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5,401 | 10 Identification of the Cordless Telephony System entities 10.1 General description of CTS-MS and CTS-FP Identities | Every CTS-FP broadcasts a local identity - the Fixed Part Beacon Identity (FPBI) - which contains an Access Rights Identity. Every CTS-MS has both an Access Rights Key and a CTS Mobile Subscriber Identity (CTSMSI). These operate as a pair. A CTS-MS is allowed to access any CTS-FP which broadcasts an FPBI which can be i... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 10 |
5,402 | – EUTRA-Q-OffsetRange | The IE EUTRA-Q-OffsetRange is used to indicate a cell, or frequency specific offset to be applied when evaluating triggering conditions for measurement reporting. The value in dB. Value dB-24 corresponds to -24 dB, value dB-22 corresponds to -22 dB and so on. EUTRA-Q-OffsetRange information element -- ASN1START -- TAG-... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,403 | – UE-MRDC-Capability | The IE UE-MRDC-Capability is used to convey the UE Radio Access Capability Parameters for MR-DC, see TS 38.306[ NR; User Equipment (UE) radio access capabilities ] [26]. UE-MRDC-Capability information element -- ASN1START -- TAG-UE-MRDC-CAPABILITY-START UE-MRDC-Capability ::= SEQUENCE { measAndMobParametersMRDC MeasAn... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,404 | 8.7 Fraud protection | Subject to regional or national regulatory requirements, the 5G system shall support a secure mechanism for allowing an authorized entity to disable from normal operation of a UE reported as stolen. Subject to regional or national regulatory requirements, the 5G system shall support a secure mechanism for allowing an a... | 3GPP TS 22.261 | Service requirements for the 5G system | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 8.7 |
5,405 | 5.7.6 Packet Filter Set 5.7.6.1 General | The Packet Filter Set is used in the QoS rule and the PDR to identify one or more packet (IP or Ethernet) flow(s). NOTE 1: A QoS Flow is characterised by PDR(s) and QoS rule(s) as described in clause 5.7.1.1. NOTE 2: DL Packet Filter in a Packet Filter Set of a QoS rule may be needed by the UE e.g. for the purpose of I... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.7.6 |
5,406 | 6.3.1.2 Location information | The location information describes the network location of the NF instance. It can consist of one or more levels. Each level describes one location aspect, such as geographic location, data centre, cluster, etc. An NF instance has only one location. The location information may be used to select the NF service instance... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.3.1.2 |
5,407 | 6.4.4.1 NAS input parameters to confidentiality algorithm | The input parameters for the NAS 128-bit ciphering algorithms shall be the same as the ones used for NAS integrity protection as described in clause 6.4.3, with the exception that a different key, KNASenc, is used as KEY, and there is an additional input parameter, namely the length of the key stream to be generated by... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 6.4.4.1 |
5,408 | 6.5.3.5 Abnormal cases in the UE | The following abnormal cases can be identified: a) Expiry of timer T3480: On the first expiry of the timer T3480, the UE shall resend the BEARER RESOURCE ALLOCATION REQUEST and shall reset and restart timer T3480. This retransmission is repeated four times, i.e. on the fifth expiry of timer T3480, the UE shall abort th... | 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 | 6.5.3.5 |
5,409 | 4.2.2.2 Registration procedures 4.2.2.2.1 General | A UE needs to register with the network to get authorized to receive services, to enable mobility tracking and to enable reachability. The UE initiates the Registration procedure using one of the following Registration types: - Initial Registration to the 5GS; - Mobility Registration Update upon changing to a new Track... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.2.2.2 |
5,410 | 5.2.1.2 Receipt of a setup message | In the "null" or "recall present" states, upon receipt of a setup message (a SETUP message or an EMERGENCY SETUP message, see subclause 5.2.1.1), the call control entity of the network enters the "call initiated" state. It shall then analyse the call information contained in the setup message. In Iu mode, network 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 | 5.2.1.2 |
5,411 | 4.2.1.1 Selection of the Service State after Power On. | For an eCall only mobile station (as determined by information configured in the USIM), Timers T3242 and T3243 are considered to have expired at power-on. When mobility management is activated after power-on, the service state is 19.7 PLMN SEARCH. The detailed processing in this state is described in detail in 3GPP TS ... | 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 | 4.2.1.1 |
5,412 | 10.5.5.5 Detach type | The purpose of the detach type information element is to indicate which type of detach is requested by the MS. In the network to MS direction the detach type information element is used to indicate the reason why a detach request is sent. The detach type is a type 1 information element. The detach type information elem... | 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 | 10.5.5.5 |
5,413 | 5.5.1.2 Registration procedure for initial registration 5.5.1.2.1 General | This procedure can be used by a UE for initial registration for 5GS services. When the UE initiates the registration procedure for initial registration, the UE shall indicate "initial registration" in the 5GS registration type IE. When the UE initiates the registration procedure for emergency services, the UE shall ind... | 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 |
5,414 | – FreqPriorityListSlicing | The IE FreqPriorityListSlicing indicates cell reselection priorities for slicing in SIB16. FreqPriorityListSlicing information element -- ASN1START -- TAG-FREQPRIORITYLISTSLICING-START FreqPriorityListSlicing-r17 ::= SEQUENCE (SIZE (1..maxFreqPlus1)) OF FreqPrioritySlicing-r17 FreqPrioritySlicing-r17 ::= SEQUENCE { dl-... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,415 | 5.32.2 Multi Access PDU Sessions | A Multi-Access PDU (MA PDU) Session is managed by using the session management functionality specified in clause 5.6, with the following additions and modifications: - When the UE wants to request a new MA PDU Session: - If the UE is registered to the same PLMN over 3GPP and non-3GPP accesses, then the UE shall send a ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.32.2 |
5,416 | 5.5.4.21 Event H1 (The Aerial UE altitude becomes higher than a threshold) | The UE shall: 1> consider the entering condition for this event to be satisfied when condition H1-1, as specified below, is fulfilled; 1> consider the leaving condition for this event to be satisfied when condition H1-2, as specified below, is fulfilled; Inequality H1-1 (Entering condition) Ms – Hys > Thresh Inequality... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.5.4.21 |
5,417 | 6.4.2.6 Abnormal cases on the network side | The following abnormal cases can be identified: a) If the PDU session is an emergency PDU session and the 5GSM cause IE is not included in the PDU SESSION MODIFICATION REQUEST message which is not triggered according to subclause 6.4.2.1, item e), or is set to a 5GSM cause other than the 5GSM causes #41, #42, #44, #45,... | 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 | 6.4.2.6 |
5,418 | 12.7.2 NID of assignment mode 0 | The NID value of a NID of the assignment mode 0 consists of a NID PEN and a NID code, as shown in figure 12.7.2-1. The NID PEN is a private enterprise number issued to service provider of the SNPN by Internet Assigned Numbers Authority (IANA) in its capacity as the private enterprise number administrator, as maintained... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 12.7.2 |
5,419 | 10.5.5.4 TMSI status | The purpose of the TMSI status information element is to indicate whether a valid TMSI is available in the MS or not. The TMSI status is a type 1 information element. The TMSI status information element is coded as shown in figure 10.5.120/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core network proto... | 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 | 10.5.5.4 |
5,420 | 6.3.6.3 Combined N3IWF/ePDG Selection | When the UE wants to select a non-3GPP access node (either an N3IWF or an ePDG), the UE shall perform the following procedure: 1) The UE shall attempt to determine the country it is located in. This is determined by implementation-specific methods not defined in this specification. If the UE cannot determine the countr... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.3.6.3 |
5,421 | 6.1.3.6a Extended Power Headroom Report MAC Control Elements | For extendedPHR, the Extended Power Headroom Report (PHR) MAC control element is identified by a MAC PDU subheader with LCID as specified in table 6.2.1-2. It has a variable size and is defined in Figure 6.1.3.6a-2. When Type 2 PH is reported, the octet containing the Type 2 PH field is included first after the octet i... | 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 | 6.1.3.6a |
5,422 | N.5 Support for leaving network that provides access to Localized Services | When Localized Services in a network are completed, all UEs that are registered with the network are expected to be transferred to other network or to other network resources (e.g. other cells) within the same network, potentially within a relatively short timeframe. The other network can be HPLMN, VPLMN or another SNP... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | N.5 |
5,423 | 5.18 HPLMN Notification with specific indication due to MME initiated Bearer removal | When initiating a Delete Session Request procedure, the MME shall add an appropriate cause code facilitating the operator of the P-GW to take appropriate action (e.g. Alarm, O&M action by operator's management network) if needed. NOTE: This is for the HPLMN operator to be able to differentiate Delete Session Request pr... | 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") | 5.18 |
5,424 | 4.3.6.4 Transferring an AF request targeting an individual UE address to the relevant PCF | Figure 4.3.6.4-1: Handling an AF request targeting an individual UE address to the relevant PCF Depending on the AF deployment (see clause 6.2.10 of TS 23.501[ System architecture for the 5G System (5GS) ] [2]), the AF may send the AF request to PCF directly, in which case step 1 is skipped, or via the NEF. 1. [Condit... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.3.6.4 |
5,425 | 8.2.2.3 Inter-gNB-DU Conditional PSCell Change using MCG SRB without MN negotiation | This procedure is used for the case where the UE moves from one gNB-DU to another gNB-DU within the same gNB-CU when only MCG SRB is available and the MN’s configuration is not changed during EN-DC operation for conditional PSCell change. Figure 8.2.2.3-1 shows the inter-gNB-DU conditional PSCell change procedure using... | 3GPP TS 38.401 | NG-RAN; Architecture description | RAN3 | 3GPP Series : 38 , Radio technology beyond LTE | 8.2.2.3 |
5,426 | 4.12a.2.2 Registration procedure for trusted non-3GPP access | The UE connects to a trusted non-3GPP Access Network (TNAN) and it also registers to 5GC over via this TNAN, by using the EAP-based procedure shown in the figure 4.12a.2.2. This procedure is very similar with the 5GC registration procedure over untrusted non-3GPP access in clause 4.12.2.2. The link between the UE and t... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.12a.2.2 |
5,427 | 11.8.2 Gi/SGi PtP tunnelling based on UDP/IP | Gi/SGi PtP tunnelling based on UDP/IP may be used to deliver Non-IP data to an AS via Gi/SGi. The PtP tunnel is set up by configuration of tunnel parameters in both end of the tunnel. The following parameters are pre-configured in the GGSN/P-GW per APN; - the UDP destination port number to use when sending Non-IP data;... | 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 | 11.8.2 |
5,428 | – SL-RBSetConfig | The IE SL-RBSetConfig specifies the configuration information for RB set for NR Sidelink Communication. SL-RBSetConfig information element -- ASN1START -- TAG-SL-RBSETCONFIG-START SL-RBSetConfig-r18 ::= SEQUENCE { sl-RBSetIndex-r18 INTEGER (0..4), sl-NumOfSSSBRepetition-r18 INTEGER (2..9) OPTIONAL, -- Need M sl-GapBetw... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,429 | 5.7.1 Description | From the MNO’s point of view, an MNO may want to differentiate the UE which is specific for UAS use (UAS-capable) with the regular ground based UEs, as well as to identify the different class of UAV (e.g. small/big UAVs) for the following reasons: (1) To provide better service to the UAVs. As we know, airborne UAV may ... | 3GPP TS 22.825 | Study on Remote Identification of Unmanned Aerial Systems (UAS) | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 5.7.1 |
5,430 | 5.3.14.5 Access barring check | The UE shall: 1> if one or more Access Identities equal to 1, 2, 11, 12, 13, 14, or 15 are indicated according to TS 24.501[ Non-Access-Stratum (NAS) protocol for 5G System (5GS); Stage 3 ] [23], and 1> if for at least one of these Access Identities the corresponding bit in the uac-BarringForAccessIdentity contained i... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.14.5 |
5,431 | 9.3.2.2 Bearer capability 1 and bearer capability 2 | The bearer capability 1 information element shall be included if and only if at least one of the following six cases holds: - the mobile station wishes another bearer capability than that given by the bearer capability 1 information element of the incoming SETUP message; - the bearer capability 1 information element is... | 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 | 9.3.2.2 |
5,432 | 6.16.2 Requirements | In constrained circumstances (e.g. reduced power supply), the 5G system shall be able to support a minimal user experience (e.g. user experienced data rate of [100] kbit/s, E2E latency of 50 ms, lower availability of the network of 95%). The 5G system shall support centralized automation and management of the network i... | 3GPP TS 22.261 | Service requirements for the 5G system | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 6.16.2 |
5,433 | 5.3.10.2 Recovery of physical layer problems | Upon receiving N311 consecutive "in-sync" indications for the SpCell from lower layers while T310 is running, the UE shall: 1> stop timer T310 for the corresponding SpCell. 1> stop timer T312 for the corresponding SpCell, if running. NOTE 1: In this case, the UE maintains the RRC connection without explicit signalling,... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.10.2 |
5,434 | – MobilityFromNRCommand | The MobilityFromNRCommand message is used to command handover from NR to E-UTRA/EPC, E-UTRA/5GC or UTRA-FDD. Signalling radio bearer: SRB1 RLC-SAP: AM Logical channel: DCCH Direction: Network to UE MobilityFromNRCommand message -- ASN1START -- TAG-MOBILITYFROMNRCOMMAND-START MobilityFromNRCommand ::= SEQUENCE { rrc-Tra... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,435 | 4.2.4.1 In-session activity time for UE | a) This measurement provides the aggregated active session time for UEs in a cell. b) CC c) Number of session seconds aggregated for UEs in a cell. For E-RABs with bursty flow, a UE is said to be “in session” if any E-RAB data on a Data Radio Bearer (UL or DL) has been transferred during the last 100 ms. For E-RABs wit... | 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 | 4.2.4.1 |
5,436 | 5.21.2.2.1 AMF planned removal procedure with UDSF deployed | An AMF can be taken graciously out of service as follows: - If an UDSF is deployed in the network, then the AMF stores the context for registered UE(s) in the UDSF. The UE context includes the AMF UE NGAP ID that is unique per AMF set. In order for the AMF planned removal procedure to work graciously, 5G-S-TMSI shall b... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.21.2.2.1 |
5,437 | 6.3.1.1 NF Discovery and Selection aspects relevant with indirect communication | For indirect communication shown in Annex E, the SCP performs the following functionalities regarding Network Function and Network Function Service discovery and selection: - If the request includes a Routing Binding Indication, the SCP shall route the service request to the requested target as specified in Table 6.3.1... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.3.1.1 |
5,438 | 4.7.1.6.4 Change of network mode of operation at A/Gb mode to Iu mode inter-system change | Whenever an MS moves to a new RA supporting the Iu mode radio interface, the procedures executed by the MS depend on the network mode of operation in the old and new routing area. In case the MS is in state GMM-REGISTERED or GMM-ROUTING-AREA-UPDATING-INITIATED and is in operation mode: a) A or B in A/Gb mode, the MS sh... | 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 | 4.7.1.6.4 |
5,439 | 8.13.2.1.1 Minimum Requirement Multi-Layer Spatial Multiplexing 4 Tx Antenna Port | For CA with 2 DL CCs, the requirements are specified in Table 8.13.2.1.1-2A, based on single carrier requirement specified in Table 8.13.2.1.1-2, with the addition of the parameters in Table 8.13.2.1.1-1 and the downlink physical channel setup according to Annex C.3.2. For CA with 3 DL CCs, the requirements are specifi... | 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 | 8.13.2.1.1 |
5,440 | 16.6.2.3 Connected Mode | The NG-RAN node is aware of the SNPN ID(s) supported by neighbour cells. At the time of handover, cells that do not support the serving SNPN ID or the SNPN ID of an equivalent SNPN within the mobility restrictions received in the UE context are not considered as candidate target cells by the source NG-RAN node. The tar... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 16.6.2.3 |
5,441 | 6.3.3.5 Abnormal cases on the network side | The following abnormal cases can be identified: a) Expiry of timer T3592. The SMF shall, on the first expiry of the timer T3592, retransmit the PDU SESSION RELEASE COMMAND message and shall reset and start timer T3592. This retransmission is repeated four times, i.e. on the fifth expiry of timer T3592, the SMF shall ab... | 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 | 6.3.3.5 |
5,442 | 10.18.4 Successful PSCell Change Report | The objective of Successful PSCell change Report (SPR) is to detect sub-optimal successful PSCell change/CPC or successful PSCell addition/CPA. For analysis of such sub-optimal successful PSCell change/CPC and successful PSCell addition/CPA, the UE may collect SPR based on the triggers configured by the network, if rec... | 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 | 10.18.4 |
5,443 | 5.3.4.3.1 Initiation of in-call modification | The procedure is initiated by the requesting originating side in the "active" state of the call. It shall send a MODIFY message including the new mode to be changed to. The requesting originating side shall also start timer T323 and enter the "mobile originating modify" state (mobile station side) or the "mobile termin... | 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 | 5.3.4.3.1 |
5,444 | 6.7.3.6 Algorithm negotiation for unauthenticated UEs in LSM | UEs that are in limited service mode (LSM) and that cannot be authenticated by the AMF/SEAF (for whatever reason) may still be allowed to establish emergency session by sending the emergency registration request message. It shall be possible to configure whether the AMF allows unauthenticated UEs in LSM to establish be... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 6.7.3.6 |
5,445 | 8.90 Additional MM context for SRVCC | The additional MM Context for SRVCC information element contains mobile station classmarks, supported codec list that are necessary for the AMF/MME/S4-SGSN to perform SRVCC as defined in 3GPP TS 23.216[ Single Radio Voice Call Continuity (SRVCC); Stage 2 ] [43]. The coding of Mobile Station Classmarks and Supported Co... | 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 | 8.90 |
5,446 | – DRX-Config | The IE DRX-Config is used to configure DRX related parameters. DRX-Config information element -- ASN1START -- TAG-DRX-CONFIG-START DRX-Config ::= SEQUENCE { drx-onDurationTimer CHOICE { subMilliSeconds INTEGER (1..31), milliSeconds ENUMERATED { ms1, ms2, ms3, ms4, ms5, ms6, ms8, ms10, ms20, ms30, ms40, ms50, ms60, ms80... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,447 | 4.2.1.3 Number of initial E-RABs failed to setup | a) This measurement provides the number of initial E-RABs failed to setup. The measurement is split into subcounters per failure cause. b) CC c) On transmission by the eNodeB/RN of an INITIAL CONTEXT SETUP RESPONSE, or INITIAL CONTEXT SETUP FAILURE message, each E-RAB failed to establish is added to the relevant measur... | 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 | 4.2.1.3 |
5,448 | 8.9.1.2.2 Closed-loop spatial multiplexing performance (Cell-Specific Reference Symbols) | 8.9.1.2.2.1 Minimum Requirement Single-Layer Spatial Multiplexing 2 Tx Antenna Port The requirements are specified in Table 8.9.1.2.2.1-2, with the addition of the parameters in Table 8.9.1.2.2.1-1 and the downlink physical channel setup according to Annex C.3.2. The purpose of these tests is to verify the closed loop ... | 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 | 8.9.1.2.2 |
5,449 | 4.16.15 Negotiations for planned data transfer with QoS requirements 4.16.15.1 General | The intent of this clause is to specify generic service procedures to enable the AF to negotiate viable time window for the planned application data transfer with specific QoS requirements and operational conditions via the support of the NEF. The PDTQ policies are defined for a specific ASP and each PDTQ policy includ... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.16.15 |
5,450 | 4.16.7.3 Procedure for BDT warning notification | Figure 4.16.7.3-1: The procedure for BDT warning notification 1. The negotiation for Background Data Transfer (BDT) described in clause 4.16.7.2 is completed. In addition, the PCF has subscribed to analytics on "Network Performance" from NWDAF for the area of interest and time window of a background data transfer polic... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.16.7.3 |
5,451 | 5.3.9.3 Purge function | The Purge function allows an MME to inform the HSS that it has deleted the subscription data and MM context of a detached UE. The MME may, as an implementation option, delete the subscription data and MM context of an UE immediately after the implicit or explicit detach of the UE. Alternatively the MME may keep for som... | 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") | 5.3.9.3 |
5,452 | 5.1.3.2.2 5GS update status in the UE | In order to describe the detailed UE behaviour, the 5GS update (5U) status pertaining to a specific subscriber is defined. If the UE is not operating in SNPN access operation mode (see 3GPP TS 23.501[ System architecture for the 5G System (5GS) ] [8]), the 5GS update status is stored in a non-volatile memory in the US... | 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 | 5.1.3.2.2 |
5,453 | 9.3.1.1.1 FDD | For the parameters specified in Table 9.3.1.1.1-1, and using the downlink physical channels specified in Annex C.3.2, the minimum requirements are specified in Table 9.3.1.1.1-2 and by the following a) a sub-band differential CQI offset level of 0 shall be reported at least % of the time but less than % for each su... | 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 | 9.3.1.1.1 |
5,454 | 5.3.5.13.8 Subsequent CPAC execution | Upon the conditional reconfiguration execution for subsequent CPAC, the UE shall: 1> if the selected subsequent CPAC candidate configuration is stored in MCG VarConditionalReconfig: 2> release/clear all current dedicated radio configuration except for the following: - the MCG C-RNTI; - the AS security configurations as... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.5.13.8 |
5,455 | 4.1.1.4.2 Control of Network Mode of Operation I | The behaviour of the MS with respect to NMO I is determined by the combination of PS domain specific system information IE as defined in subclause 10.5.1.12.3 and the setting of the parameter "NMO_I_Behaviour" in the NAS configuration Management Object as specified in 3GPP TS 24.368[ Non-Access Stratum (NAS) configurat... | 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 | 4.1.1.4.2 |
5,456 | 4.8.3 Dual-registration mode | If both 5GMM and EMM are enabled, a UE, operating in the dual-registration mode shall maintain independent contexts for 5GMM and EMM and this includes independent lists of equivalent PLMNs. Coordination between 5GMM and EMM is not needed, except as specified in the present subclause, subclause 5.1.5 and 5.3.13A. For du... | 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 | 4.8.3 |
5,457 | 6.9.2 Resource group alignment, layer mapping and precoding | The block of symbols should be first aligned with resource element group size, resulting in a block of symbols , where for normal cyclic prefix; and for extended cyclic prefix. For normal cyclic prefix, , for . For extended cyclic prefix, for . The block of symbols shall be mapped to layers and precoded, resulting in a... | 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 | 6.9.2 |
5,458 | 12.1.3 Load & overload control concepts | Load control refers to "GTP-C signalling based Load Control" as defined in clause 4.3.7.1a.1 of 3GPP TS 23.401[ General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access ] [3] and clause 5.3.6.1a of 3GPP TS 23.060[ General Packet Radio Service (GPRS); Serv... | 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 | 12.1.3 |
5,459 | 8.2.1.1.1 Minimum Requirement | For single carrier, the requirements are specified in Table 8.2.1.1.1-2, with the addition of the parameters in Table 8.2.1.1.1-1 and the downlink physical channel setup according to Annex C.3.2. For CA with 2 DL CCs, the requirements are specified in Table 8.2.1.1.1-4, with the addition of the parameters in Table 8.2.... | 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 | 8.2.1.1.1 |
5,460 | 5.7.3.2 Initiation | A UE initiates the procedure to report SCG failures when neither MCG nor SCG transmission is suspended and when one of the following conditions is met: 1> upon detecting radio link failure for the SCG, in accordance with clause 5.3.10.3; 1> upon detecting beam failure of the PSCell while the SCG is deactivated, in acco... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.7.3.2 |
5,461 | 5.7.3c.4 Actions related to transmission of IndirectPathFailureInformation message | The UE shall set the contents of the IndirectPathFailureInformation message as follows: 1> set the failureTypeIndirectPath in accordance with 5.7.3c.3; 1> if the procedure was initiated to report SL indirect path failure: 2> set the sl-MeasResultServingRelay to include the measurement result for serving L2 U2N Relay UE... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.7.3c.4 |
5,462 | 7.4 Unknown or unforeseen message type | If UE receives an EMM message or ESM message with message type not defined for the protocol discriminator (PD) or not implemented by the receiver, it shall return a status message (EMM STATUS or ESM STATUS depending on the PD) with cause #97 "message type non-existent or not implemented". If the network receives an EMM... | 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 |
5,463 | 5.3.16 Extended DRX cycle for UEs in 5GMM-IDLE and 5GMM-CONNECTED mode with RRC inactive indication | Extended DRX (eDRX) cycle is supported for a UE in N1 mode. When eDRX is requested by the UE and accepted by the network: - if the UE is not in NB-N1 mode, eDRX is used when the UE is in 5GMM-IDLE mode or in 5GMM-CONNECTED mode with RRC inactive indication; or - if the UE is in NB-N1 mode, eDRX is used when the UE is i... | 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 | 5.3.16 |
5,464 | 5.15.15.3 Network-based per UE Network Slice usage behaviour control | The 5GC performs Network Slice usage monitoring to be able to enforce the release of inactive PDU Sessions, and deregistering of UEs from Network Slices with no PDU Sessions on them according to its own policies. In order to support usage monitoring for a Network Slice: - the AMF runs a slice deregistration inactivity ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.15.15.3 |
5,465 | 6.5.1E Frequency error for UE category M1 and M2 | For category M1 and M2 TDD UEs and FD-FDD UEs, the frequency error requirements in Clause 6.5.1 apply. For category M1 and M2 HD-FDD UEs and for continuous uplink transmissions of duration ≤ 64 ms, the frequency error requirements in Clause 6.5.1 apply. For category M1 and M2 HD-FDD UEs and for continuous uplink transm... | 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 | 6.5.1E |
5,466 | 6.2.3G.2 MPR for Power class 2 V2X UE | For contiguous allocation of PSCCH and PSSCH simultaneous transmission, the allowed MPR for the maximum output power for V2X physical channels PSCCH and PSSCH shall be as specified in Table 6.2.3G.2-1 for power class 2. Table 6.2.3G.2-1: Maximum Power Reduction (MPR) for power class 2 V2X Communication (Contiguous PSCC... | 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 | 6.2.3G.2 |
5,467 | – SIB22 | SIB22 contains ATG assistant information. SIB22 information element -- ASN1START -- TAG-SIB22-START SIB22-r18 ::= SEQUENCE { atg-Config-r18 ATG-Config-r18 OPTIONAL, -- Need R hs-ATG-cellReselectionSet-r18 ENUMERATED {true} OPTIONAL, -- Need R atg-NeighCellConfigList-r18 ATG-NeighCellConfigList-r18 OPTIONAL, -- Need R l... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,468 | 5.2.3.2.3 Nudm_UECM_Deregistration service operation | Service operation name: Nudm_UECM_Deregistration. Description: The NF consumer requests the UDM to delete the information related to the NF in the UE context. When the consumer is AMF, this implies that the subscriptions to be notified when the NF is deregistered in UDM (i.e. Nudm_UECM_DeregistrationNotification) are a... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.3.2.3 |
5,469 | 6.10.3.1 Sequence generation | For antenna port 5, the UE-specific reference-signal sequence is defined by where denotes the assigned bandwidth in resource blocks of the corresponding PDSCH transmission. The pseudo-random sequence is defined in clause 7.2. The pseudo-random sequence generator shall be initialised with at the start of each subframe w... | 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 | 6.10.3.1 |
5,470 | 5.2.8.2.3 Nsmf_PDUSession_Update service operation | Service operation name: Nsmf_PDUSession_Update. Description: Update the established PDU Session. This service operation is invoked by the V-SMF towards the H-SMF in the case of UE or serving network requested PDU Session Modification in order for the V-SMF to transfer the PDU Session Modification request. It can also b... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.8.2.3 |
5,471 | 8.22 Fully Qualified TEID (F-TEID) | Fully Qualified Tunnel Endpoint Identifier (F-TEID) is coded as depicted in Figure 8.22-1. Figure 8.22-1: Fully Qualified Tunnel Endpoint Identifier (F-TEID) The following flags are coded within Octet 5: - Bit 8 – V4: If this bit is set to "1", then IPv4 address field exists in the F-TEID, otherwise the IPv4 address fi... | 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 | 8.22 |
5,472 | 9.3.6 Connect acknowledge | This message is sent by the network to the called mobile station to indicate that the mobile station has been awarded the call. It shall also be sent by the calling mobile station to the network to acknowledge the offered connection. See table 9.60/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core netw... | 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 | 9.3.6 |
5,473 | 9.8.3 Security mechanisms for the E1 interface | The E1 interface connects the gNB-CU-CP to the gNB-CU-UP. It is only used for the transport of signalling data. In order to protect the traffic on the E1 interface, IPsec ESP and IKEv2 certificates-based authentication shall be supported as specified in sub-clause 9.1.2 of the present document with confidentiality, int... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 9.8.3 |
5,474 | 10.5.4.19 More data | The more data information element is sent by the mobile station to the network or to the network to the mobile station in a USER INFORMATION message. The presence of the more data information element indicates to the destination remote user/mobile station that another USER INFORMATION message will follow containing inf... | 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 | 10.5.4.19 |
5,475 | 4.5.2.3 Abnormal cases | RR connection failure: If the RR connection failure occurs during a RR or MM common procedure, the consequent actions are described together with that procedure. In other cases, the following applies: - Mobile station: The MM sublayer shall indicate to all CM entities associated with active MM connections that the MM c... | 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 | 4.5.2.3 |
5,476 | 4.3 UE mode of operation 4.3.1 General | A UE attached for EPS services shall operate in one of the following operation modes: - PS mode 1 of operation: the UE registers only to EPS services, and UE's usage setting is "voice centric"; - PS mode 2 of operation: the UE registers only to EPS services, and UE's usage setting is "data centric"; - CS/PS mode 1 of o... | 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 | 4.3 |
5,477 | 4.2.1.8 Maximum E-RAB Setup time | This measurement provides the maximum time per QCI it takes to establish an E-RAB. GAUGE This measurement is obtained by monitoring the time intervals for every successfully established E-RAB between the receipt of an E-RAB SETUP REQUEST or INITIAL CONTEXT SETUP REQUEST message and the transmission of the corresponding... | 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 | 4.2.1.8 |
5,478 | 5.5.4.5 Event A4 (Neighbour becomes better than threshold) | The UE shall: 1> consider the entering condition for this event to be satisfied when condition A4-1, as specified below, is fulfilled; 1> consider the leaving condition for this event to be satisfied when condition A4-2, as specified below, is fulfilled. Inequality A4-1 (Entering condition) Mn + Ofn + Ocn – Hys > Thres... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.5.4.5 |
5,479 | 10.2.6A Narrowband positioning reference signal (NPRS) | Narrowband positioning reference signals (NPRSs) shall only be transmitted in resource blocks in NB-IoT carriers configured for NPRS transmission. In a subframe configured for NPRS transmission, the starting positions of the OFDM symbols configured for NPRS transmission shall be identical to those in a subframe in whic... | 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 | 10.2.6A |
5,480 | 6.1.3.1.2 Successful PDP context activation requested by the network | In order to request a PDP context activation, the network sends a REQUEST PDP CONTEXT ACTIVATION message to the MS and starts timer T3385. The message contains an offered PDP address. If available, the APN shall be included in the REQUEST PDP CONTEXT ACTIVATION message. Upon receipt of a REQUEST PDP CONTEXT ACTIVATION ... | 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 | 6.1.3.1.2 |
5,481 | 6.4.1.3 Default EPS bearer context activation accepted by the UE | Upon receipt of the ACTIVATE DEFAULT EPS BEARER CONTEXT REQUEST message, if the UE provided an APN for the establishment of the PDN connection, the UE shall stop timer T3396 if it is running for the APN provided by the UE. If the UE did not provide an APN for the establishment of the PDN connection and the request type... | 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 | 6.4.1.3 |
5,482 | 5.2.3.2.3 ATTEMPTING-REGISTRATION-UPDATE | The UE in 3GPP access: a) shall not send any user data; b) shall initiate a registration procedure for mobility and periodic registration update on the expiry of timers T3502, T3511, T3346 or discontinuous coverage maximum time offset timer; c) shall initiate a registration procedure for mobility and periodic registrat... | 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 | 5.2.3.2.3 |
5,483 | 4.7.9.2 Paging for non-GPRS services | The network may initiate the paging procedure for non-GPRS services when the MS is IMSI attached for non-GPRS services. In Iu mode, to initiate the procedure the GMM entity requests the lower layer to start paging (see 3GPP TS 25.331[ None ] [23c] and 3GPP TS 25.413[ UTRAN Iu interface Radio Access Network Application... | 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 | 4.7.9.2 |
5,484 | 6.8.10.1 SRVCC from HSPA to circuit switched UTRAN/GERAN | HSPA SRVCC to UTRAN/GERAN is described in TS 23.216[ Single Radio Voice Call Continuity (SRVCC); Stage 2 ] [37]. Case 1: UMTS subscribers: Case 1.1: HO to UTRAN When the SRNC decides to start a SRVCC from HSPA to UTRAN, it shall initiate the SRVCC Preparation procedure described in TS 25.413[ UTRAN Iu interface Radio ... | 3GPP TS 33.102 | 3G security; Security architecture | SA WG3 | 3GPP Series : 33 , Security aspects | 6.8.10.1 |
5,485 | 5.13 Discontinuous Reception and UE Specific DRX Parameter handling | During the Attach and Tracking/Routing Area Update procedures in E-UTRAN, UTRAN and/or GERAN, the UE can signal its UE Specific DRX Parameters to the Core Network (MME in the E-UTRAN case and SGSN in UTRAN/GERAN case). In E-UTRAN and UTRAN, the UE may signal that it wishes to use the DRX cycle length broadcast in the R... | 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") | 5.13 |
5,486 | 6.1.5 Coordination between ESM and EMM for supporting ISR | The UE with its TIN set as "RAT-related TMSI" for which ISR is activated shall change its TIN to "GUTI" to locally deactivate ISR and stop the periodic routing area update timer T3312 or T3323, if running: - upon modification of any EPS bearer context which was activated before the ISR is activated in the UE; - at the ... | 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 | 6.1.5 |
5,487 | B.3.2 Network-to-MS compatibility checking | When the network is providing a basic service at the called side, the MS shall check that the basic service(s) offered by the network in the Bearer Capability information element(s) match(es) the basic services that the MS is able to support. If a mismatch is detected, then the MS shall proceed as follows: - if the SET... | 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 | B.3.2 |
5,488 | 5.4.1 PUCCH formats 1, 1a and 1b | For PUCCH format 1, information is carried by the presence/absence of transmission of PUCCH from the UE. In the remainder of this clause, shall be assumed for PUCCH format 1. For PUCCH formats 1a and 1b, one or two explicit bits are transmitted, respectively. The block of bits shall be modulated as described in Table 5... | 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 | 5.4.1 |
5,489 | J.4 Downlink data transfer | Figure J.4-1 shows a downlink data transfer to an idle state UE when ISR is activated. The Serving GW receives downlink data. Because of activated ISR, the Serving GW has control connections with both MME and SGSN and sends therefore downlink data notifications to both nodes. MME and SGSN start their paging procedures,... | 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") | J.4 |
5,490 | 5.27.2.5.2 Proactive RAN feedback for adaptation of Burst Arrival Time and Periodicity | If the NG-RAN receives a Burst Arrival Time and Burst Arrival Time Window in the TSCAI for a QoS Flow, the 5GS will perform the following actions: - The NG-RAN can determine a BAT offset in order to align the expected arrival of the traffic bursts (as indicated in the BAT) with the time when the next transmission over ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.27.2.5.2 |
5,491 | 4.7.2.2 The EPS bearer with GTP-based S5/S8 | Figure 4.7.2.2-1: Two Unicast EPS bearers (GTP-based S5/S8) An EPS bearer is realized by the following elements: - In the UE, the UL TFT maps a traffic flow aggregate to an EPS bearer in the uplink direction; - In the PDN GW, the DL TFT maps a traffic flow aggregate to an EPS bearer in the downlink direction; - A radio... | 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") | 4.7.2.2 |
5,492 | 8.12.3 Demodulation of NPBCH | The receiver characteristics of the NPBCH are determined by the probability of miss-detection of the NPBCH (Pm-bch), which is defined as For the performance with single a NPBCH TTI decoding, A is the number of correctly decoded MIB-NB PDUs and B is the number of transmitted MIB-NB PDUs. For the performance with multipl... | 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 | 8.12.3 |
5,493 | 10.5.1.4 Mobile Identity | The purpose of the Mobile Identity information element is to provide either the international mobile subscriber identity, IMSI, the temporary mobile subscriber identity, TMSI/P-TMSI/M-TMSI, the international mobile equipment identity, IMEI, the international mobile equipment identity together with the software version ... | 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 | 10.5.1.4 |
5,494 | – RLC-Parameters | The IE RLC-Parameters is used to convey capabilities related to RLC. RLC-Parameters information element -- ASN1START -- TAG-RLC-PARAMETERS-START RLC-Parameters ::= SEQUENCE { am-WithShortSN ENUMERATED {supported} OPTIONAL, um-WithShortSN ENUMERATED {supported} OPTIONAL, um-WithLongSN ENUMERATED {supported} OPTIONAL, ..... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,495 | 4.7.3.1.4a GPRS attach for emergency bearer services not accepted by the network (UTRAN Iu mode only) | If the attach request for emergency bearer services cannot be accepted by the network, an ATTACH REJECT message is transferred to the MS. The ATTACH REJECT message includes GMM cause #5 "IMEI not accepted" or one of the GMM cause values as described in subclause 4.7.3.1.4. NOTE 1: If GMM cause #11 is sent to a MS of a ... | 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 | 4.7.3.1.4a |
5,496 | 6.8.1.1.2.2 Full native 5G NAS security context available | The UE shall transmit a NAS Registration Request message. This message is integrity protected using the distinct NAS COUNT values and the NAS connection identifier associated with this access. For the case that the 5G NAS security context used by the UE is non-current in the AMF, the AMF shall delete any existing curre... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 6.8.1.1.2.2 |
5,497 | 7.8 Bandwidth Adaptation | To enable BA on the PCell, the gNB configures the UE with UL and DL BWP(s). To enable BA on SCells in case of CA, the gNB configures the UE with DL BWP(s) at least (i.e. there may be none in the UL). For the PCell, the BWP used for initial access is configured via system information. For the SCell(s), the BWP used afte... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 7.8 |
5,498 | 8.2 National network subsystem numbers used for GSM/UMTS | The following national network subsystem numbers have been allocated for use within GSM/UMTS networks: 1111 1000 CSS (MAP); 1111 1001 PCAP; 1111 1010 BSC (BSSAP-LE); 1111 1011 MSC (BSSAP-LE); 1111 1100 SMLC (BSSAP-LE); 1111 1101 BSS O&M (A interface); 1111 1110 BSSAP (A interface). The following national network subsys... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 8.2 |
5,499 | 5.28.5 Support of integration with IETF Deterministic Networking 5.28.5.1 General | 5GS acts as a DetNet Router according to the architecture defined in clause 4.4.8.4. When integrated with an IETF Deterministic Network, 5GS acts as one or more routers. A 5GS router is composed of the ports on a single UPF (i.e. PSA) network side, the user plane tunnel between the UE and UPF, and the ports on the devi... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.28.5 |
5,500 | 4.1.3.3 RRC connection usage per UE multi-RAT capability | a) This measurement provides RRC connection usage per UE multi-RAT capability. The measurement is split into subcounters per UE multi-RAT capability. b) DER (n=1) c) This measurement is obtained by accumulating successful RRC connections per UE multi-RAT capability after the receipt of a RRC CONNECTION SETUP COMPLETE m... | 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 | 4.1.3.3 |
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