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4,201 | 4.2 Linkage between the protocols for EPS mobility management and EPS session management | During the EPS attach procedure, the network can activate a default EPS bearer context (i.e. if the UE requests PDN connectivity in the attach request). Additionally, the network can activate one or several dedicated EPS bearer contexts in parallel for PDN connections of IP or Ethernet PDN type. To this purpose the EPS... | 3GPP TS 24.301 | Non-Access-Stratum (NAS) protocol for Evolved Packet System (EPS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 4.2 |
4,202 | 5.15.3 Subscription aspects | The Subscription Information shall contain one or more S-NSSAIs i.e. Subscribed S-NSSAIs. The subscription information shall include at least one default S-NSSAI. The UDM sends at the most 16 Subscribed S-NSSAIs to AMF, i.e. the number that can fit in a Configured NSSAI. The subscription information the UDM sends to th... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.15.3 |
4,203 | 5.7.9.2 Initiation | If the UE supports storage of mobility history information, the UE shall: 1> If the UE supports PSCell mobility history information and upon addition of a PSCell: 2> include an entry in visitedPSCellInfoList in variable VarMobilityHistoryReport possibly after performing the following, if necessary: 3> if visitedPSCellI... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.7.9.2 |
4,204 | – DownlinkPreemption | The IE DownlinkPreemption is used to configure the UE to monitor PDCCH for the INT-RNTI (interruption). DownlinkPreemption information element -- ASN1START -- TAG-DOWNLINKPREEMPTION-START DownlinkPreemption ::= SEQUENCE { int-RNTI RNTI-Value, timeFrequencySet ENUMERATED {set0, set1}, dci-PayloadSize INTEGER (0..maxINT-... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
4,205 | 5.8.2.6.3 Reporting of Usage Information towards SMF | The UPF shall support reporting of usage information to the SMF. The UPF shall be capable to support reporting based on different triggers, including: - Periodic reporting with period defined by the SMF. - Usage thresholds provided by the SMF. - Report on demand received from the SMF. The SMF shall make sure that the m... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.8.2.6.3 |
4,206 | 4.3.5.6 Change of additional PDU Session Anchor for IPv6 multi-homing or UL CL | The following procedure is triggered by an SMF when the SMF needs to modify IPv6 multi-homing or UL CL rule (i.e. traffic filter in the Branching Point or the UL CL) in order to move the some or whole traffic flows of the existing additional PDU Session Anchor which was established by the IPv6 multi-homing or the UL CL... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.3.5.6 |
4,207 | 10.5.1.11 Priority Level | The purpose of the Priority Level is to provide information defining the priority level requested or applied. The Priority Level IE may be included in CM_SERVICE_REQUEST, CALL_PROCEEDING and SETUP messages. The Priority Level information element is coded as shown in figure 10.5.11/3GPP TS 24.008[ Mobile radio interface... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 10.5.1.11 |
4,208 | 13.3.2 Principles | The following principles shall apply if this procedure is supported, enabled by operator policy and if the PGW pertains to the same PLMN as the originating entity or if the PGW pertains to a different PLMN and operator policy in the originating entity allows to use this procedure towards this PLMN. A GTP-C entity origi... | 3GPP TS 29.274 | 3GPP Evolved Packet System (EPS); Evolved General Packet Radio Service (GPRS) Tunnelling Protocol for Control plane (GTPv2-C); Stage 3 | CT WG4 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 13.3.2 |
4,209 | 5.30.3.2 Identifiers | The following is required for identification: - A CAG is identified by a CAG Identifier which is unique within the scope of a PLMN ID; - A CAG cell broadcasts one or multiple CAG Identifiers per PLMN; NOTE 1: It is assumed that a cell supports broadcasting a total of twelve CAG Identifiers. Further details are defined ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.30.3.2 |
4,210 | 6.35.3 Service Function Management | - The service function management shall allow the operator to create, modify, and delete a service function based on operator’s service function chaining policies. - The service function management shall allow the operator to create, configure, and control a chain of service functions per application and its users on p... | 3GPP TS 22.261 | Service requirements for the 5G system | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 6.35.3 |
4,211 | 5.5.1.1 X2-based handover 5.5.1.1.1 General | These procedures are used to hand over a UE from a source eNodeB to a target eNodeB using the X2 reference point. In these procedures the MME is unchanged. Two procedures are defined depending on whether the Serving GW is unchanged or is relocated. In addition to the X2 reference point between the source and target eNo... | 3GPP TS 23.401 | General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.5.1.1 |
4,212 | 7 Handling of unknown, unforeseen, and erroneous protocol data 7.1 General | The procedures specified in the present document apply to those messages which pass the checks described in this clause. This clause also specifies procedures for the handling of unknown, unforeseen, and erroneous protocol data by the receiving entity. These procedures are called "error handling procedures", but in add... | 3GPP TS 24.301 | Non-Access-Stratum (NAS) protocol for Evolved Packet System (EPS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 7 |
4,213 | 6.6 SINR related measurements | a) This measurement provides the distribution of RS-SINR received by eNodeB from UEs in the cell. The periodical UE measurement reports towards all of the UEs need to be triggered by eNodeB in the measured cell (See in TS 36.331[ Evolved Universal Terrestrial Radio Access (E-UTRA); Radio Resource Control (RRC); Protoco... | 3GPP TS 32.425 | Telecommunication management; Performance Management (PM); Performance measurements Evolved Universal Terrestrial Radio Access Network (E-UTRAN) | SA WG5 | 3GPP Series : 32 , OAM&P and Charging | 6.6 |
4,214 | 6.7.4 AS security mode command procedure | The AS SMC procedure is for RRC and UP security algorithms negotiation and RRC security activation. for the gNB/ng-eNB. AS SMC procedure can be triggered to establish a secure RRC signalling-only connection during UE registration or PDU session establishment as specified in TS 38.413[ NG-RAN; NG Application Protocol (N... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 6.7.4 |
4,215 | 5.3.1.2 AS Security | AS security comprises of the integrity protection and ciphering of RRC signalling (SRBs) and user data (DRBs). RRC handles the configuration of the AS security parameters which are part of the AS configuration: the integrity protection algorithm, the ciphering algorithm, if integrity protection and/or ciphering is enab... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.1.2 |
4,216 | 7.7.10 Repeated Information Elements | An Information Element is repeated if there is more than one IE with the same IE Type and Instance in the scope of the GTP message (scope of the grouped IE). Such an IE is a member in a list. If an information element is repeated in a GTP signalling message in which repetition of the information element is not specifie... | 3GPP TS 29.274 | 3GPP Evolved Packet System (EPS); Evolved General Packet Radio Service (GPRS) Tunnelling Protocol for Control plane (GTPv2-C); Stage 3 | CT WG4 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 7.7.10 |
4,217 | 9.3.1 Scrambling | The block of bits , where is the number of bits transmitted on the physical sidelink shared channel in one subframe shall be scrambled according to clause 5.3.1. The scrambling sequence generator shall be initialised with at the start of every PSSCH subframe where - for sidelink transmission modes 1 and 2, is destinati... | 3GPP TS 36.211 | Evolved Universal Terrestrial Radio Access (E-UTRA); Physical channels and modulation | RAN1 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 9.3.1 |
4,218 | 15.5 Addressing and identification for Bootstrapping MBMS Service Announcement | The UE needs a Service Announcement Fully Qualified Domain Name (FQDN) to bootstrap MBMS Service Announcement as specified in 3GPP TS 26.346[ Multimedia Broadcast/Multicast Service (MBMS); Protocols and codecs ] [105]. The Service Announcement FQDN is composed of six labels. The last three labels shall be "pub.3gppnet... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 15.5 |
4,219 | 6.3.23 EASDF discovery and selection | Multiple instances of EASDF may be deployed in a network. NF consumers mentioned in this clause are SMF(s). The NF consumers shall utilize the NRF to discover EASDF instance(s) unless EASDF information is available by other means, e.g. locally configured on the NF consumer. The EASDF selection function in NF consumers ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.3.23 |
4,220 | 6.26.2 Requirements 6.26.2.1 General | The 5G system shall support 5G LAN-type service in a shared RAN configuration. The 5G system shall support 5G LAN-type service over a wide area mobile network. The 5G network shall support service continuity for 5G LAN-type service, i.e. the private communication between UEs shall not be interrupted when one or more UE... | 3GPP TS 22.261 | Service requirements for the 5G system | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 6.26.2 |
4,221 | – MBSMulticastConfiguration | The MBSMulticastConfiguration message contains the control information applicable for MBS multicast services transmitted via multicast MRBs for RRC_INACTIVE UEs. Signalling radio bearer: N/A RLC-SAP: UM Logical channel: multicast MCCH Direction: Network to UE MBSMulticastConfiguration message -- ASN1START -- TAG-MBSMUL... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
4,222 | 12.2.5.2 Frequency of inclusion | How often the sender includes the load control information is implementation specific. The sender shall ensure that new/updated load control information is propagated to the target receivers within an acceptable delay, such that the purpose of the information (i.e. effective load balancing) is achieved. The sender may ... | 3GPP TS 29.274 | 3GPP Evolved Packet System (EPS); Evolved General Packet Radio Service (GPRS) Tunnelling Protocol for Control plane (GTPv2-C); Stage 3 | CT WG4 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 12.2.5.2 |
4,223 | 5.8.2.13.1 Support for unicast traffic forwarding of a 5G VN | To enable unicast traffic forwarding in a UPF, the following applies: - The SMF provides for each 5G VN group member's N4 Session (i.e. N4 Session corresponding to PDU Session) the following N4 rules that enable the processing of packets received from this UE. - in order to detect the traffic, a PDR containing Source I... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.8.2.13.1 |
4,224 | 5.5.4 eCall inactivity procedure | The eCall inactivity procedure is applicable only to a UE configured for eCall only mode as specified in 3GPP TS 31.102[ Characteristics of the Universal Subscriber Identity Module (USIM) application ] [17]. The procedure shall be started when: - the UE is in any EMM-REGISTERED substate except substates EMM-REGISTERED... | 3GPP TS 24.301 | Non-Access-Stratum (NAS) protocol for Evolved Packet System (EPS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.5.4 |
4,225 | 19.2.1.2 Service Provided by the BM-SC in visited PLMN | When visited and home PLMN support the same classes of MBMS user services, a visited PLMN may offer its own MBMS user services to roaming users. In this case, the authorization is done in the BM-SC in visited PLMN with the authorization information retrieved from the BM-SC in home PLMN. Then the MBMS user traffic is pr... | 3GPP TS 29.061 | Interworking between the Public Land Mobile Network (PLMN) supporting packet based services and Packet Data Networks (PDN) | CT WG3 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 19.2.1.2 |
4,226 | 6.6.2.3.1 Minimum requirement E-UTRA | E-UTRA Adjacent Channel Leakage power Ratio (E-UTRAACLR) is the ratio of the filtered mean power centred on the assigned channel frequency to the filtered mean power centred on an adjacent channel frequency at nominal channel spacing. The assigned E-UTRA channel power and adjacent E-UTRA channel power are measured with... | 3GPP TS 36.101 | Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception | RAN4 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 6.6.2.3.1 |
4,227 | 5.8.5.2 N4 Session Context | N4 Session Context is identified by an N4 Session ID. An N4 Session Context is generated by SMF and UPF respectively to store the parameters related to an N4 session, including the N4 session ID and following information (see TS 29.244[ Interface between the Control Plane and the User Plane nodes ] [65] for an exhaust... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.8.5.2 |
4,228 | 4.4.7.1 DL cell PDCP SDU Data Volume | This measurement provides the Data Volume (amount of PDCP SDU bits) in the downlink delivered from PDCP layer to RLC layer. The measurement is calculated per PLMN ID and per E-RAB QoS profile (QCI, ARP and GBR). The unit is Mbit. b) CC c) This measurement is obtained by counting the number of bits entering the eNodeB/R... | 3GPP TS 32.425 | Telecommunication management; Performance Management (PM); Performance measurements Evolved Universal Terrestrial Radio Access Network (E-UTRAN) | SA WG5 | 3GPP Series : 32 , OAM&P and Charging | 4.4.7.1 |
4,229 | 6.7.1A Minimum requirement for CA | User Equipment(s) transmitting in close vicinity of each other can produce intermodulation products, which can fall into the UE, or eNode B receive band as an unwanted interfering signal. The UE intermodulation attenuation is defined by the ratio of the mean power of the wanted signal to the mean power of the intermodu... | 3GPP TS 36.101 | Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception | RAN4 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 6.7.1A |
4,230 | 16.4.7.1 Presence of the 3GPP Vendor-Specific attribute in RADIUS messages. | Table 7: List of the 3GPP Vendor-Specific sub-attributes The information represented by some of the Sgi sub-attributes may not be available to the P-GW depending on the UE’s radio access and the S5/S8 protocol type (GTP or PMIP). For example, the P-GW will be aware of the User Location Info (e.g. TAI) if the user is in... | 3GPP TS 29.061 | Interworking between the Public Land Mobile Network (PLMN) supporting packet based services and Packet Data Networks (PDN) | CT WG3 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 16.4.7.1 |
4,231 | 4.3.22 UE Power Saving Mode | A UE may adopt a PSM that is described in TS 23.682[ Architecture enhancements to facilitate communications with packet data networks and applications ] [74]. If a UE is capable of adopting a PSM and it wants to use the PSM it shall request an Active Time value and may request a Periodic TAU/RAU Timer value during eve... | 3GPP TS 23.401 | General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.3.22 |
4,232 | 6.25.1 Description | Non-public networks are intended for the sole use of a private entity such as an enterprise, and can be deployed in a variety of configurations, utilising both virtual and physical elements. Specifically, they can be deployed as completely standalone networks, they can be hosted by a PLMN, or they can be offered as a s... | 3GPP TS 22.261 | Service requirements for the 5G system | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 6.25.1 |
4,233 | 14.1 Services provided by AUSF 14.1.1 General | The AUSF provides UE authentication service to the requester NF by Nausf_UEAuthentication. For AKA based authentication, this operation can be also used to recover from synchronization failure situations. Clause 14.1.2 describes the Nausf_UEAuthentication service. The service operations listed here are used in procedur... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 14.1 |
4,234 | 6.3.4.10 Consecutive subframe and subslot TTI or consecutive slot and subslot TTI time mask | The consecutive subframe and subslot boundary time mask or consecutive slot and subslot boundary time mask defines the observation period between the slot or subframe and the subslot. There are no additional requirements on UE transmit power beyond that which is required in subclause 6.2.2 and subclause 6.6.2.3 Figure ... | 3GPP TS 36.101 | Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception | RAN4 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 6.3.4.10 |
4,235 | 10.5.6.21 NBIFOM container | The purpose of the NBIFOM container information element is to transfer parameters associated with the network-based IP flow mobility (NBIFOM). The NBIFOM container is a type 4 information element with a minimum length of 3 octets and a maximum length of 257 octets. The NBIFOM container information element is coded as s... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 10.5.6.21 |
4,236 | 4.7.1.2a.2 Integrity checking of GMM signalling messages in the MS | Except the messages listed below, no GMM signalling messages shall be processed by the receiving GMM entity in the MS or forwarded to the SM entity, unless the use of integrity protection has been successfully negotiated: - GMM messages: - IDENTITY REQUEST (only if the requested identification parameter is IMSI) - ATTA... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 4.7.1.2a.2 |
4,237 | 6.8.7.2 GSM security context | A GSM security context in GSM BSS can be either: - Established for a UMTS subscriber A GSM security context for a UMTS subscriber is established in case the user has a ME not capable of UMTS AKA, where intersystem change to UTRAN is not possible, or in case the user has a R99+ ME but the SGSN is R98-, where intersystem... | 3GPP TS 33.102 | 3G security; Security architecture | SA WG3 | 3GPP Series : 33 , Security aspects | 6.8.7.2 |
4,238 | 5.4.5.2.4 UE-initiated NAS transport of messages not accepted by the network | Upon reception of an UL NAS TRANSPORT message, if the Payload container type IE is set to "N1 SM information" and the UE is not configured for high priority access in selected PLMN or SNPN, and: a) if the Request type IE is set to "initial request", "existing PDU session" or "MA PDU request"; 1) DNN based congestion co... | 3GPP TS 24.501 | Non-Access-Stratum (NAS) protocol for 5G System (5GS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.4.5.2.4 |
4,239 | 5.37.2 Policy control enhancements to support multi-modal services | A multi-modal service is a communication service that consists of several data flows that relate to each other and that are subject to application coordination. The data flows can transfer different types of data (for example audio, video, positioning, haptic data) and may come from different sources(e.g. a single UE, ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.37.2 |
4,240 | 5.5.1.2.4 Initial registration accepted by the network | During a registration procedure with 5GS registration type IE set to "emergency registration", the AMF shall not check for mobility and access restrictions, regional restrictions or subscription restrictions, or CAG restrictions when processing the REGISTRATION REQUEST message. If the initial registration request is ac... | 3GPP TS 24.501 | Non-Access-Stratum (NAS) protocol for 5G System (5GS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.5.1.2.4 |
4,241 | 8.9.3.1 gNB-CU-CP initiated bearer context release | Figure 8.9.3.1-1 shows the procedure used to release the bearer context in the gNB-CU-UP initiated by the gNB-CU-CP. Figure 8.9.3.1-1: Bearer context release over F1-U – gNB-CU-CP initiated 0. Bearer context release (e.g., following an SGNB RELEASE REQUEST message from the MeNB) is triggered in gNB-CU-CP. 1. The gNB-CU... | 3GPP TS 38.401 | NG-RAN; Architecture description | RAN3 | 3GPP Series : 38 , Radio technology beyond LTE | 8.9.3.1 |
4,242 | 5.35.3 Data handling and QoS support with IAB | Control plane and user plane protocol stacks for IAB operation are defined in TS 38.300[ NR; NR and NG-RAN Overall description; Stage-2 ] [27]. QoS management for IAB can remain transparent to the 5GC. If NG-RAN cannot meet a QoS requirement for a QoS Flow to IAB-related resource constraints, the NG-RAN can reject the... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.35.3 |
4,243 | 4.11.6.3 Configuration of monitoring events for common network exposure | Figure 4.11.6.3-1 represent the information flow to configure monitoring events applicable to both EPC and 5GC using 5GC procedures towards UDM in scenarios where interworking between 5GS and EPC is possible. Figure 4.11.6.3-1: Configuration of monitoring events for common network exposure 1. The AF configures a monito... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.11.6.3 |
4,244 | 8.2 Network Identities | The following identities are used in NG-RAN for identifying a specific network entity: - AMF Name: used to identify an AMF. - NR Cell Global Identifier (NCGI): used to identify NR cells globally. The NCGI is constructed from the PLMN identity the cell belongs to and the NR Cell Identity (NCI) of the cell. The PLMN ID i... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 8.2 |
4,245 | 5.31.5 Non-IP Data Delivery (NIDD) | Functions for NIDD may be used to handle Mobile Originated (MO) and Mobile Terminated (MT) communication for unstructured data (also referred to as Non-IP). Such delivery to the AF is accomplished by one of the following two mechanisms: - Delivery using the NIDD API; - Delivery using UPF via a Point-to-Point (PtP) N6 t... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.31.5 |
4,246 | 5.5.1.3.2 Mobility and periodic registration update initiation | The UE in state 5GMM-REGISTERED shall initiate the registration procedure for mobility and periodic registration update by sending a REGISTRATION REQUEST message to the AMF, a) when the UE detects that the current TAI is not in the list of tracking areas that the UE previously registered in the AMF; b) when the periodi... | 3GPP TS 24.501 | Non-Access-Stratum (NAS) protocol for 5G System (5GS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.5.1.3.2 |
4,247 | 5.3.2 Physical-layer processing for physical uplink shared channel | The uplink physical-layer processing of transport channels consists of the following steps: - Transport Block CRC attachment; - Code block segmentation and Code Block CRC attachment; - Channel coding: LDPC coding; - Physical-layer hybrid-ARQ processing; - Rate matching; - Scrambling; - Modulation: π/2 BPSK (with transf... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.2 |
4,248 | Annex A (informative): Relationship between Service-Based Interfaces and Reference Points | Service-Based Interfaces and Reference Points are two different ways to model interactions between architectural entities. A Reference Point is a conceptual point at the conjunction of two non-overlapping functional groups (see TR 21.905 [1]). In figure A-1 the functional groups are equivalent to Network Functions. A r... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | Annex |
4,249 | 5.2.8.3 Nsmf_EventExposure Service 5.2.8.3.1 General | Service description: This service provides events related to PDU Sessions towards consumer NF. The service operations exposed by this service allow other NFs to subscribe and get notified of events happening on PDU Sessions. The following are the key functionalities of this NF service. - Allow consumer NFs to Subscribe... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.8.3 |
4,250 | 8.150 Alternative IMSI | Alternative IMSI is transferred via GTP tunnels. The sending entity copies the value part of the Alternative IMSI into the Value field of the Alternative IMSI IE. Alternative IMSI is in the form of an IMSI as defined in 3GPP TS 23.003[ Numbering, addressing and identification ] [2]. Figure 8.150-1: Alternative IMSI Oc... | 3GPP TS 29.274 | 3GPP Evolved Packet System (EPS); Evolved General Packet Radio Service (GPRS) Tunnelling Protocol for Control plane (GTPv2-C); Stage 3 | CT WG4 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 8.150 |
4,251 | 5.31.4 Control Plane CIoT 5GS Optimisation 5.31.4.1 General | The Control Plane CIoT 5GS Optimisation is used to exchange user data between the UE and the SMF as payload of a NAS message in both uplink and downlink directions, avoiding the establishment of a user plane connection for the PDU Session. The UE and the AMF perform integrity protection and ciphering for the user data ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.31.4 |
4,252 | 5.2.3.3 CC-Establishment confirmation | The call control entity of the network in the "CC-establishment present" state, shall, upon receipt of a CC-ESTABLISHMENT CONFIRMED message, stop timer T333 and enter the "CC-establishment confirmed" state. For speech calls, if the ESTABLISHMENT CONFIRMED message contains a Supported Codec List information element, the... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.2.3.3 |
4,253 | 6.4.2.1 Multiple active NAS connections with different PLMNs | TS 23.501[ System architecture for the 5G System (5GS) ] [2] has a scenario when the UE is registered to a VPLMN's serving network via 3GPP access and to another VPLMN's or HPLMN's serving network via non-3GPP access at the same time. When the UE is registered in one PLMN's serving network over a certain type of acces... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 6.4.2.1 |
4,254 | 5.2.2.2.6 Namf_Communication_N1N2MessageUnSubscribe service operation | Service operation name: Namf_Communication_N1N2MessageUnSubscribe. Description: An NF can unsubscribe with the AMF to stop notifying a particular N1 message type or a specific N2 information type about the UE. Input, Required: CN NF ID, N1 Message Type Input, Optional: None. Output, Required: None. Output, Optional: No... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.2.2.6 |
4,255 | 8.2.1.3.1C Enhanced Performance Requirement Type C - 2 Tx Antenna Ports with TM1 interference | The requirements are specified in Table 8.2.1.3.1C-2, with the addition of parameters in Table 8.2.1.3.1C-1 and the downlink physical channel setup according to Annex C.3.2. The purpose is to verify the performance of open-loop spatial multiplexing performence with 2 transmit antennas when the PDSCH transmission in the... | 3GPP TS 36.101 | Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception | RAN4 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 8.2.1.3.1C |
4,256 | 5.2.7.2.7 Nnrf_NFManagement_NFStatusUnsubscribe service operation | Service Operation name: Nnrf_NFManagement_NFStatusUnsubscribe Description: Consumer can unsubscribe from being notified of newly registered NF along with its NF services and other events types described in the Nnrf_NFManagement_NFStatusSubscribe service operation (see clause 5.2.7.2.5). Inputs, Required: Subscription C... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.7.2.7 |
4,257 | 19.11 Dedicated Core Networks Identifier | A Dedicated Core Network ID (DCN-ID) identifies a Dedicated Core Network (DCN) within a PLMN. The allowed values of DCN-ID shall be in the range of 0 to 65535. Values in the range of 0 to 127 are standardized and defined as follows: 0: Spare, for future use … 127: Spare, for future use Values in the range of 128 to 655... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 19.11 |
4,258 | 8.3 Bearer type change | In MR-DC, all the possible bearer type change options are supported: - MCG bearer to/from split bearer; - MCG bearer to/from SCG bearer; - SCG bearer to/from split bearer. Bearer termination point change is supported for all bearer types, and can be performed with or without bearer type change: - MN terminated bearer t... | 3GPP TS 37.340 | Evolved Universal Terrestrial Radio Access (E-UTRA) and NR; Multi-connectivity; Overall Description; Stage-2 | RAN2 | 3GPP Series : 37 , Multiple radio access technology aspects | 8.3 |
4,259 | G.3.2 B2B charging information utilisation | In the business CHF only interaction, the NF (CTF) collect and report the charging information per business subscriber to B-CHF. In the business CHF via consumer CHF interaction, the NF (CTF) collect and report the charging information to C-CHF. C-CHF report the charging information per business subscriber to B-CHF. Th... | 3GPP TS 32.240 | Telecommunication management; Charging management; Charging architecture and principles | SA WG5 | 3GPP Series : 32 , OAM&P and Charging | G.3.2 |
4,260 | 8.3.2.1B Enhanced Performance Requirement Type A – Single-layer Spatial Multiplexing with TM9 interference model | The requirements are specified in Table 8.3.2.1B-2, with the addition of the parameters in Table 8.3.2.1B-1 and the downlink physical channel setup according to Annex C.3.2. The purpose of these tests is to verify closed-loop rank one performance on one of the antenna ports 7 or 8 without a simultaneous transmission on... | 3GPP TS 36.101 | Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception | RAN4 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 8.3.2.1B |
4,261 | – CFR-ConfigMulticast | The IE CFR-ConfigMulticast indicates UE specific common frequency resource configuration for multicast for one dedicated BWP. CFR-ConfigMulticast information element -- ASN1START -- TAG-CFR-CONFIGMULTICAST-START CFR-ConfigMulticast-r17::= SEQUENCE { locationAndBandwidthMulticast-r17 INTEGER (0..37949) OPTIONAL, -- Need... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
4,262 | – LTE-NeighCellsCRS-AssistInfoList | The IE LTE-NeighCellsCRS-AssistInfoList-r17 is used to provide configuration information of neighbour LTE cells to assist the UE to perform CRS interference mitigation (CRS-IM) in scenarios with overlapping spectrum for LTE and NR. LTE-NeighCellsCRS-AssistInfoList information element -- ASN1START -- TAG-LTE-NEIGHCELLSC... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
4,263 | 10.5.7.1 PDP context status | The purpose of the PDP context status information element is to indicate the state of each PDP context which can be identified by NSAPI. The PDP context status information element is a type 4 information element with 4 octets length. The PDP context status information element is coded as shown in figure 10.5.148/3GPP T... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 10.5.7.1 |
4,264 | 5.7.3b.3 Failure type determination | The UE shall set the MCG failure type as follows: 1> if the UE initiates transmission of the MCGFailureInformation message due to T310 expiry: 2> set the failureType as t310-Expiry; 1> else if the UE initiates transmission of the MCGFailureInformation message due to T312 expiry: 2> set the failureType as t312-Expiry; 1... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.7.3b.3 |
4,265 | – SRS-PosTx-Hopping | The IE SRS-PosTx-Hopping specifies the frequency hopping configuration for SRS for Positioning transmission. SRS-PosTx-Hopping information element -- ASN1START -- TAG- SRS-PosTx-Hopping-START SRS-PosTx-Hopping-r18 ::= SEQUENCE { srs-PosConfig-r18 SRS-PosConfig-r17, bwp-r18 BWP, srs-PosUplinkTransmissionWindowConfig-r18... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
4,266 | 6.37.2 Requirements | The 5G system shall be able to support for a UE to discover other UEs supporting ranging. The 5G system shall be able to authorize ranging for a UE or a group of UE when using licensed spectrum. The 5G system shall be able to protect privacy of a UE and its user, ensuring that no identifiable information can be tracked... | 3GPP TS 22.261 | Service requirements for the 5G system | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 6.37.2 |
4,267 | 5.3.6.4 Multimedia CAT during the alerting phase of a mobile originated call | A mobile station supporting multimedia CAT during the alerting phase of a mobile originated multimedia call establishment shall indicate support of this capability to the network in the Call Control Capabilities information element in the SETUP message. The network may generate a multimedia CAT to such a mobile station... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.3.6.4 |
4,268 | 9.3.8.1.1 FDD | For the parameters specified in Table 9.3.8.1.1-1, and using the downlink physical channels specified in Annex C, the minimum requirements are specified in Table 9.3.8.1.1-2 and by the following a) the ratio of the throughput obtained when transmitting the transport format indicated by each reported wideband CQI index ... | 3GPP TS 36.101 | Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception | RAN4 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 9.3.8.1.1 |
4,269 | A.3.5 Fields with optional presence | A field with optional presence may be declared with the keyword DEFAULT. It identifies a default value to be assumed, if the sender does not include a value for that field in the encoding: -- /example/ ASN1START PreambleInfo ::= SEQUENCE { numberOfRA-Preambles INTEGER (1..64) DEFAULT 1, ... } -- ASN1STOP Alternatively,... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | A.3.5 |
4,270 | 10.5.5.8 P-TMSI signature | The purpose of the P-TMSI signature information element is to identify a GMM context of an MS. The P-TMSI signature is a type 3 information element with 4 octets length. The P-TMSI signature information element is coded as shown in figure 10.5.124/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core netwo... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 10.5.5.8 |
4,271 | – CSI-ResourceConfig | The IE CSI-ResourceConfig defines a group of one or more NZP-CSI-RS-ResourceSet, CSI-IM-ResourceSet and/or CSI-SSB-ResourceSet. CSI-ResourceConfig information element -- ASN1START -- TAG-CSI-RESOURCECONFIG-START CSI-ResourceConfig ::= SEQUENCE { csi-ResourceConfigId CSI-ResourceConfigId, csi-RS-ResourceSetList CHOICE {... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
4,272 | – UplinkTxDirectCurrentMoreCarrierList | The IE UplinkTxDirectCurrentMoreCarrierList indicates the Tx Direct Current locations for intra-band CA including one, two or more uplink carriers. The UE does not report the uplink Direct Current location information for SUL carrier(s). UplinkTxDirectCurrentMoreCarrierList information element -- ASN1START -- TAG-UPLIN... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
4,273 | 11.3 Numbering and Addressing | In the case of interworking with public IP networks (such as the Internet), the PLMN operator shall use public network addresses. These public addresses can be reserved from the responsible IP numbering body, or from an ISP with which the PLMN operator has an agreement. In case of IPv6, a global IPv6 prefix can be obta... | 3GPP TS 29.061 | Interworking between the Public Land Mobile Network (PLMN) supporting packet based services and Packet Data Networks (PDN) | CT WG3 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 11.3 |
4,274 | 4.5.4.1 Access control and checking in 5GMM-IDLE mode and in 5GMM-IDLE mode with suspend indication | When the UE is in 5GMM-IDLE mode or 5GMM-IDLE mode with suspend indication, upon receiving a request from the upper layers for an access attempt, the NAS shall categorize the access attempt into access identities and an access category following: a) subclause 4.5.2, table 4.5.2.1 and table 4.5.2.2, and subclause 4.5.3,... | 3GPP TS 24.501 | Non-Access-Stratum (NAS) protocol for 5G System (5GS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 4.5.4.1 |
4,275 | 16.10.5.7 Physical Layer | A CFR configured by RRCReconfiguration message is defined for multicast scheduling as an 'MBS frequency region' with a number of contiguous PRBs confined within and with the same numerology as the DL BWP, and multicast scheduling may have specific characteristics (e.g., PDCCH, PDSCH and SPS configurations). The CFR for... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 16.10.5.7 |
4,276 | 16.10.5.1 Session Management | There are two delivery modes as specified in TS 23.247[ Architectural enhancements for 5G multicast-broadcast services ] [45]: - 5GC Shared MBS traffic delivery; - 5GC Individual MBS traffic delivery. As specified in TS 23.247[ Architectural enhancements for 5G multicast-broadcast services ] [45], if the gNB supports... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 16.10.5.1 |
4,277 | 5.9.3 Broadcast MRB configuration 5.9.3.1 General | The broadcast MRB configuration procedure is used by the UE to configure PDCP, RLC, MAC and the physical layer upon starting and/or stopping to receive a broadcast MRB transmitted on MTCH, or upon modification of a configuration of a broadcast MRB received by the UE. The procedure applies to MBS capable UEs that are in... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.9.3 |
4,278 | 4.3.1.2 NG Control Plane | The NG control plane interface (NG-C) is defined between the NG-RAN node and the AMF. The control plane protocol stack of the NG interface is shown on Figure 4.3.1.2-1. The transport network layer is built on IP transport. For the reliable transport of signalling messages, SCTP is added on top of IP. The application la... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 4.3.1.2 |
4,279 | I.10.5.1 NSWO support in SNPN using CH with AAA server | The reference architecture to support authentication for Non-seamless WLAN offload using SNPN credentials from Credentials Holder using AAA Server is specified in Figure 4.2.15-3b of TS 23.501[ System architecture for the 5G System (5GS) ] [2]. This clause applies to UEs that support NSWO in SNPN with any key generati... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | I.10.5.1 |
4,280 | 4 Overview of the security architecture | Figure 1 gives an overview of the complete 3G security architecture. Figure 1: Overview of the security architecture Five security feature groups are defined. Each of these feature groups meets certain threats and accomplishes certain security objectives: - Network access security (I): the set of security features that... | 3GPP TS 33.102 | 3G security; Security architecture | SA WG3 | 3GPP Series : 33 , Security aspects | 4 |
4,281 | 5.5.1.2.6 Abnormal cases in the UE | The following abnormal cases can be identified: a) Access barred because of access class barring, EAB, ACDC or NAS signalling connection establishment rejected by the network without "Extended wait time" received from lower layers In WB-S1 mode, if access is barred for "originating signalling" (see 3GPP TS 36.331[ Evol... | 3GPP TS 24.301 | Non-Access-Stratum (NAS) protocol for Evolved Packet System (EPS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.5.1.2.6 |
4,282 | 13.4.1.3.1.1 With mutual authentication between NF Service Consumer and NRF at the transport layer | This clause covers the scenario where the NF Service Consumer and the NRF are connected over a mutually authenticated TLS connection. Figure 13.4.1.3.1.1-1: Authorization and service invocation procedure, for indirect communication without delegated discovery, with mutual authentication between NF and NRF at the transp... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 13.4.1.3.1.1 |
4,283 | M.3.3.2 Security mechanisms for the F1 interface | The F1 interface connects the IAB-node (gNB-DU) to the IAB-donor-CU. It consists of the F1-C for control plane and the F1-U for the user plane. F1 security for IAB is established using the security mechanisms for the F1 interface as specified in clause 9.8.2 of the present document, with IAB node taking the role of gNB... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | M.3.3.2 |
4,284 | 4.1.5.1 Number of UE CONTEXT Release Request initiated by eNodeB/RN | This measurement provides the number of UE CONTEXT Release initiated by eNB/RN for each release cause. CC. Transmission of an UE CONTEXT RELEASE REQUEST message initiated by eNodeB/RN. Each release request is to be added to the relevant cause measurement. The possible causes are defined in 36.413 [9]. The sum of all su... | 3GPP TS 32.425 | Telecommunication management; Performance Management (PM); Performance measurements Evolved Universal Terrestrial Radio Access Network (E-UTRAN) | SA WG5 | 3GPP Series : 32 , OAM&P and Charging | 4.1.5.1 |
4,285 | 5.13 Activation/Deactivation of SCells | If the MAC entity is configured with one or more SCells, the network may activate and deactivate the configured SCells. The SpCell is always activated. The network activates and deactivates the SCell(s) by sending Activation/Deactivation and/or Hibernation MAC control element(s) described in clause 6.1.3.8 and 6.1.3.15... | 3GPP TS 36.321 | Evolved Universal Terrestrial Radio Access (E-UTRA); Medium Access Control (MAC) protocol specification | RAN2 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 5.13 |
4,286 | C.1.1.3 Time-based sequence number generation | In its binary representation, the sequence number consists of two concatenated parts SQN = SEQ || IND. The part SEQ is not divided into two parts. The global counter GLC is thus as long as SEQ. Instead of storing the individual counter SEQHE in the HE there is a value DIF stored in the HE which is individual for each u... | 3GPP TS 33.102 | 3G security; Security architecture | SA WG3 | 3GPP Series : 33 , Security aspects | C.1.1.3 |
4,287 | 17.1 MBMS user authorisation | Upon reception of an IGMP (IPv4) or MLD (IPv6) Join message for an IP multicast address allocated to MBMS services, the GGSN shall request authorisation of the user for this multicast MBMS bearer service (identified by the PDP context over which the IGMP join is received). The GGSN shall support pre-configuration of a ... | 3GPP TS 29.061 | Interworking between the Public Land Mobile Network (PLMN) supporting packet based services and Packet Data Networks (PDN) | CT WG3 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 17.1 |
4,288 | 4.3.2.2.1 Online Charging Function | The OCF consists of two distinct modules, namely the Session Based Charging Function (SBCF) and the Event Based Charging Function (EBCF). The Session Based Charging Function is responsible for online charging of network / user sessions, e.g. voice calls, IP CAN bearers, IP CAN session or IMS sessions. The Event Based C... | 3GPP TS 32.240 | Telecommunication management; Charging management; Charging architecture and principles | SA WG5 | 3GPP Series : 32 , OAM&P and Charging | 4.3.2.2.1 |
4,289 | 4.23.6.2 Policy Update Procedures with I-SMF | Figure 4.23.6-1 shows procedures related to provisioning of PCC rules containing traffic steering information related to an I-SMF. Figure 4.23.6-1: Policy Update procedure In cases where step 1a in figure 4.23.6-1 is triggered in response to PCF receiving AF request, below steps 3 and 4 are applicable, in addition to t... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.23.6.2 |
4,290 | 5.6.3 Potential service requirements | Editor’s note: These potential requirements require cross-checking with regulators and UAS OEMs before inclusion into normative work. The UAS shall be able to locally broadcast its identity and location. NOTE: the locally broadcast information should not expose personally identifiable information to general users. The ... | 3GPP TS 22.825 | Study on Remote Identification of Unmanned Aerial Systems (UAS) | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 5.6.3 |
4,291 | 4.3.17.8 Support for Non-IP Data Delivery (NIDD) 4.3.17.8.1 General | The support of Non-IP data is part of the CIoT EPS Optimisations. A PDN Type "Non-IP" is used for Non-IP data. The Non-IP data delivery to SCS/AS is accomplished by one of two mechanisms: - Delivery using SCEF as defined in clause 4.3.17.8.3.2. - Delivery using a Point-to-Point (PtP) SGi tunnel as defined in clause 4.3... | 3GPP TS 23.401 | General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.3.17.8 |
4,292 | 5.10 MBS multicast reception in RRC_INACTIVE 5.10.1.1 General | UE configured to receive MBS multicast service(s) in RRC_INACTIVE that the UE has joined applies MBS multicast procedures described in this clause. MBS multicast configuration information is provided in RRCRelease and on multicast MCCH logical channel. When there is temporarily no data for an active multicast session o... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.10 |
4,293 | 5.7.13 RLM/BFD relaxation | In case both low mobility criterion and good serving cell criterion are configured for RLM/BFD relaxation, the UE is allowed to perform RLM and/or BFD relaxation according to requirements specified in TS 38.133[ NR; Requirements for support of radio resource management ] [14] when both relaxed measurement criterion fo... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.7.13 |
4,294 | – PCI-Range | The IE PCI-Range is used to encode either a single or a range of physical cell identities. The range is encoded by using a start value and by indicating the number of consecutive physical cell identities (including start) in the range. For fields comprising multiple occurrences of PCI-Range, the Network may configure o... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
4,295 | 4.16.1.3 Failed Secondary Node Additions without SN terminated bearers | a) This measurement provides the number of failures when Secondary Node Addition without SN terminated bearers. The measurement is split into subcounters per failure cause. b) CC c) On MN failed receipt of SGNB ADDITION REQUEST ACKNOWLEGE Message or on transmission by MN of an SgNB Release Message after receipt of SGNB... | 3GPP TS 32.425 | Telecommunication management; Performance Management (PM); Performance measurements Evolved Universal Terrestrial Radio Access Network (E-UTRAN) | SA WG5 | 3GPP Series : 32 , OAM&P and Charging | 4.16.1.3 |
4,296 | 5.4.2 Authentication procedure 5.4.2.1 General | The purpose of the EPS authentication and key agreement (AKA) procedure is to provide mutual authentication between the user and the network and to agree on a key KASME (see 3GPP TS 33.401[ 3GPP System Architecture Evolution (SAE); Security architecture ] [19]). The cases when the EPS AKA procedure should be used are ... | 3GPP TS 24.301 | Non-Access-Stratum (NAS) protocol for Evolved Packet System (EPS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.4.2 |
4,297 | 4.12a.4.3 CN-initiated selective deactivation of UP connection of an existing PDU Session associated with Trusted non-3GPP Access | The procedure described in clause 4.3.7 (CN-initiated selective deactivation of UP connection of an existing PDU Session) is used for CN-initiated selective deactivation of UP connection for an established PDU Session associated with trusted non-3GPP Access for a UE in CM-CONNECTED state, with the following exceptions:... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.12a.4.3 |
4,298 | 4.16.15.2.2 Procedure for PDTQ warning notification | Figure 4.16.15.2.2-1: The procedure for PDTQ warning notification 1. The negotiation for PDTQ policy as described in clause 4.16.15.2.1 is completed. In addition, the PCF has subscribed to analytics on "Network Performance" or "DN Performance" from NWDAF for the area of interest and time window of a PDTQ policy followi... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.16.15.2.2 |
4,299 | 10.5.3.1.1 Authentication Parameter AUTN (UMTS and EPS authentication challenge) | The purpose of the Authentication Parameter AUTN information element is to provide the MS with a means of authenticating the network. The Authentication Parameter AUTN information element is coded as shown in figure 10.5.75.1/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 ... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 10.5.3.1.1 |
4,300 | 8.13.2.2.1 Minimum Requirement Dual-Layer Spatial Multiplexing 2 Tx Antenna Port | For CA with 2 DL CCs, for dual-layer transmission on antenna ports 7 and 8 upon detection of a PDCCH with DCI format 2C, the requirements are specified in Table 8.13.2.2.1-2A, based on single carrier requirement specified in Table 8.13.2.2.1-2, with the addition of the parameters in Table 8.13.2.2.1-1 and the downlink ... | 3GPP TS 36.101 | Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception | RAN4 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 8.13.2.2.1 |
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