Abstract:
Embodiments herein provide a wireless communication system for managing a network slice congestion. The wireless communication system includes a User Equipment (UE), operably coupled to a core network. The UE is configured to transmit a first NAS signaling message to the core network, wherein the first NAS signaling message comprises a specific network slide identity. The core network i configured to detect the network slice congestion in the wireless communication system. Further, the core network is configured to indicate the network slice congestion using a second NAS signaling message to the User Equipment (UE), wherein the second NAS signaling message comprising a reject cause value and a back off timer for the requested network slice identity.
Abstract:
Embodiments herein provide a method for communication by a user equipment (UE) in a wireless communication network. The method comprises: determining a failure in transmission of a uplink non-access stratum (UL NAS) transport message, determining whether the failure in the transmission of the UL NAS transport message is due to a Tracking Area identity (TAI) change from lower layers, and handling the failure in the transmission of the UL NAS transport message based on a TAI list sent from the wireless communication network, in response to determining that the failure in the transmission of the UL NAS transport message is due to the TAI change from the lower layers.
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). The present disclosure may be applied to intelligent services based on the 5G communication technology and the IoT-related technology. A method of handling control plane data in a wireless network. The method comprises sending, by a user entity (UE), a non-access stratum (NAS) message along with an indication data to a mobility management (MM) core network entity. The MM core network entity processes the received NAS message and the indication data. The MM core network entity determines status of network congestion upon processing the processed NAS message. Sending, by the MM core network entity, a response to the UE based on at least one of the processed indication data and the determined network congestion.
Abstract:
A method for managing a Closed Access Group (CAG) feature using an Access and Mobility Management Function (AMF) server. The method includes receiving a registration request message from a User Equipment (UE) for registering for a CAG subscription. The method includes determining that the UE is subscribed to access the network through a CAG cell only. The method includes determining whether the registration request message includes a CAG support indicator. The method includes determining whether the UE supports the CAG feature based on the CAG support indicator. The method includes sending either a registration accept message including a CAG information list to the UE when the UE supports the CAG feature, or a registration reject message including a 5GMM cause value other than a 5GMM cause #76 to the UE when the UE does not support the CAG feature.
Abstract:
A method for performing mobility-measurements in new radio (NR) based 3GPP mobile communication network is provided. The method includes receiving network information with respect to a geographical area from one or more user equipments (UEs) operating in geographical area for a predefined duration of time. The received network information is classified at various time-instants during the predefined duration of time as at least one of an NR spectrum availability and NR spectrum non-availability. An overall probability of availability of the NR spectrum within the area is calculated for a time-instant subsequent to the predefined duration of time based on the classified network information. The UE is enabled for scheduling NR measurements within the area based on the calculated probability.
Abstract:
A method for allowing a user equipment (UE) to detach from a network entity is provided. The method includes detecting that the UE is not registered with the network entity while the UE is in an area previously registered with the network entity. Further, the method includes sending a detach indication to the network entity to detach a service to the UE.
Abstract:
A method of a terminal and the terminal are provided. The method includes detecting a location area change when a congestion timer is running and one of a general packet radio service (GPRS) update status indicating “GU1 UPDATED,” a mobility management (MM) update status indicating “U1 UPDATED,” and an evolved packet system “EPS” update status indicating “EU1 UPDATED” is indicated; adaptively changing the GPRS update status to “GU2 NOT UPDATED,” the MM update status to “U2 NOT UPDATED,” and the EPS update status to “EU2 NOT UPDATED”; and entering a state of “GMM-REGISTERED.ATTEMPTING-TO-UPDATE,” “MM IDLE, ATTEMPTING TO UPDATE,” or “EMM-REGISTERED.ATTEMPTING-TO-UPDATE,” in accordance with one of “GU2 NOT UPDATED,” “U2 NOT UPDATED,” and “EU2 NOT UPDATED.”
Abstract:
A method for allowing a user equipment (UE) to detach from a network entity is provided. The method includes detecting that the UE is not registered with the network entity while the UE is in an area previously registered with the network entity. Further, the method includes sending a detach indication to the network entity to detach a service to the UE.
Abstract:
The disclosure relates to a 5G or 6G communication system for supporting a higher data transmission rate. Embodiments herein disclose a device and methods for managing and selecting Public Land Mobile Networks (PLMNs) for disaster roaming during Minimization of Service Interruption (MINT) situations. A UE is configured for selecting one of the “list of PLMN(s) to be used in disaster condition” configured by a HPLMN/EPLMN, and “list of PLMN(s) to be used in disaster condition” configured by a VPLMN, in a disaster situation based on a UE configuration. The method discloses selection of at least one Forbidden PLMN (FPLMN) by the CE in a disaster situation, when a primary PLMN list configured by a HPLMN/EPLMN is different from at least one secondary PLMN list configured by at least one VPLMN.
Abstract:
The present subject matter refers to methods and systems for managing paging restriction in Multi SIM Multi Standby (MUSIM). The method performed by a user equipment (UE) (101) comprises transmitting (202), to a network entity (106), a request message including paging restriction information. Further, the method includes receiving (204), from the network entity, a request accept message including an indication of an implementation of a paging restriction between the network entity and the UE based on the paging restriction information included in the registration request message. Thereafter, the method includes transmitting, to the network entity, a release request message including information related to a release of the paging restriction for the UE when the UE intend to receive paging messages from the network entity. Moreover, in response to a reception of the release request message, the network entity releases the paging restriction for the UE.