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5,801 | 6.8.2.2 Key handling during mobility in RRC_INACTIVE state 6.8.2.2.1 General | The purpose of this procedure is to allow the UE to notify the network if it moves out of the configured RNA (RAN-based Notification Area) or if UE initiates a periodic RAN-based notification area update procedure. The UE and gNB store the AS security context in RRC_INACTIVE state and reactivate the AS security context... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 6.8.2.2 |
5,802 | 16.12.4 Relay Selection/Reselection | The U2N Remote UE performs radio measurements at PC5 interface and uses them for U2N Relay selection and reselection along with higher layer criteria, as specified in TS 23.304[ Proximity based Services (ProSe) in the 5G System (5GS) ] [48]. When there is no unicast PC5 connection between the U2N Relay UE and the U2N ... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 16.12.4 |
5,803 | 9.3.18a Recall $(CCBS)$ | A mobile station that does not support the "Network initiated MO call" option shall treat this message as a message with message type not defined for the PD. This message is sent from the network to the mobile station to initiate the sending of the SETUP message. In addition it provides information for user notificatio... | 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 | 9.3.18a |
5,804 | 5.15.7.3 Connected mode aspects | In addition to the interworking principles documented in clause 5.17.2 the following applies for interworking with N26: - When a UE is CM-CONNECTED in 5GC and a handover to EPS occur, the AMF selects the target MME based on the source AMF Region ID, AMF Set ID and target location information. The AMF forwards the UE co... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.15.7.3 |
5,805 | 5.2.16.3.2 Nnssf_NSSAIAvailability_Update service operation | Service operation name: Nnssf_NSSAIAvailability_Update Description: This service operation enables the AMF to update the NSSF with the S-NSSAIs the AMF supports per TA and get the availability of the S-NSSAIs and optionally NSI IDs per TA for the S-NSSAIs the AMF supports. Inputs, Required: Supported S-NSSAIs per TAI. ... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.16.3.2 |
5,806 | 5.4.4 Clearing initiated by the network | Apart from the exception conditions identified in subclause 5.4.2, the call control entity of the network shall initiate clearing by: sending a DISCONNECT message; and entering the "disconnect indication" state. The DISCONNECT message is a local invitation to clear the call. NOTE: When the network initiates clearing by... | 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 | 5.4.4 |
5,807 | – SCCH-Message | The SCCH-Message class is the set of PC5-RRC messages that may be sent from the UE to the UE for unicast of NR sidelink communication on SCCH logical channel. -- ASN1START -- TAG-SCCH-MESSAGE-START SCCH-Message ::= SEQUENCE { message SCCH-MessageType } SCCH-MessageType ::= CHOICE { c1 CHOICE { measurementReportSidelink... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,808 | K.2.3 IOPS network configuration | An IOPS network can comprise either: - a Local EPC and a single isolated IOPS-capable eNodeB, which may be co-located or have connectivity to the Local EPC; or - a Local EPC and two or more IOPS-capable eNodeBs, which have connectivity to a single Local EPC. Existing procedures described in TS 36.300[ Evolved Universal... | 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") | K.2.3 |
5,809 | 5.1.4 Data integrity | The following security features are provided with respect to integrity of data on the network access link: - integrity algorithm agreement: the property that the MS and the SN can securely negotiate the integrity algorithm that they shall use subsequently; - integrity key agreement: the property that the MS and the SN ... | 3GPP TS 33.102 | 3G security; Security architecture | SA WG3 | 3GPP Series : 33 , Security aspects | 5.1.4 |
5,810 | – SL-BWP-ConfigCommon | The IE SL-BWP-ConfigCommon is used to configure the cell-specific configuration information on one particular sidelink bandwidth part. SL-BWP-ConfigCommon information element -- ASN1START -- TAG-SL-BWP-CONFIGCOMMON-START SL-BWP-ConfigCommon-r16 ::= SEQUENCE { sl-BWP-Generic-r16 SL-BWP-Generic-r16 OPTIONAL, -- Need R sl... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,811 | 6.2.4 PCF | The Policy Control Function (PCF) includes the following functionality: - Supports unified policy framework to govern network behaviour. - Provides policy rules to Control Plane function(s) to enforce them. - Accesses subscription information relevant for policy decisions in a Unified Data Repository (UDR). - Support P... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.2.4 |
5,812 | 8.3.1.1F Enhanced Performance Requirement Type B – Single-layer Spatial Multiplexing with TM10 serving cell configuration and TM9 interference model | The requirements are specified in Table 8.3.1.1F-2, with the addition of the parameters in Table 8.3.1.1F-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 | 8.3.1.1F |
5,813 | 4.12.6 UE or Network Requested PDU Session Modification via Untrusted non-3GPP access | The UE or network requested PDU Session Modification procedure via untrusted non-3GPP access is depicted in figure 4.12.6-1. The procedure applies in non-roaming, roaming with LBO as well as in home-routed roaming scenarios. For non-roaming and LBO scenarios, the functional entities in the following procedures are loca... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.12.6 |
5,814 | Annex M (informative): Functions and procedures over NB-IoT RAT | In the case of conflict between the information in this Annex and other information in the main body of the present document, the information in the main body takes precedence. The following tables list the functions and procedures that are: - Supported or not supported over NB-IoT RAT, including whether for CP CIoT EP... | 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") | Annex |
5,815 | 8.7.8 TDD FDD (DC) | The parameters specified in Table 8.7.8-1 are valid for all TDD FDD DC tests unless otherwise stated. Table 8.7.8-1: Common Test Parameters (TDD FDD DC) For UE not supporting 256QAM, the requirements are specified in Table 8.7.8-2, with the addition of the parameters in Table 8.7.8-1 and the downlink physical channel s... | 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 | 8.7.8 |
5,816 | 5.7.1A Channel spacing for CA | For intra-band contiguous carrier aggregation with two or more component carriers, the nominal channel spacing between two adjacent E-UTRA component carriers is defined as the following unless stated otherwise: where BWChannel(1) and BWChannel(2) are the channel bandwidths of the two respective E-UTRA component carrier... | 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 | 5.7.1A |
5,817 | 6.6.1 Exchange of protocol configuration options 6.6.1.1 General | The UE and the PDN GW can exchange protocol configuration options via the dedicated ESM information request procedure or via other ESM procedures. If supported by the network and UE end-to-end for a PDN connection, protocol configuration options shall be exchanged via the Extended protocol configuration options IE. Oth... | 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 | 6.6.1 |
5,818 | 6.6.2.3.2A Minimum requirement UTRA for CA | For inter-band carrier aggregation with one component carrier per operating band and the uplink active in two E-UTRA bands, the UTRA Adjacent Channel Leakage power Ratio (UTRAACLR) is the ratio of the filtered mean power centred on the assigned channel bandwidth on the component carrier to the filtered mean power centr... | 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 | 6.6.2.3.2A |
5,819 | 6.10.4 Positioning reference signals | Positioning reference signals shall only be transmitted in resource blocks in downlink subframes configured for positioning reference signal transmission. If both normal and MBSFN subframes are configured as positioning subframes within a cell, the OFDM symbols in a MBSFN subframe configured for positioning reference s... | 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 | 6.10.4 |
5,820 | 6.5.3.6 Abnormal cases on the network side | The following abnormal case can be identified: a) No PDN connection with the linked EPS bearer identity activated: If the linked EPS bearer identity included in the BEARER RESOURCE ALLOCATION REQUEST message does not belong to the default EPS bearer context of an established PDN connection, the MME shall reply with a B... | 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 | 6.5.3.6 |
5,821 | 5.16.3.6 Terminating domain selection for IMS voice | When requested by IMS, the UDM/HSS shall be able to query the serving AMF for T-ADS related information. T-ADS is a functionality located in the IMS and is performed as specified in TS 23.221[ Architectural requirements ] [23]. The AMF shall respond to the query with the following information unless the UE is detached... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.16.3.6 |
5,822 | 5.3.5.4 Secondary cell group release | The UE shall: 1> as a result of SCG release triggered by E-UTRA (i.e. (NG)EN-DC case) or NR (i.e. NR-DC case): 2> reset SCG MAC, if configured; 2> for each RLC bearer that is part of the SCG configuration: 3> perform RLC bearer release procedure as specified in 5.3.5.5.3; 2> for each BH RLC channel that is part of the ... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.5.4 |
5,823 | 4.3.5.8 IMS voice over PS Session Supported Indication | The serving PLMN shall send an indication toward the UE during the Attach procedure and Tracking Area Update procedures if an IMS voice over PS session is supported. The serving PLMN uses this indicator to indicate to the UE whether it can expect a successful IMS voice over PS session according to TS 22.173[ IP Multime... | 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") | 4.3.5.8 |
5,824 | 5.30.2.13 Access to SNPN services via Trusted non-3GPP access | Access to SNPN services via Trusted non-3GPP access network follows the specification in the previous (sub)clauses of clause 5.30.2 with the differences as specified in this clause. To access SNPN services via a Trusted non-3GPP access network, the UE follows the procedure for accessing a PLMN via a Trusted non-3GPP ac... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.30.2.13 |
5,825 | 5.17.2.2 Interworking Procedures with N26 interface 5.17.2.2.1 General | NOTE 1: Additional network slicing and Interworking with EPS with N26 aspects are specified in clause 5.15.7. Interworking procedures using the N26 interface, enables the exchange of MM and SM states between the source and target network. The N26 interface may be either intra-PLMN or inter-PLMN (e.g. to enable inter-PL... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.17.2.2 |
5,826 | 9.11.3.18B CIoT small data container | This information element is used to encapsulate the CIoT user data, SMS, or location services message with a size that is not more than 254 octets between the UE and the AMF when the UE is using control plane CIoT 5GS optimization. The CIoT small data container information element is coded as shown in figure 9.11.3.18B... | 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 | 9.11.3.18B |
5,827 | 8.3.1.1G Single-layer Spatial Multiplexing (CRS assistance information is configured) | The requirements are specified in Table 8.3.1.1G-2, with the addition of parameters in Table 8.3.1.1G-1. The purpose is to verify the performance of the antenna ports 7 or 8 without a simultaneous transmission on the other antenna port in the serving cell with CRS assistance information. In Table 8.3.1.1G-1, Cell 1 is ... | 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 | 8.3.1.1G |
5,828 | 5.2.8.2.7 Nsmf_PDUSession_ReleaseSMContext service operation | Service operation name: Nsmf_PDUSession_ReleaseSMContext. Description: It allows to release the AMF-SMF association for a certain PDU Session because the PDU Session has been released. Input, Required: SM Context ID. Input, Optional: UE location information, AN type, UE Time Zone, N2 SM Info (Secondary RAT Usage Data),... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.8.2.7 |
5,829 | 13.10 Default Conference Factory URI for MMTel | The Default Conference Factory URI for MMTel shall take the form of a SIP URI (see IETF RFC 3261 [26]) with a host portion set to the home network domain name as described in clause 13.2 prefixed with "conf-factory.". The user portion shall be set to "mmtel". Examples of the Default Conference Factory URI for MMTel can... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 13.10 |
5,830 | 5.6.1.6 Service request procedure for initiating an emergency PDU session not accepted by the network | If the service request for initiating an emergency PDU session cannot be accepted by the network, the UE shall perform the procedures as described in subclause 5.6.1.5. If the service request for initiating an emergency PDU session fails due to receiving the AUTHENTICATION REJECT message, the UE shall perform the proce... | 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 | 5.6.1.6 |
5,831 | A.5 Service and service operation description template | The description of a service or service operation in this specification shall be done according to the following template. NOTE: The heading level should follow that of the actual clause where the service is specified. X.x <Nnfname_ServiceName<_OperationName>> X.x.1 Description Service or service operation name: <Nnfna... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | A.5 |
5,832 | 4.15.13.4 Specific procedure for the 5GC assistance to member UE selection based on the UE's current location, historical location and direction and UE separation distance | Figure 4.15.13.4-1: 5GC assistance to Member UE selection based on the UE's current and historical location, direction and separation distance 1. AF requests 5GS assistance to support the Member UE selection by considering the UE's historical location, UE's current location, direction and UE separation distance. AF inc... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.15.13.4 |
5,833 | 20.4.1 Re-Auth-Request Command | The Re-Auth-Request (RAR) command, defined in IETF RFC 6733 (DIAMETER BASE) [111], is indicated by the Command-Code set to 258 and the message flags’ ‘R’ bit set. The relevant AVPs that are of use for the SGmb interface are detailed in the ABNF description below. Other valid AVPs for this command are not used for SGmb ... | 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 | 20.4.1 |
5,834 | 6.9.1 Modulation | The block of bits transmitted on one PHICH in one subframe shall be modulated as described in clause 7.1, resulting in a block of complex-valued modulation symbols, where . Table 6.9.1-1 specifies the modulation mappings applicable for the physical hybrid ARQ indicator channel. Table 6.9.1-1: PHICH modulation schemes. ... | 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 | 6.9.1 |
5,835 | 6.5.2 Requirements | Based on operator policy, application needs, or both, the 5G system shall support an efficient user plane path between UEs attached to the same network, modifying the path as needed when the UE moves during an active communication. The 5G network shall enable a Service Hosting Environment provided by operator. Based on... | 3GPP TS 22.261 | Service requirements for the 5G system | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 6.5.2 |
5,836 | 12.8 Sustained downlink data rate with active Sidelink | The purpose of this test is to verify the downlink data rate is not impacted when Sidelink resource are also configured. The test parameters are in Table 12.8.1-1. Cell 1 is the serving cell and UE 1 and UE 2 are transmitters of Prose Direct Communication. The test UE is expected to receive all PDSCH transmissions, and... | 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 | 12.8 |
5,837 | 4.2.1.2 Number of initial E-RABs successfully established | a) This measurement provides the number of initial E-RABs successfully established. The measurement is split into subcounters per E-RAB QoS level (QCI). b) CC c) On transmission by the eNodeB/RN of an INITIAL CONTEXT SETUP RESPONSE message, each E-RAB successfully established is added to the relevant measurement per QC... | 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 | 4.2.1.2 |
5,838 | 10.5.4.17 Keypad facility | The purpose of the keypad facility information element is to convey IA5 characters, e.g. entered by means of a terminal keypad (see note). The keypad facility information element is coded as shown in figure 10.5.103/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 ] . The ke... | 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 | 10.5.4.17 |
5,839 | 21.2 Home Agent – Access Point Name (HA-APN) 21.2.1 General | The HA-APN is composed of two parts as follows: - The HA-APN Network Identifier; this defines to which external network the HA is connected. - The HA-APN Operator Identifier; this defines in which PLMN the HA serving the HA-APN is located. The HA-APN Operator Identifier is placed after the HA-APN Network Identifier. Th... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 21.2 |
5,840 | 4.3.30 Unlicensed spectrum aggregation (LAA/LWA/LWIP/NR-U) | Unlicensed spectrum aggregation in EPS can use either LTE Licensed-Assisted Access (LAA) that is using the Carrier Aggregation (CA) RAN configuration defined in TS 36.300[ Evolved Universal Terrestrial Radio Access (E-UTRA) and Evolved Universal Terrestrial Radio Access Network (E-UTRAN); Overall description; Stage 2 ]... | 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") | 4.3.30 |
5,841 | 4.7.6.3 P-TMSI reallocation completion by the network | Upon receipt of the P-TMSI REALLOCATION COMPLETE message, the network shall stop the timer T3350 and shall consider both the old and the new P-TMSI and the corresponding P-TMSI signatures as valid until the old P-TMSI can be considered as invalid by the network (see subclause 4.7.1.5). In A/Gb mode, the GMM layer shall... | 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 | 4.7.6.3 |
5,842 | 5.2.1.12 Cellular Text telephone Modem (CTM) selection | The mobile station can send a CTM support indication in the Bearer Capability IE in call establishment messages to inform the network of the use of CTM text in the call. When the mobile station indicates speech and support of CTM text telephony, the network shall select a speech codec and additionally CTM text telephon... | 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 | 5.2.1.12 |
5,843 | – SL-MeasObjectList | The IE SL-MeasObjectList concerns a list of SL measurement objects to add or modify for a destination. SL-MeasObjectList information element -- ASN1START -- TAG-SL-MEASOBJECTLIST-START SL-MeasObjectList-r16 ::= SEQUENCE (SIZE (1..maxNrofSL-ObjectId-r16)) OF SL-MeasObjectInfo-r16 SL-MeasObjectInfo-r16 ::= SEQUENCE { sl-... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,844 | 6.16.2.2 Connection Suspend | When the ng-eNB initiates the Connection Suspend procedure, it sends N2 Suspend Request message to the AMF. Upon reception of the N2 Suspend Request message, the AMF shall check its local policy. If the local policy indicates that a new NH derivation is needed, the AMF shall increase its locally kept NCC value by one a... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 6.16.2.2 |
5,845 | – NCR-AperiodicFwdConfig | The IE NCR-AperiodicFwdConfig is used to configure a list of aperiodic forwarding time resources for NCR-Fwd access link. NCR-AperiodicFwdConfig information element -- ASN1START -- TAG-NCR-APERIODICFWDCONFIG-START NCR-AperiodicFwdConfig-r18 ::= SEQUENCE { aperiodicFwdTimeRsrcToAddModList-r18 SEQUENCE (SIZE (1..maxNrofA... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,846 | 4.3.5.6 Idle mode signalling reduction function | The Idle mode Signalling Reduction (ISR) function provides a mechanism to limit signalling during inter-RAT cell-reselection in idle mode (ECM-IDLE, PMM-IDLE, GPRS STANDBY states). NOTE 1: The Idle mode Signalling Reduction function is mandatory for E-UTRAN UEs that support GERAN and/or UTRAN and optional for core netw... | 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") | 4.3.5.6 |
5,847 | 6.3 Principles for Network Function and Network Function Service discovery and selection 6.3.1 General | The NF discovery and NF service discovery enable Core Network entities (NFs or Service Communication Proxy (SCP)) to discover a set of NF instance(s) and NF service instance(s) for a specific NF service or an NF type. NF service discovery is enabled via the NF discovery procedure, as specified in clauses 4.17.4, 4.17.5... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.3 |
5,848 | 10.2 IP Fragmentation | It is specified here how the fragmentation mechanism shall work with GTP-C. Fragmentation should be avoided if possible. Examples of fragmentation drawbacks are: - Fragmentation is inefficient, since the complete IP header is duplicated in each fragment. - If one fragment is lost, the complete packet has to be discarde... | 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 | 10.2 |
5,849 | 5.3.2 Scenario | Police respond to a nuisance complaint about a UAV. Before entering the area where the report was made, they query the UTM to see if any have a live UAV in the area. For example, the police might supply a civic address, geographic polygon, a list of identities of known persistent offenders, etc. The UTM would return th... | 3GPP TS 22.825 | Study on Remote Identification of Unmanned Aerial Systems (UAS) | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 5.3.2 |
5,850 | 6.2.4A Enhanced Resource-Element Groups (EREGs) | EREGs are used for defining the mapping of enhanced control channels to resource elements. There are 16 EREGs, numbered from 0 to 15, per physical resource block pair. Number all resource elements, except resource elements carrying DM-RS for antenna ports for normal cyclic prefix or for extended cyclic prefix, in a phy... | 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 | 6.2.4A |
5,851 | 1.5 Use of logical channels in A/Gb mode | The logical control channels are defined in 3GPP TS 45.002[ None ] [32]. In the following those control channels are considered which carry signalling information or specific types of user packet information: i) Broadcast Control CHannel (BCCH): downlink only, used to broadcast Cell specific information; ii) Synchroni... | 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 | 1.5 |
5,852 | – MeasIdleConfig | The IE MeasIdleConfig is used to convey information to UE about measurements requested to be done while in RRC_IDLE or RRC_INACTIVE. MeasIdleConfig information element -- ASN1START -- TAG-MEASIDLECONFIG-START MeasIdleConfigSIB-r16 ::= SEQUENCE { measIdleCarrierListNR-r16 SEQUENCE (SIZE (1..maxFreqIdle-r16)) OF MeasIdle... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,853 | 16.12.5.5 System Information | The in-coverage L2 U2N Remote UE is allowed to acquire any necessary SIB(s) over Uu interface irrespective of its PC5 connection to L2 U2N Relay UE. The L2 U2N Remote UE can also receive the system information from the L2 U2N Relay UE after PC5 connection establishment with L2 U2N Relay UE. The L2 U2N Remote UE in RRC_... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 16.12.5.5 |
5,854 | 5.4.3.3 Reception of the MobilityFromNRCommand by the UE | The UE shall: 1> stop timer T310, if running; 1> stop timer T312, if running; 1> if T316 is running: 2> stop timer T316; 2> if the UE supports RLF-Report for fast MCG recovery procedure: 3> set the elapsedTimeT316 in the VarRLF-Report to the value of the elapsed time of the timer T316; 3> set the pSCellId to the global... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.4.3.3 |
5,855 | 5.3.5.13b SCG deactivation | Upon initiating the procedure, the UE shall: 1> consider the SCG to be deactivated; 1> indicate to lower layers that the SCG is deactivated; 1> if bfd-and-RLM is configured to true: 2> perform radio link monitoring on the SCG; 2> indicate to lower layers to perform beam failure detection on the PSCell; 1> else: 2> stop... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.5.13b |
5,856 | 5.3.9.2 Insert Subscriber Data procedure | The Insert Subscriber Data procedure is illustrated in Figure 5.3.9.2-1. Figure 5.3.9.2-1: Insert Subscriber Data procedure 1. The HSS sends an Insert Subscriber Data (IMSI, Subscription Data) message to the MME. 2. The MME updates the stored Subscription Data and acknowledges the Insert Subscriber Data message by retu... | 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") | 5.3.9.2 |
5,857 | O.3 Authentication procedure | Figure O.3-1 shows the details of the authentication procedure as part of the initial registration procedure specified in clause 4.10a of TS 23.316[ Wireless and wireline convergence access support for the 5G System (5GS) ] [79] following the principles listed in clause O.2. It uses EAP-TLS as an example, but other E... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | O.3 |
5,858 | 5.4.4.5 Abnormal cases in the UE | The following abnormal cases can be identified: a) Requested identity is not available If the UE cannot encode the requested identity in the IDENTITY RESPONSE message, e.g. because no valid USIM is available, then it shall encode the identity type as "no identity". b) Transmission failure of IDENTITY RESPONSE message i... | 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 | 5.4.4.5 |
5,859 | 10.2.2 Composition of the CTSMSI | bit No 22 1 +-------------------------------------------+ | | | +----------------------+ Type|<-----------Significant Part---------->| CTSMSI 22 bits <-------------------------------------------> Figure 13: Structure of CTSMSI The CTSMSI is composed of the following elements: - CTSMSI Type. Its length is 2 bits; - Sign... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 10.2.2 |
5,860 | 6.11.1 Services and Functions | The main service and functions of the BAP sublayer include: - Transfer of data; - Routing of packets to next hop; - Determination of BAP destination and BAP path for packets from upper layers; - Determination of egress BH RLC channels for packets routed to next hop; - Differentiating traffic to be delivered to upper la... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 6.11.1 |
5,861 | 18 Small Data Transmission 18.0 General | Small Data Transmission (SDT) is a procedure allowing data and/or signalling transmission while remaining in RRC_INACTIVE state (i.e. without transitioning to RRC_CONNECTED state). SDT is enabled on a radio bearer basis and can be initiated either by the UE in case of MO-SDT (Mobile Originated SDT) or by the network in... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 18 |
5,862 | 5.3.1.2.6 IPv6 Prefix Delegation via DHCPv6 | Optionally a single network prefix shorter than the default /64 prefix may be assigned to a PDN connection. In this case, the /64 default prefix used for IPv6 stateless autoconfiguration will be allocated from this network prefix; the remaining address space from the network prefix can be delegated to the PDN connectio... | 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") | 5.3.1.2.6 |
5,863 | – PUCCH-ConfigCommon | The IE PUCCH-ConfigCommon is used to configure the cell specific PUCCH parameters. PUCCH-ConfigCommon information element -- ASN1START -- TAG-PUCCH-CONFIGCOMMON-START PUCCH-ConfigCommon ::= SEQUENCE { pucch-ResourceCommon INTEGER (0..15) OPTIONAL, -- Cond InitialBWP-Only pucch-GroupHopping ENUMERATED { neither, enable,... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,864 | 4.16.7.2 Procedures for future background data transfer | Figure 4.16.7.2-1: Negotiation for future background data transfer 1. The AF invokes the Nnef_BDTPNegotiation_Create (ASP Identifier, Number of UEs, Volume per UE, Desired time window and optionally External Group Identifier, Network Area Information, Request for notification, MAC address or IP 3-tuple of Application s... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.16.7.2 |
5,865 | 7.9.1 Delete PDN Connection Set Request | This message may be sent on the S2a, S2b, S5, S8, or S11 interfaces as specified in 3GPP TS 23.007[ Restoration procedures ] [17]. Table 7.9.1-1: Information Elements in a Delete PDN Connection Set Request TEID of 0 shall be used for the Delete PDN Connection Set Request. Only one type of FQ-CSID shall be included in ... | 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 | 7.9.1 |
5,866 | 6.2.4A UE maximum output power with additional requirements for CA | Additional ACLR, spectrum emission and spurious emission requirements for carrier aggregation can be signalled by the network to indicate that the UE shall also meet additional requirements in a specific deployment scenario. To meet these additional requirements, Additional Maximum Power Reduction (A-MPR) is allowed fo... | 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 | 6.2.4A |
5,867 | 8.21.8 Extended Macro eNodeB ID field | The coding of Extended Macro eNodeB ID is depicted in Figure 8.21.8-1. Only zero or one Extended Macro eNodeB ID or Macro eNodeB ID field shall be present in ULI IE. Figure 8.21.8-1: Extended Macro eNodeB ID field The Extended Macro eNodeB ID consists of 21 bits. The coding of the Extended Macro eNodeB ID is the respon... | 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 | 8.21.8 |
5,868 | 4.4.2.1.1 Establishment of 5G NAS security context | The security parameters for authentication, integrity protection and ciphering are tied together in a 5G NAS security context and identified by a key set identifier (ngKSI). The relationship between the security parameters is defined in 3GPP TS 33.501[ Security architecture and procedures for 5G System ] [24]. Before ... | 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 | 4.4.2.1.1 |
5,869 | 6.4.1.2 UE-requested PDU session establishment procedure initiation | In order to initiate the UE-requested PDU session establishment procedure, the UE shall create a PDU SESSION ESTABLISHMENT REQUEST message. NOTE 0: When IMS voice is available over either 3GPP access or non-3GPP access, the "voice centric" UE in 5GMM-REGISTERED state will receive a request from upper layers to establis... | 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 | 6.4.1.2 |
5,870 | 9.4.10a Authentication and Ciphering Failure | This message is sent by the mobile station to the network to indicate that authentication of the network has failed. See table 9.4.10a/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 ] . Message type: AUTHENTICATION AND CIPHERING FAILURE Significance: dual Direction: mobile... | 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 | 9.4.10a |
5,871 | 6.6.1 Description | Video-based services (e.g. live streaming, VR) and personal data storage applications have been instrumental for the massive growth in mobile broadband traffic. Subject to service agreement between the operator and the content provider, the information of content and content itself can be aware by operator. In-network ... | 3GPP TS 22.261 | Service requirements for the 5G system | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 6.6.1 |
5,872 | 9.8.3.2 TDD | The following requirements apply to UE supporting supporting ce-ModeA-r13 and ce-PDSCH-64QAM-r15. For the parameters specified in Table 9.8.3.2-1, and using the downlink physical channels specified in tables C.3.2-1 and C.3.2-2, the reported CQI value according to RC.31 TDD in Table A.4-1 shall be in the range of ±1 of... | 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 | 9.8.3.2 |
5,873 | – BWP-DownlinkCommon | The IE BWP-DownlinkCommon is used to configure the common parameters of a downlink BWP. They are "cell specific" and the network ensures the necessary alignment with corresponding parameters of other UEs. The common parameters of the initial bandwidth part of the PCell are also provided via system information. For all ... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,874 | 9.4.4.1 T3302 value | This IE may be included to indicate a value for the T3302 timer. In Iu mode, if the MS is not attaching for emergency services, the network shall not include this IE if this message is to be sent non-integrity protected. If the MS is attaching for emergency bearer services, the network may include this IE if this messa... | 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 | 9.4.4.1 |
5,875 | 5.5.2.5 Inter RAT handover Cancel 5.5.2.5.1 General | Instead of completing the handover procedure, the source RAN node (eNodeB, RNC or BSS) may at any time during the handover procedure, up to the time when a handover command message is sent to the UE cancel the handover. The reason for cancelling may be e.g. due to a timer expiration or due to other events within the so... | 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") | 5.5.2.5 |
5,876 | 4.2.2.2.4 Registration with Onboarding SNPN | This clause specifies how a UE can register to an ON-SNPN for provisioning the UE with SO-SNPN credentials and other information to enable SNPN access as defined in clause 5.30.2.10 of TS 23.501[ System architecture for the 5G System (5GS) ] [2]. The Registration procedure for Onboarding SNPN over 3GPP access shall be... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.2.2.2.4 |
5,877 | 5.5.2.4.4 GERAN A/Gb mode to E-UTRAN Inter RAT handover reject | The Target eNodeB may reject the use of the Handover procedure if none of the requested EPS bearers in the Handover Request message could be established. In this case no UE context is established in the target MME/eNodeB and no resources are allocated. The UE remains in the Source BSS/SGSN. Figure 5.5.2.4.4-1: GERAN A/... | 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") | 5.5.2.4.4 |
5,878 | 5.31.18 User Plane CIoT 5GS Optimisation | User Plane CIoT 5GS Optimisation enables transfer of user plane data from CM-IDLE without the need for using the Service Request procedure to establish Access Stratum (AS) context in NG-RAN and UE. If the following preconditions are met: - UE and AMF negotiated support User Plane CIoT 5GS Optimisation (see clause 5.31.... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.31.18 |
5,879 | 5.4.2 Exception conditions | Under normal conditions, the call control entity of the mobile station or of the network initiates call clearing by sending a DISCONNECT message to its peer entity; then both entities follow the procedures defined in subclauses 5.4.3 and 5.4.4 respectively. As an exception to the above rule, the call control entity of ... | 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 | 5.4.2 |
5,880 | 6.3.2 Distribution of authentication data from HE to SN | The purpose of this procedure is to provide the VLR/SGSN with an array of fresh authentication vectors from the user's HE to perform a number of user authentications. Figure 6: Distribution of authentication data from HE to VLR/SGSN The VLR/SGSN invokes the procedures by requesting authentication vectors to the HE/AuC.... | 3GPP TS 33.102 | 3G security; Security architecture | SA WG3 | 3GPP Series : 33 , Security aspects | 6.3.2 |
5,881 | 9.7.2.4 TDD (Category 1bis UE) | The following requirements apply to UE DL Category 1bis. For the parameters specified in Table 9.7.2.4-1, and using the downlink physical channels specified in Annex C.3.2, the minimum requirements are specified in Table 9.7.2.4-2 and by the following a) a sub-band differential CQI offset level of 0 shall be reported a... | 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 | 9.7.2.4 |
5,882 | 4.7.2.7 Handling of timer T3302 | The value of timer T3302 can be sent by the network to the MS in the ATTACH ACCEPT message, ROUTING AREA UPDATE ACCEPT message, ATTACH REJECT message, and ROUTING AREA UPDATE REJECT message. The MS shall apply this value, if the value is different from "deactivated" in the routing area registered by the MS, until a new... | 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 | 4.7.2.7 |
5,883 | 4.9.1.2 Xn based inter NG-RAN handover 4.9.1.2.1 General | Clause 4.9.1.2 includes details regarding the Xn based inter NG-RAN handover with and without UPF re-allocation. Xn handovers are only supported for intra-AMF mobility. New AMF can be selected by the target NG-RAN node as specified in clause 5.21.2 of TS 23.501[ System architecture for the 5G System (5GS) ] [2]. The h... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.9.1.2 |
5,884 | 10.5.3.3 CM service type | The purpose of the CM Service Type information element is to specify which service is requested from the network. The CM Service Type information element is coded as shown in figure 10.5.77/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 ] and table 10.5.91/3GPP TS 24.008[... | 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 | 10.5.3.3 |
5,885 | 19.9 IMSI-Group Identifier | IMSI-Group Identifier is a network internal globally unique ID which identifies a set of IMSIs (e.g. MTC devices) from a given network that are grouped together for one specific group related services. It is used e.g. for group specifc NAS level congestion control (see 3GPP TS 23.401[ General Packet Radio Service (GPRS... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 19.9 |
5,886 | 5.4.1.6 Abnormal cases on the network side | The following abnormal cases can be identified: a) Lower layer failure If a lower layer failure is detected before the GUTI REALLOCATION COMPLETE message is received, the old and the new GUTI shall be considered as valid until the old GUTI can be considered as invalid by the network. If a new TAI list was provided in t... | 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 | 5.4.1.6 |
5,887 | 5.6.10.2 Support of Ethernet PDU Session type | For a PDU Session set up with the Ethernet PDU Session type, the SMF and the UPF acting as PDU Session Anchor (PSA) can support specific behaviours related with the fact the PDU Session carries Ethernet frames. Depending on operator configuration related with the DNN, different configurations for how Ethernet traffic i... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.6.10.2 |
5,888 | 4.3.2b Authentication Procedure used for a GSM authentication challenge | The purpose of the authentication procedure is twofold (see 3GPP TS 43.020[ Security related network functions ] [13]): First to permit the network to check whether the identity provided by the mobile station is acceptable or not; Second to provide parameters enabling the mobile station to calculate a new GSM cipherin... | 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 | 4.3.2b |
5,889 | 10.1.3.6 Mapping to physical resources | Each NPUSCH codeword can be mapped to one or more than one resource units, , as given by clause 16.5.1.2 of TS 36.213[ Evolved Universal Terrestrial Radio Access (E-UTRA); Physical layer procedures ] [4], each of which shall be transmitted times. The block of complex-valued symbols shall be multiplied with the amplitu... | 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 | 10.1.3.6 |
5,890 | 5.6.4 Single PDU Session with multiple PDU Session Anchors 5.6.4.1 General | In order to support selective traffic routing to the DN or to support SSC mode 3 as defined in clause 5.6.9.2.3, the SMF may control the data path of a PDU Session so that the PDU Session may simultaneously correspond to multiple N6 interfaces. The UPF that terminates each of these interfaces is said to support PDU Ses... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.6.4 |
5,891 | 9.11.2.9 S1 mode to N1 mode NAS transparent container | The purpose of the S1 mode to N1 mode NAS transparent container information element is to provide the UE with parameters that enable the UE to create a mapped 5G NAS security context and take this context into use after inter-system change to N1 mode in 5GMM-CONNECTED mode. The S1 mode to N1 mode NAS transparent contai... | 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 | 9.11.2.9 |
5,892 | 5.3.5 RRC reconfiguration 5.3.5.1 General | Figure 5.3.5.1-1: RRC reconfiguration, successful Figure 5.3.5.1-2: RRC reconfiguration, failure The purpose of this procedure is to modify an RRC connection, e.g. to establish/modify/release RBs/BH RLC channels/Uu Relay RLC channels/PC5 Relay RLC channels, to perform reconfiguration with sync, to setup/modify/release ... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.5 |
5,893 | 6.5.2.1 Error Vector Magnitude | The Error Vector Magnitude is a measure of the difference between the reference waveform and the measured waveform. This difference is called the error vector. Before calculating the EVM the measured waveform is corrected by the sample timing offset and RF frequency offset. Then the carrier leakage shall be removed fro... | 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 | 6.5.2.1 |
5,894 | 9.3.3.1.2 TDD | For the parameters specified in Table 9.3.3.1.2-1, and using the downlink physical channels specified in Annex C.3.2, the minimum requirements are specified in Table 9.3.3.1.2-2 and by the following a) a sub-band differential CQI offset level of +2 shall be reported at least % for at least one of the sub-bands of ful... | 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 | 9.3.3.1.2 |
5,895 | 5.2.5.4 Npcf_SMPolicyControl service 5.2.5.4.1 General | Service description: NF Service Consumer, e.g. SMF, can create and manage a SM Policy Association in the PCF through which the NF Service Consumer receives policy information for a PDU Session. As part of this service, the PCF may provide the NF Service Consumer, e.g. SMF, with policy information for the PDU Session th... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.5.4 |
5,896 | 4.15.6.7.2 Service specific parameter provisioning by AF to HPLMN | Figure 4.15.6.7.2-1 shows procedure for service specific parameter provisioning. The AF uses Nnef_ServiceParameter service to provide the service specific parameters to the HPLMN and the UE. In the roaming case, PCF is replaced by H-PCF, the AMF interacts with the V-PCF which interacts with H-PCF. Figure 4.15.6.7.2-1: ... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.15.6.7.2 |
5,897 | 4.2.7.4 Additional User Location Information with Mobile Base Station Relay (MBSR) | As described in clause 5.35A of TS 23.501[ System architecture for the 5G System (5GS) ] [2], when a UE is being served by an MBSR, for any N2 messages sent by NG-RAN to AMF, if the User Location Information is included, the N2 parameters shall also include the additional ULI of this MBSR. When the AMF provides user l... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.2.7.4 |
5,898 | 5.6.2.4 Paging for SMS | The network shall initiate the paging procedure when it receives an incoming mobile terminating SMS to the UE if the UE is: 1) IMSI attached for non-EPS services or for "SMS only"; or 2) attached for EPS services with CIoT EPS optimization and the UE has requested "SMS only" and the UE is in NB-S1 mode, - no NAS signal... | 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 | 5.6.2.4 |
5,899 | 5.3 Physical uplink shared channel | The baseband signal representing the physical uplink shared channel is defined in terms of the following steps: - scrambling - modulation of scrambled bits to generate complex-valued symbols - mapping of the complex-valued modulation symbols onto one or several transmission layers - transform precoding to generate comp... | 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 | 5.3 |
5,900 | 5.6.9.2.1 SSC Mode 1 | For a PDU Session of SSC mode 1, the UPF acting as PDU Session Anchor at the establishment of the PDU Session is maintained regardless of the access technology (e.g. Access Type and cells) a UE is successively using to access the network. In the case of a PDU Session of IPv4 or IPv6 or IPv4v6 type, IP continuity is sup... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.6.9.2.1 |
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