Abstract:
The present disclosure is related to a 5th generation (5G) or pre-5G communication system for supporting a higher data rate than a 4th generation (4G) communication system such as long term evolution (LTE). According to various embodiments of the present disclosure, a method for operating a base station in a wireless communication system is provided. The method comprises: generating remaining minimum system information (RMSI) comprising random access channel (RACH) configuration, wherein the RACH configuration comprises an association between RACH resources and one of a synchronization signal (SS) block and channel state information reference signal (CSI-RS) resources; and transmitting, to a user equipment (UE), the RMSI.
Abstract:
Embodiments herein provide a method and a system for context aware scheduling of resources. The method includes performing a cell search in based on a context database, the context database including temporal parameters, location parameters and network parameters, identifying a first cell corresponding to the network parameters in the database based on the cell search, and performing a connected mode procedure with the identified first cell.
Abstract:
Disclosed is a method by a first base station, including transmitting, to a third base station, a first message for requesting to handover a user equipment from the first base station to the third base station, the first message including an identifier of a second base station, receiving, from the third base station, a second message corresponding to the first message, and transmitting, to the second base station, a third message for releasing the second base station.
Abstract:
A method and system for assigning a unique logical address in a cloud cell having a mobile station, slave base stations and a master base station are provided. The method includes determining at least one unassigned logical address from respective address spaces associated with the slave base stations and the master base station in the cloud cell by the master base station, selecting the unique logical address from the at least one unassigned logical address determined from the respective address spaces associated with the plurality of base stations, and assigning the selected unique logical address to the mobile station in the cloud cell. The mobile station and each of the plurality of base stations communicate in the cloud cell using the assigned unique logical address.
Abstract:
The various embodiments herein provide a method and system for parallelizing packet processing in wireless communication. The method comprises of creating, between an UE and a base station a plurality of radio bearers for carrying data packets of an Evolved Packet System (EPS) bearer, processing the data packets of the EPS bearer associated with the radio bearers by a transmitter using a first set of processing functions, distributing the processed data packets of the EPS bearer to the associated radio bearers, processing the data packets distributed of the EPS bearer in parallel by independently using a second set of processing functions, transmitting the processed data packets of each radio bearer to a receiver, receiving the data packets over a physical channel by the receiver and processing the received data packets of the EPS bearer associated with the radio bearers by the receiver.
Abstract:
A method and an apparatus for efficiently reporting a master information block (MIB) decoding status of a neighbor cell in a wireless communication system are provided. The method includes receiving, by a user equipment (UE) and from an evolved Node B (eNB) of a serving cell, neighbor cell-related information for receiving an MIB of the neighbor cell, based on the neighbor-cell related information, decoding, by the UE, the MIB of the neighbor cell, and transmitting, by the UE, decoding information of the MIB to the eNB of the serving cell.
Abstract:
The present disclosure relates to a communication method and system for converging a 5th-Generation (5G) communication system for supporting higher data rates beyond a 4th-Generation (4G) system with a technology for Internet of Things (IoT). Embodiments disclosed herein provide a method for managing a resource in a wireless communication system. The method includes allocating, by a base station, the resource for a data transmission from a User Equipment (UE) by indicating at least one bandwidth part in a total bandwidth supported by the UE. The resource is further allocated by indicating a Physical Downlink Control Channel (PDCCH) and a Physical Downlink Shared Control Channel (PDSCH) according to a configured subcarrier spacing and a CP length within the at least one bandwidth part, and by indicating an allocation of Resource Blocks (RBs) within the at least one bandwidth part.
Abstract:
The disclosure relates to a method for performing conditional handover (CHO) for a group of user equipment's (UE) connected to a moving node. The method comprises determining, by a source node, whether a conditional handover (CHO) is configured for the moving node, transmitting, by the source node, a conditional handover request message along with information to one or more target nodes based on the determination, wherein the information indicates a number of a plurality of user equipment (UEs) and the associated capability of each of the plurality of user equipments (UEs) in the group of UEs connected to the moving node, determining whether the one or more target nodes support the conditional handover for the moving node based on the received information, and performing the conditional handover for the moving node based on the determination, wherein performing the conditional handover for the moving node also comprises performing the handover for the group of UEs connected to the moving node.
Abstract:
A method and an apparatus for clustering Internet protocol (IP) packets in a wireless network are provided. The method includes receiving, by a network device in the wireless network, a plurality of IP packets from an upper layer of a user equipment (UE) in the wireless network or vice versa, initiating a timer on receiving the plurality of IP packets from the upper layer, forming a cluster of IP packets having a predetermined maximum size while the timer is running, stopping the timer once the formation of the cluster is completed, and transmitting the cluster of IP packets to a lower layer of the UE, where the lower layer treats the cluster of IP packets as a single payload to minimize the IP packets handled at the lower layer of the UE.
Abstract:
A method for timer management in a radio link control (RLC) layer in a wireless communication system is provided. The method includes activating, by an RLC entity, a timer at first time, in response to receiving a first set of data packets from at least one user equipment (UE) in an RLC receiving window and deactivating, by the RLC entity, the timer at second time, in response to receiving a second set of data packets from the at least one UE in the RLC receiving window. Further, the method includes determining, by the RLC entity, whether there is at least one missing data packet in the RLC receiving window, and reactivating the timer and prohibiting generation of a status report, in response to determining that there is the at least one missing data packet, or generating the status report, if there is no the at least one missing data packet.