovery signal; and when the user equipment performs a D2D discovery operation, sending or monitoring the discovery signal according to acquired discovery signal resources to perform D2D discovery.
Abstract:
A method for releasing a LIPA connection is provided, which includes that a MME executes a LIPA connection releasing check according to received LIPA connection releasing auxiliary information, and judges whether to release a LIPA connection of UE; or, a wireless-side network element executes a LIPA connection releasing check according to received LIPA connection releasing auxiliary information, and judges whether to release the LIPA connection of the UE. A device for releasing a LIPA connection, an MME and a wireless-side network element are also provided. According to the technical solutions of the present disclosure, under the condition that a mobile relay supports LIPA, continuity of the LIPA connection of the UE in an Mobile Relay Node (MRN) handover process is ensured, continuity of a LIPA service of the UE is further ensured, and the quality of service for a user and a user experience are improved.
Abstract:
An integrated wireless sensing and communication (ISAC) system may allow for a radio access network (“RAN”) node to improve the sensing. There may be a secondary sensing radio link (S-S-RL) for additional sensing functionality. The sensing signal can be used by the RAN node and/or the UE for detecting objects along a radio path between the RAN node and UE to improve the wireless communication through RL. The S-S-RL may be added in a single connectivity system or may be modified in a dual connectivity system. In order to maximize the sensing collaboration benefits among RAN nodes, the S-S-RL can assist communication or assist sensing.
Abstract:
Embodiments of a system, device and method for mapping between different types of BWPs are disclosed. In some aspects, a wireless communication method includes receiving, by a wireless communication device from a wireless communication node, radio configuration information. In some aspects, the radio configuration information includes a second type bandwidth part (BWP) configuration and a correspondence between the second type BWP and a plurality of BWPs. In some aspects, the second type BWP configuration includes one or more physical resource configurations. In some aspects, the wireless communication method includes configuring, by the wireless communication device, based on the one or more physical resource configurations, a plurality of physical resources on the plurality of BWPs.
Abstract:
The present disclosure describes methods, system, and devices for a user equipment (UE) transmitting UE information. One method includes transmitting, by a UE, UE information to a base station, wherein the UE information comprises at least one of the following: UE transmission status information, UE uplink QoS information, or UE application layer information. Another method includes receiving, by a base station, UE information from a UE, the UE information configured to assist the base station to configure data transmission, wherein the UE information comprises at least one of the following: UE transmission status information, UE uplink QoS information, or UE application layer information.
Abstract:
Systems, apparatus and methods of wireless communication are described. One example method includes receiving, by a wireless device, a configuration information from a network device, wherein the configuration information includes correspondences between carriers and carrier frequencies; receiving, after the configuration information is received, an indication for activation or deactivation of the correspondences between carriers and carrier frequencies; and performing the activation or deactivation according to the indication.
Abstract:
Systems, apparatus and method for wireless communication are described. One example method includes receiving, by a wireless device, a radio configuration information that includes a first carrier configuration, a second carrier configuration and a carrier frequency configuration, wherein the radio configuration information includes a first correspondence between a first carrier in the first carrier configuration and more than one second carriers in the second carrier configuration and a second correspondence between second carriers and one or more carrier frequencies; and operating the wireless device according to the radio configuration information.
Abstract:
Systems, apparatus and method for wireless communication are described. One example method includes receiving, by a wireless device, a radio configuration information that includes a first carrier frequency configuration, a second carrier frequency configuration and a carrier configuration, wherein the radio configuration information includes a first correspondence between a first carrier frequency in the first carrier frequency configuration and more than one second carrier frequencies in the second carrier frequency configuration and a second correspondence between the first carrier frequencies and one or more carrier of operation; and operating the wireless device according to the radio configuration information.
Abstract:
The present disclosure describes methods, system, and devices for transmitting multiple transport block (TB) groups. The method includes transmitting a set of TB groups between a first wireless device and a second wireless device by: receiving a resource indication from the first wireless device, wherein: the resource indication indicates resource allocation of m groups of TBs, and m is an integer larger than 1; each TB mapped to a same codeword in the m groups of TBs is mapped to different time-frequency resource in the resource space; a group of TBs in the m groups of TBs comprises n TBs mapped to a same codeword, and n is an integer larger than 0; and each TB in the m groups of TBs is capable of being packaged separately at a transmitting end, and capable of being delivered separately to an upper layer at a receiving end.