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5,601 | 19.4.2.6 Serving GPRS Support Node (SGSN) within SGSN pool | A specific SGSN within an operator's network is identified using the RAI FQDN (clause 19.4.2.5) and the Network Resource Identifier (NRI) (see 3GPP TS 23.236[ Intra-domain connection of Radio Access Network (RAN) nodes to multiple Core Network (CN) nodes ] [23]). Such an identifier can be used by a target MME or SGSN ... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 19.4.2.6 |
5,602 | Annex E (informative): Guidelines for enhancements to MS network capability IE and UE network capability IE | The UE uses the information elements MS network capability and UE network capability to inform the core network about its network related capabilities. Both information elements can be signalled in any of the modes: A/Gb mode, Iu mode and S1 mode. The purpose of the present annex is to give some guidelines how to selec... | 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 | Annex |
5,603 | 4.15.6.13.2 Procedures for Creating a Multi-member AF session with required QoS | Figure 4.15.6.13.2-1: Procedures for creating a Multi-member AF session with required QoS 1. The AF sends a request to reserve resources for the traffic flows for the communication between a set of UEs and an AF, using Nnef_AFsessionWithQoS_Create request message (a list of UE addresses, AF Identifier, Flow description... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.15.6.13.2 |
5,604 | 5.5.2.3.3 Execution phase | Figure 5.5.2.3.3-1: E-UTRAN to GERAN A/Gb mode Inter RAT HO, execution phase NOTE 1: For a PMIP-based S5/S8, procedure steps (A) and (B) are defined in TS 23.402[ Architecture enhancements for non-3GPP accesses ] [2]. Step (B) shows PCRF interaction in the case of PMIP-based S5/S8. Steps 10 and 10a concern GTP based S... | 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") | 5.5.2.3.3 |
5,605 | 10.2.6.2 Mapping to resource elements | Narrowband reference signals are transmitted on one or two antenna ports . If the higher layer indicates UE may assume that is equal to , UE may assume - the number of antenna ports for the cell-specific reference signals as defined in clause 6.10.1 is the same as for the narrowband reference signals, - the antenna por... | 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 | 10.2.6.2 |
5,606 | 5.17.2.3.3 Mobility for UEs in dual-registration mode | To support mobility in dual-registration mode, the support of N26 interface between AMF in 5GC and MME in EPC is not required. A UE that supports dual registration mode may operate in this mode when it receives an indication from the network that interworking without N26 is supported. For UE operating in dual-registrat... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.17.2.3.3 |
5,607 | 6.4.2.2 Dedicated EPS bearer context activation initiated by the network | In WB-S1 mode, the MME shall initiate the dedicated bearer context activation procedure by sending an ACTIVATE DEDICATED EPS BEARER CONTEXT REQUEST message, start the timer T3485, and enter the state BEARER CONTEXT ACTIVE PENDING (see example in figure 6.4.2.2.1). The MME allocates the EPS bearer identity selecting a v... | 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 | 6.4.2.2 |
5,608 | 13.2.4.5.2a Modifications by Roaming Hub | In case a roaming hub needs to originate an error message, then clause 13.2.4.5.2 shall also apply with the following addition: If an error message needs to be sent, the originating roaming hub shall insert an empty reformattedData IE as defined in TS 29.573[ 5G System; Public Land Mobile Network (PLMN) Interconnection... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 13.2.4.5.2a |
5,609 | 5.2.2.3.3 Request for on demand system information | The UE shall, while SDT procedure is not ongoing: 1> if SIB1 includes si-SchedulingInfo containing si-RequestConfigSUL-MSG1-Repetition and criteria to select supplementary uplink as defined in TS 38.321[ NR; Medium Access Control (MAC) protocol specification ] [3], clause 5.1.1 is met and if criteria to apply MSG1 repe... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.2.2.3.3 |
5,610 | 6.6.3.3.27 Minimum requirement (network signalled value “NS_31”) | When "NS_31" is indicated in the cell, the power of any UE emission for E-UTRA channels assigned within 5150-5250 MHz, 5250-5350 MHz, 5470-5725 MHz and 5725-5850 MHz shall not exceed the levels specified in Table 6.6.3.3.27-1, Table 6.6.3.3.27-2, Table 6.6.3.3.27-3 and Table 6.6.3.3.27-4, respectively. These requiremen... | 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 | 6.6.3.3.27 |
5,611 | 5.2.27.2.5 Ntsctsf_TimeSynchronization_ConfigUpdateNotify operation | Service operation name: Ntsctsf_TimeSynchronization_ConfigUpdateNotify Description: Forward the notification for the time synchronization configuration. When the TSCTSF detects a change corresponding to a time synchronization configuration, it invokes Ntsctsf_TimeSynchronization_ConfigUpdateNotify service operation to ... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.27.2.5 |
5,612 | 14.4A Fast Re-authentication NAI | The Fast Re-authentication NAI in both EAP-SIM and EAP-AKA shall take the form of a NAI as specified in clause 2.1 of IETF RFC 4282 [53]. If the 3GPP AAA server does not return a complete NAI, the Fast Re-authentication NAI shall consist of the username part of the fast re-authentication identity as returned from the 3... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 14.4A |
5,613 | 5.4.7.1 Transmission using PUR | Transmission using PUR is initiated by the RRC layer. When transmission using PUR is initiated, RRC layer provides MAC with the following information: - PUR-RNTI; - Duration of PUR response window pur-ResponseWindowTimer; - UL grant information. If the MAC entity has a PUR-RNTI, the MAC entity shall for each TTI for wh... | 3GPP TS 36.321 | Evolved Universal Terrestrial Radio Access (E-UTRA); Medium Access Control (MAC) protocol specification | RAN2 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 5.4.7.1 |
5,614 | 4.1.1.7 Handling of NAS level mobility management congestion control | The network may detect GMM or MM signalling congestion and perform NAS level mobility management congestion control. PS domain NAS level mobility management congestion control consists of general NAS level mobility management congestion control and subscribed APN based congestion control. CS domain NAS level mobility m... | 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 | 4.1.1.7 |
5,615 | 5.3.5.3 Uplink timing control | The gNB (including IAB-DU and IAB-donor-DU) determines the desired Timing Advance setting and provides that to the UE (or IAB-MT). The UE/IAB-MT uses the provided TA to determine its uplink transmit timing relative to the UE's/IAB-MTs observed downlink receive timing. An IAB-node may support additional modes for uplink... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.5.3 |
5,616 | 5.6.1 Overview | The 5GC supports a PDU Connectivity Service i.e. a service that provides exchange of PDUs between a UE and a data network identified by a DNN. The PDU Connectivity Service is supported via PDU Sessions that are established upon request from the UE. The Subscription Information for each S-NSSAI may contain a Subscribed ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.6.1 |
5,617 | 6.2.25 MFAF | The Messaging Framework Adaptor Function (MFAF) supports the following functionality: - Interfacing with a DCCF that controls how a messaging framework will process, format and send data to consumers or notification endpoints. - Receiving data from Data Sources via services offered by those Data Sources. - Sending data... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.2.25 |
5,618 | 6.5 MBS Session associations in NG-RAN Node | The following MBS Session associations are defined in the NG-RAN node to support NR MBS: NG-RAN MBS session resource context: Encompasses CP and UP, transport and radio resources to support an MBS Session. For multicast it also encompasses the MBS Session state (active, de-activated) and information about joined UEs. I... | 3GPP TS 38.401 | NG-RAN; Architecture description | RAN3 | 3GPP Series : 38 , Radio technology beyond LTE | 6.5 |
5,619 | 5.20b.3 Support QoS for a group | The procedure as defined in clause 4.15.6.2 of TS 23.502[ Procedures for the 5G System (5GS) ] [3] is applicable for provisioning of default QoS for a DNN and S-NSSAI for a group of UEs with the following clarifications and enhancements: - The AF request contains the Default QoS for the group, and the UDM stores such ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.20b.3 |
5,620 | 5.7.3b.4 Actions related to transmission of MCGFailureInformation message | The UE shall set the contents of the MCGFailureInformation message as follows: 1> include and set failureType in accordance with 5.7.3b.3; 1> for each MeasObjectNR configured by a measConfig associated with the MCG, and for which measurement results are available: 2> include an entry in measResultFreqList; 2> if there ... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.7.3b.4 |
5,621 | 8.3.2.4.6 Minimum requirements for QCL Type C and 2 Layers Spatial Multiplexing | The requirements are specified in Table 8.3.2.4.6-3, with the additional parameters in Table 8.3.2.4.6-1 and Table 8.3.2.4.6-2. The purpose of this test is to verify the UE capability of supporting non quasi-colocated antenna ports when the UE receives DCI format 2D in a scenario with non-coherent joint transmission fr... | 3GPP TS 36.101 | Evolved Universal Terrestrial Radio Access (E-UTRA); User Equipment (UE) radio transmission and reception | RAN4 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 8.3.2.4.6 |
5,622 | 10.5.3.2.1 Authentication Response Parameter (extension) (UMTS authentication challenge only) | This IE is included if the authentication response parameter RES is longer than 4 octets (UMTS only) and therefore does not fit in the Authentication Response Parameter field (see 10.5.3.2). The Authentication Response parameter (extension) IE is coded as shown in figure 10.5.76.1/3GPP TS 24.008[ Mobile radio interface... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 10.5.3.2.1 |
5,623 | 13.11 Unknown User Identity | The Unknown User Identity shall take the form of a SIP URI (see IETF RFC 3261 [26]). A SIP URI for an Unknown User Identity shall take the form "sip:user@domain". The user part shall be the string "unknown" and the domain part shall be the string "unknown.invalid". The full SIP URI for Unknown User Identity is thus: "s... | 3GPP TS 23.003 | Numbering, addressing and identification | CT WG4 | 3GPP Series : 23 , Technical realization ("stage 2") | 13.11 |
5,624 | 5.1.1 Physical channels | An uplink physical channel corresponds to a set of resource elements carrying information originating from higher layers and is the interface defined between TS 36.212[ Evolved Universal Terrestrial Radio Access (E-UTRA); Multiplexing and channel coding ] [3] and the present document TS 36.211[ Evolved Universal Terre... | 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 | 5.1.1 |
5,625 | G.6 Additional cause codes for GMM | Cause value = 7 GPRS services not allowed This cause is sent to the MS when it is not allowed to operate GPRS services. Cause value = 8 GPRS services and non-GPRS services not allowed This cause is sent to the MS when it is not allowed to operate either GPRS or non-GPRS services. Cause value = 9 MS identity cannot be d... | 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 | G.6 |
5,626 | 5.1.3 Potential service requirements | The 3GPP system shall enable a UAS to send the following UAV data to a UTM: unique identity (this may be unique 3GPP identity), UE capability of the UAV, make & model, serial number, take-off weight, position, owner identity, owner address, owner contact details, owner certification, take-off location and time, mission... | 3GPP TS 22.825 | Study on Remote Identification of Unmanned Aerial Systems (UAS) | SA WG1 | 3GPP Series : 22 , Service aspects ("stage 1") | 5.1.3 |
5,627 | 5.3.26 Support for unavailability period | If the UE and network support unavailability period and an event is triggered in the UE making the UE unavailable for a certain period of time, the UE may store its 5GMM and 5GSM context in USIM or non-volatile memory in the ME to be able to reuse it after the unavailability period. NOTE 1: How and where the UE stores ... | 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 | 5.3.26 |
5,628 | 6.2.5.1.4.5 Deleting a derived QoS rule in the UE | Upon expiry of timer T3583 associated with a derived QoS rule, the UE shall remove the derived QoS rule. Upon release of the PDU session, the UE shall remove the derived QoS rule(s) associated with the PDU session. If the network accepts the request from the UE to revoke the usage of reflective QoS and sets the value o... | 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 | 6.2.5.1.4.5 |
5,629 | 6.2.32 TSN AF | The TSN AF supports control plane translator functionality for the integration of the 5GS with a TSN network, this involves e.g.: - 5GS Bridge management. - Port and bridge management information exchange with DS-TT or NW-TT. - Interactions with the CNC for 5GS Bridge configuration and reporting. - determining the TSC ... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.2.32 |
5,630 | 5.31 Support for Cellular IoT 5.31.1 General | This clause provides an overview about 5GS optimisations and functionality for support of Cellular Internet-of-Things (Cellular IoT, or CIoT) according to service requirements described in TS 22.261[ Service requirements for the 5G system ] [2]. Cellular IoT is in earlier 3GPP releases also referred to as Machine Type... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.31 |
5,631 | 5.10 Multiple-PDN support and PDN activation for UEs supporting "Attach without PDN connectivity" 5.10.1 General | The EPS shall support simultaneous exchange of traffic to multiple PDNs through the use of separate PDN GWs or a single PDN GW. The usage of multiple PDNs is controlled by network policies and defined in the user subscription EPS Optimisation. The EPS shall support UE-initiated connectivity establishment in order to al... | 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") | 5.10 |
5,632 | 10.13.2 MR-DC with 5GC | The Notification Control Indication procedure may be initiated either by the MN or by the SN and is used to indicate that GFBR for one or several QoS flows cannot be fulfilled any more or can be fulfilled again by the reporting node. Figure 10.13.2-1: Notification Control Indication procedure Figure 10.13.2-1 shows an ... | 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 | 10.13.2 |
5,633 | 16.14.4.2 Assumptions | A feeder link switch over may result in transferring the established connection for the affected UEs between two gNBs. For soft feeder link switch over, an NTN payload is able to connect to more than one NTN Gateway during a given period, i.e. a temporary overlap can be ensured during the transition between the feeder ... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 16.14.4.2 |
5,634 | 5.5.2.1A.4 Mapping to physical resources | The sequence shall be multiplied with the amplitude scaling factor and mapped in sequence starting with to the sub-carriers. The set of sub-carriers used in the mapping process shall be identical to the corresponding PUSCH transmissions using sub-PRB allocations for BL/CE UEs as defined in clause 5.3.4. The mapping to ... | 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 | 5.5.2.1A.4 |
5,635 | 6.3.3.6 Abnormal cases in the UE | The following abnormal cases can be identified: a) PDU session inactive for the received PDU session ID. If the PDU session ID in the PDU SESSION RELEASE COMMAND message belongs to any PDU session in state PDU SESSION INACTIVE in the UE, the UE shall include the 5GSM cause #43 "Invalid PDU session identity" in the 5GSM... | 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 | 6.3.3.6 |
5,636 | 6.5.3 Data integrity protection method | Figure 16 illustrates the use of the integrity algorithm f9 to authenticate the data integrity of a signalling message. Figure 16: Derivation of MAC-I (or XMAC-I) on a signalling message The input parameters to the algorithm are the Integrity Key (IK), the integrity sequence number (COUNT-I), a random value generated b... | 3GPP TS 33.102 | 3G security; Security architecture | SA WG3 | 3GPP Series : 33 , Security aspects | 6.5.3 |
5,637 | 9.9.4.22 Header compression configuration | The purpose of the Header compression configuration information element is to negotiate ROHC channel setup parameters specified in IETF RFC 5795 [37] and, optionally, provide additional header compression context setup parameters. The Header compression configuration information element is coded as shown in figure 9.9.... | 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 | 9.9.4.22 |
5,638 | 4.1.1.1 Attempted RRC connection establishments | a) This measurement provides the number of RRC connection establishment attempts for each establishment cause. b) CC c) Receipt of an RRCConnectionRequest message by the eNodeB/RN from the UE. Each RRCConnectionRequest message received is added to the relevant per establishment cause measurement. The possible causes ar... | 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 | 4.1.1.1 |
5,639 | 7.2.3 Create Bearer Request | The direction of this message shall be from PGW to SGW and from SGW to MME/S4-SGSN, and from PGW to TWAN/ePDG (see Table 6.1-1). The Create Bearer Request message shall be sent on the S5/S8 interface by the PGW to the SGW and on the S11 interface by the SGW to the MME as part of the Dedicated Bearer Activation procedur... | 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 | 7.2.3 |
5,640 | 13.2.4.3.1.2 metadata | The JSON object containing information added by the sending SEPP. It shall contain: a) N32-f message ID: Unique identifier (64-bit integer) representing a HTTP Request/Response transaction between two SEPPs. The N32-f message ID is generated by the sending SEPP and included in the HTTP Request sent over the N32 interfa... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 13.2.4.3.1.2 |
5,641 | 4.2.15 Architecture to support WLAN connection using 5G credentials without 5GS registration | The reference architecture shown with reference point representation in Figure 4.2.15-1 and with Service Based Interface (SBI)-representation in Figure 4.2.15-2, enables a UE to connect to a WLAN access network using its 5GS credentials without registration to 5GS. This architecture is based on the Non-Seamless WLAN Of... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.2.15 |
5,642 | 5.2.3.2.2 ATTEMPTING-TO-UPDATE | The UE: - shall not send any user data; - shall initiate tracking area updating on the expiry of timers T3411, T3402 or T3346; - shall initiate tracking area updating when entering a new PLMN, if timer T3346 is running and the new PLMN is not equivalent to the PLMN where the UE started timer T3346, the PLMN identity of... | 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 | 5.2.3.2.2 |
5,643 | 4.7.9.1 Paging for GPRS services | In A/Gb mode, paging is used by the network to identify the cell the MS has currently selected, or to prompt the mobile to re-attach if necessary as a result of network failure. If the MS is not GPRS attached when it receives a paging for GPRS services, the MS shall ignore the paging. In Iu mode, paging is used by the ... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 4.7.9.1 |
5,644 | 8.3.3.1.2 TDD Pcell (TDD single carrier) | The parameters specified in Table 8.3.3.1.2-1 are valid for TDD CC and LAA SCell(s) unless otherwise stated. And the additional parameters specified in Table 8.3.3.1.2-2 are valid for LAA SCell(s). Table 8.3.3.1.2-1: Common Test Parameters Table 8.3.3.1.2-2: Addtional Test Parameters for LAA SCell(s) For CA with LAA SC... | 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 | 8.3.3.1.2 |
5,645 | 5.2.3.2.1 NORMAL-SERVICE | The UE: a) shall initiate the mobility or the periodic registration update procedure (according to conditions given in subclause 5.5.1.3.2), except that the periodic registration update procedure shall not be initiated over non-3GPP access; b) shall initiate the service request procedure (according to conditions given ... | 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 | 5.2.3.2.1 |
5,646 | 9.2.3.4.4 Data Forwarding | If late data forwarding is applied, the source NG-RAN node initiates data forwarding once it knows which target NG-RAN node the UE has successfully accessed. In that case the behavior of the Conditional Handover data forwarding follows the same behavior as defined in 9.2.3.2.3 for the intra-system handover data forward... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 9.2.3.4.4 |
5,647 | 10.5.4.25 User-user | The purpose of the user-user information element is to convey information between the mobile station and the remote ISDN user. The user-user information element is coded as shown in figure 10.5.114/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 ] and table 10.5.131/ 3GPP ... | 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 | 10.5.4.25 |
5,648 | D.3.1 Example of possible implementation | This clause provides an example of a possible implementation of the "Loss" algorithm, amongst other possible methods. It is possible to make use of a statistical loss function (e.g., random selection of messages to throttle based on the indicated percentage) to decide if the given message can be sent or need to be thro... | 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 | D.3.1 |
5,649 | 5.4.2.2 Authentication initiation by the network | When a NAS signalling connection exists, the network can initiate an authentication procedure at any time. For restrictions applicable after handover or inter-system handover to S1 mode see clause 5.5.3.2.3. The network initiates the authentication procedure by sending an AUTHENTICATION REQUEST message to the UE and st... | 3GPP TS 24.301 | Non-Access-Stratum (NAS) protocol for Evolved Packet System (EPS); Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 5.4.2.2 |
5,650 | 5.6C Channel bandwidth for Dual Connectivity | For E-UTRA DC bands specified in 5.5C, the corresponding E-UTRA CA configurations in 5.6A.1, i.e., dual uplink inter-band carrier aggregation with uplink assigned to two E-UTRA bands, are applicable to Dual Connectivity. NOTE 1: Requirements for the dual connectivity configurations are defined in the section correspond... | 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 | 5.6C |
5,651 | 4.2.2.8 Service State, RECEIVING GROUP CALL (LIMITED SERVICE) | Only applicable for mobile stations supporting VGCS listening or VBS listening: When in state MM IDLE and service state RECEIVING GROUP CALL (LIMITED SERVICE), the mobile station shall: - not perform periodic updating; - not perform IMSI detach; - reject any requests from CM entities for MM connections except for emerg... | 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 | 4.2.2.8 |
5,652 | 9.3.2.2.2 TDD | For the parameters specified in Table 9.3.2.2.2-1, and using the downlink physical channels specified in Annex C.3.2, the minimum requirements are specified in Table 9.3.2.2.2-2 and by the following a) a CQI index not in the set {median CQI -1, median CQI, median CQI +1} shall be reported at least % of the time; b) t... | 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 | 9.3.2.2.2 |
5,653 | 5.15.2.1.2 Sidelink process | For each subframe where a transmission takes place for the Sidelink process, one TB and the associated HARQ information is received from the Sidelink HARQ Entity. The sequence of redundancy versions is 0, 2, 3, 1. The variable CURRENT_IRV is an index into the sequence of redundancy versions. This variable is updated mo... | 3GPP TS 36.321 | Evolved Universal Terrestrial Radio Access (E-UTRA); Medium Access Control (MAC) protocol specification | RAN2 | 3GPP Series : 36 , LTE (Evolved UTRA), LTE-Advanced, LTE-Advanced Pro radio technology | 5.15.2.1.2 |
5,654 | – SL-BWP-PoolConfig | The IE SL-BWP-PoolConfig is used to configure NR sidelink communication resource pool. SL-BWP-PoolConfig information element -- ASN1START -- TAG-SL-BWP-POOLCONFIG-START SL-BWP-PoolConfig-r16 ::= SEQUENCE { sl-RxPool-r16 SEQUENCE (SIZE (1..maxNrofRXPool-r16)) OF SL-ResourcePool-r16 OPTIONAL, -- Cond HO sl-TxPoolSelected... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,655 | 4.7.4.1.2 MS initiated GPRS detach procedure completion for GPRS services only | When the DETACH REQUEST message is received by the network, the network shall send a DETACH ACCEPT message to the MS, if the detach type IE value indicates that the detach request has not been sent due to switching off. If switching off was indicated, the procedure is completed when the network receives the DETACH REQU... | 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 | 4.7.4.1.2 |
5,656 | 5.9.3.3 Broadcast MRB establishment | Upon a broadcast MRB establishment, the UE shall: 1> establish a PDCP entity and an RLC entity in accordance with MRB-InfoBroadcast for this broadcast MRB included in the MBSBroadcastConfiguration message and the configuration specified in 9.1.1.7; 1> configure the MAC layer in accordance with the mtch-SchedulingInfo (... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.9.3.3 |
5,657 | 9.11.3.31B Mapped NSSAI | The purpose of the Mapped NSSAI information element is to transfer S-NSSAI(s) applicable in the HPLMN to the visited PLMN. The Mapped NSSAI information element is coded as shown in figure 9.11.3.31B.1, figure 9.11.3.31B.2 and table 9.11.3.31B.1. The Mapped NSSAI is a type 4 information element with a minimum length of ... | 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 | 9.11.3.31B |
5,658 | 4.13.3.2 Deregistration procedures for SMS over NAS | If UE indicates to AMF that it no longer wants to send and receive SMS over NAS (e.g. not including "SMS supported" indication in subsequent Registration Request message) or AMF considers that UE is deregistered on specific Access Type(s) or AMF receives Deregistration Notification from UDM for specific Access Type(s) ... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.13.3.2 |
5,659 | 4.17.6.2 SMF provisioning of UPF instances using NRF | This procedure applies when a SMF wants to get informed about UPFs available in the network and supporting a list of parameters. Figure 4.17.6.2-1: SMF provisioning of UPF instances using NRF procedure The following takes place when an SMF expects to be informed of UPFs available in the network: 1 The SMF issues a Nnrf... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.17.6.2 |
5,660 | 5.7.2.4.1b Notification control with Alternative QoS Profiles | If, for a given GBR QoS Flow, Notification control is enabled and the NG-RAN has received a list of Alternative QoS Profile(s) for this QoS Flow and supports the Alternative QoS Profile handling, the following shall apply: 1) If the NG-RAN determines that the GFBR, the PDB or the PER of the QoS profile cannot be fulfil... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.7.2.4.1b |
5,661 | 9.11.4.28 Ethernet header compression configuration | The purpose of the Ethernet header compression configuration information element is to negotiate the use of EHC and the length of the CID field in the EHC packet (see 3GPP TS 38.323[ NR; Packet Data Convergence Protocol (PDCP) specification ] [29]). The Ethernet header compression configuration information element is ... | 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 | 9.11.4.28 |
5,662 | 8.7.5.2 Minimum Requirement TDD PCell | For UE not supporting 256QAM, the requirements for TDD FDD CA with TDD PCell are specified in Table 8.7.5.2-1 with the additional parameters specified in Table 8.7.5-1, and the downlink physical channel setup according to Annex C.3.2. The test points are applied to UE category and bandwidth combination with maximum agg... | 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 | 8.7.5.2 |
5,663 | – FeatureSetEUTRA-DownlinkId | The IE FeatureSetEUTRA-DownlinkId identifies a downlink feature set in E-UTRA list (see TS 36.331[ Evolved Universal Terrestrial Radio Access (E-UTRA); Radio Resource Control (RRC); Protocol specification ] [10]. The first element in that list is referred to by FeatureSetEUTRA-DownlinkId = 1. The FeatureSetEUTRA-Downl... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,664 | 5.3.17 Service Gap Control | Service gap control (SGC) only applies to 3GPP access. The network may control the frequency with which UEs can transition from 5GMM-IDLE mode to 5GMM-CONNECTED mode via the SGC as specified in 3GPP TS 23.501[ System architecture for the 5G System (5GS) ] [8] and 3GPP TS 23.502[ Procedures for the 5G System (5GS) ] [... | 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 | 5.3.17 |
5,665 | 5.6.1.2.2 UE is using EPS services with control plane CIoT EPS optimization | The UE shall send a CONTROL PLANE SERVICE REQUEST message, start T3417 and enter the state EMM-SERVICE-REQUEST-INITIATED. For case a in clause 5.6.1.1, the Control plane service type of the CONTROL PLANE SERVICE REQUEST message shall indicate "mobile terminating request". The UE may include the ESM DATA TRANSPORT messa... | 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 | 5.6.1.2.2 |
5,666 | 6.2.3F UE maximum output power for modulation / channel bandwidth for category NB1 and NB2 | For UE category NB1 and NB2 power class 3 and 5 the allowed Maximum Power Reduction (MPR) for the maximum output power given in Table 6.2.2F-1 is specified in Table 6.2.3F-1. Table 6.2.3F-1: Maximum Power Reduction (MPR) for UE category NB1 and NB2 Power Class 3 and 5 For UE category NB1 and NB2 power class 6 the allow... | 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 | 6.2.3F |
5,667 | 4.13.3 Network/Access selection for satellite access | Network/Access selection principles specified in clause 4.3.2.2 also apply for satellite access for Cellular IoT. In the case of satellite access for Cellular IoT, a UE with location capability (i.e. GNSS capability) should use its awareness of its location to select a PLMN that is allowed to operate the UE location as... | 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") | 4.13.3 |
5,668 | 10.5.7.6 MBMS context status | The purpose of the MBMS context status information element is to indicate the state of each MBMS context which can be identified by an NSAPI. The MBMS context status information element is a type 4 information element with a minimum length of 2 octets and a maximum length of 18 octets. The MBMS context status informati... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 10.5.7.6 |
5,669 | 12.2.6 Discovery of the support of the feature by the peer node | A GTP-C entity shall determine whether to use the load control feature (i.e. provide or handle load control information) - within the PLMN, based on the operator's policy (local PLMN-wide configuration); - across the PLMN boundaries, based on the operator's policy (local configuration per PLMN). NOTE: The feature may b... | 3GPP TS 29.274 | 3GPP Evolved Packet System (EPS); Evolved General Packet Radio Service (GPRS) Tunnelling Protocol for Control plane (GTPv2-C); Stage 3 | CT WG4 | 3GPP Series : 29 , Signalling protocols ("stage 3") - intra-fixed-network | 12.2.6 |
5,670 | 6.3.6.3.3 Combined N3IWF/ePDG Selection | If the UE is attached to 5GC via an N3IWF that is located in the same country as the country in which the UE is currently located and the AMF has previously indicated support for emergency services over non-3GPP access as defined in clause 5.16.4.1, the UE reuses the existing N3IWF connection for emergency services. Ot... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 6.3.6.3.3 |
5,671 | 12.3.4 APN level overload control 12.3.4.1 General | APN level overload control refers to advertising of the overload information at APN level granularity and hence applying the mitigation policies based on this information to the signalling traffic related to this APN only. Only a PGW may advertise APN level overload information when it detects overload for certain APNs... | 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 | 12.3.4 |
5,672 | 5.2.27.4.2 Ntsctsf_ASTI_Create operation | Service operation name: Ntsctsf_ASTI_Create Description: Authorize the request, activate the 5G access stratum time distribution. Inputs, Required: Target for 5G access stratum time distribution (one UE identified by a SUPI or a GPSI, a group of UEs identified by an Internal Group Identifier or an External Group Identi... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.27.4.2 |
5,673 | 4.4.5 Ciphering of NAS signalling messages | The use of ciphering in a network is an operator option subject to MME configuration. When operation of the network without ciphering is configured, the MME shall indicate the use of "null ciphering algorithm" EEA0 (see clause 9.9.3.23) in the current security context for all UEs. For setting the security header type 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 | 4.4.5 |
5,674 | 5.2.2.3.2 Acquisition of an SI message | For SI message acquisition PDCCH monitoring occasion(s) are determined according to searchSpaceOtherSystemInformation. If searchSpaceOtherSystemInformation is set to zero, PDCCH monitoring occasions for SI message reception in SI-window are same as PDCCH monitoring occasions for SIB1 where the mapping between PDCCH mon... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.2.2.3.2 |
5,675 | 5.2.6.25.5 Nnef_TimeSynchronization_ConfigUpdateNotify operation | Service operation name: Nnef_TimeSynchronization_ConfigUpdateNotify Description: Forward the notification for the time synchronization configuration or (g)PTP time distribution status change. When the NEF receives a notification of a change corresponding to a time synchronization configuration or (g)PTP time distributi... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.6.25.5 |
5,676 | 5.2.2.2.7A Namf_Communication_N1N2TransferFailureNotification service operation | Service operation name: Namf_Communication_N1N2TransferFailureNotification. Description: The AMF uses this notification to inform the NF service consumer that initiated an earlier Namf_Communication_N1N2MessageTransfer, that the AMF failed to deliver the N1 message to the UE as the UE failed to respond to paging, or th... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.2.2.2.7A |
5,677 | 10.5.4.29 Network Call Control Capabilities | The purpose of the Network Call Control Capabilities information element is to identify the call control capabilities of the network. The contents might affect the manner in which the mobile station handles the call. The Network Call Control Capabilities information element is coded as shown in figure 10.5.118/3GPP 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 | 10.5.4.29 |
5,678 | 4.11.1.5 Impacts to EPS Procedures 4.11.1.5.1 General | This clause captures changes to procedures in TS 23.401[ General Packet Radio Service (GPRS) enhancements for Evolved Universal Terrestrial Radio Access Network (E-UTRAN) access ] [13] due to interworking with 5GS based on N26. The handover procedures between EPS and 5GS captured in clause 4.11.1.2 capture impacts to ... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.11.1.5 |
5,679 | 6.3.1A.4 Abnormal cases on the network side | The following abnormal cases can be identified: a) Expiry of timer T3594. On the first expiry of the timer T3594, the SMF shall resend the SERVICE-LEVEL AUTHENTICATION COMMAND message and shall reset and restart timer T3594. This retransmission is repeated four times, i.e., on the fifth expiry of timer T3594, the SMF s... | 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 | 6.3.1A.4 |
5,680 | 4.5.1.6 Call re-establishment | The re-establishment procedure allows a MS to resume a connection in progress after a radio link failure, possibly in a new cell and possibly in a new location area. The conditions in which to attempt call re-establishment or not depend on the call control state, see subclause 5.5.4 and, whether or not a cell allowing ... | 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 | 4.5.1.6 |
5,681 | 8.10.1.1.6 Dual-Layer Spatial Multiplexing (User-Specific Reference Symbols) | For dual-layer transmission on antenna ports 7 and 8 upon detection of a PDCCH with DCI format 2C, the requirements are specified in Table 8.10.1.1.6-2, with the addition of the parameters in Table 8.10.1.1.6-1 where Cell 1 is the serving cell and Cell 2 is the interfering cell. The downlink physical channel setup is 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 | 8.10.1.1.6 |
5,682 | 5.3.5.3 Reception of an RRCReconfiguration by the UE | The UE shall perform the following actions upon reception of the RRCReconfiguration, upon execution of the conditional reconfiguration (CHO, CPA or CPC), or upon execution of an LTM cell switch: 1> if the RRCReconfiguration is applied due to a conditional reconfiguration execution upon cell selection performed while ti... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.3.5.3 |
5,683 | 5.27.2.5.3 Reactive RAN feedback for Burst Arrival Time adaptation | If the RAN receives the capability for BAT adaptation without a Burst Arrival Time in the TSCAI and notification control is enabled for this QoS Flow, the 5GS will perform the following actions: - If NG-RAN determines that the PDB of the QoS flow cannot be fulfilled in DL and UL direction, then if supported, NG-RAN sha... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.27.2.5.3 |
5,684 | 4.11.1.3.2 5GS to EPS Idle mode mobility using N26 interface | In the case of network sharing the UE selects the target PLMN ID according to clause 5.18.3 of TS 23.501[ System architecture for the 5G System (5GS) ] [2]. Clause 4.11.1.3.2 covers the case of idle mode mobility from 5GC to EPC. UE performs Tracking Area Update procedure in E-UTRA/EPS when it moves from NG-RAN/5GS to... | 3GPP TS 23.502 | Procedures for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 4.11.1.3.2 |
5,685 | 5.8.2.8.3 Redirection | The uplink application's traffic redirection may be enforced either in the SMF (as specified in 5.8.2.5 Control of user plane forwarding) or directly in the UPF. The redirect destination may be provided in the dynamic PCC rule or be preconfigured, either in the SMF or in the UPF. When receiving redirect information (re... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.8.2.8.3 |
5,686 | A.36 Monitor of E-RAB release | E-RAB is the key and limited resource for E-UTRAN to deliver services. The release of the E-RAB needs to be monitored as: - an abnormal release of the E-RAB will cause the call(/session) drop, which directly impacts the QoS delivered by the networks, and the satisfaction degree of the end user; - a successfully release... | 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 | A.36 |
5,687 | – RLC-BearerConfig | The IE RLC-BearerConfig is used to configure an RLC entity, a corresponding logical channel in MAC and the linking to a PDCP entity (served radio bearer). RLC-BearerConfig information element -- ASN1START -- TAG-RLC-BEARERCONFIG-START RLC-BearerConfig ::= SEQUENCE { logicalChannelIdentity LogicalChannelIdentity, served... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | – |
5,688 | 5.31.7 Power Saving Enhancements 5.31.7.1 General | To enable UE power saving and to enhance MT reachability while using MICO mode, e.g. for CIoT, the following features are specified in the following clauses: - Extended Discontinuous Reception (DRX) for CM-IDLE and CM-CONNECTED with RRC_INACTIVE; - MICO mode with Extended Connected Time; - MICO mode with Active Time; -... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.31.7 |
5,689 | 13.1 Interference avoidance for in-device coexistence | IDC solution as described in TS 36.300[ Evolved Universal Terrestrial Radio Access (E-UTRA) and Evolved Universal Terrestrial Radio Access Network (E-UTRAN); Overall description; Stage 2 ] [2] and TS 38.300[ NR; NR and NG-RAN Overall description; Stage-2 ] [3] is extended to address EN-DC/NR-DC operation. For the FDM... | 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 | 13.1 |
5,690 | 5.2.4 Synchronization signal and PBCH block | The Synchronization Signal and PBCH block (SSB) consists of primary and secondary synchronization signals (PSS, SSS), each occupying 1 symbol and 127 subcarriers, and PBCH spanning across 3 OFDM symbols and 240 subcarriers, but on one symbol leaving an unused part in the middle for SSS as show in Figure 5.2.4-1. For th... | 3GPP TS 38.300 | NR; NR and NG-RAN Overall description; Stage-2 | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 5.2.4 |
5,691 | I.2.4 Requirements for handling control plane data | An RNC in an exposed location has to provide confidentiality and integrity protection for control plane packets on the Iu and Iur reference points. 1. Control plane data ciphering/deciphering and integrity handling shall take place inside the secure environment where the related keys are stored. 2. The transport of con... | 3GPP TS 33.102 | 3G security; Security architecture | SA WG3 | 3GPP Series : 33 , Security aspects | I.2.4 |
5,692 | 9.4.15 Routing area update accept | This message is sent by the network to the MS to provide the MS with GPRS mobility management related data in response to a routing area update request message. See table 9.4.15/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 ] . Message type: routing area update accept Sig... | 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 | 9.4.15 |
5,693 | 6.15.2.1 Procedure for UE Parameters Update | The UDM may decide to perform UE parameters update anytime after the UE has been successfully authenticated and registered to the 5G system. The security procedure for the UE parameters update is described below in figure 6.15.2.1-1: Figure 6.15.2.1-1: Procedure for UE Parameters Update 1) The UDM decides to perform th... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 6.15.2.1 |
5,694 | 5.31.11 Inter-RAT idle mode mobility to and from NB-IoT | Tracking Areas are configured so that they do not contain both NB-IoT and other RATs' cells, so when the UE is changing RAT type to or from NB-IoT while remaining registered with 5GC, the UE will perform the Mobility Registration Update procedure, see clause 5.3.2.3. When the UE is changing RAT type to or from NB-IoT a... | 3GPP TS 23.501 | System architecture for the 5G System (5GS) | SA WG2 | 3GPP Series : 23 , Technical realization ("stage 2") | 5.31.11 |
5,695 | 5.3.1.3 Suspend and resume of the NAS signalling connection | Suspend of the NAS signalling connection can be initiated by the network in EMM-CONNECTED mode when user plane CIoT EPS optimization is used. Resume of the suspended NAS signalling connection is initiated by the UE. In the UE, when user plane CIoT EPS optimization is used: - Upon indication from the lower layers that 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 | 5.3.1.3 |
5,696 | 8.49 Fully Qualified Cause (F-Cause) | Fully Qualified Cause (F- Cause) is coded as depicted in Figure 8.49-1. Figure 8.49-1: Full Qualified Cause (F-Cause) The value of Instance field of the F-Cause IE in a GTPv2 message shall indicate whether the F-Cause field contains RANAP Cause, BSSGP Cause or S1-AP Cause. All spare bits shall be set to zeros by the se... | 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 | 8.49 |
5,697 | 4.7.3 GPRS attach procedure | The GPRS attach procedure is used for the following purposes: - normal GPRS attach, performed by the MS to IMSI attach for GPRS services only. The normal GPRS attach procedure shall be used: - by GPRS MSs in MS operation mode C, independent of the network operation mode; - by GPRS MSs in MS operation modes A or B if th... | 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 |
5,698 | 13.4.1.3.2 Authorization for indirect communication with delegated discovery procedure | This clause covers the scenario where the NF Service Consumer use the SCP to discover and select the NF Service Producer instance that can process the service request. Figure 13.4.1.3.2-1: Authorization and service invocation procedure, for indirect communication with delegated discovery 1. The NF Service Consumer send... | 3GPP TS 33.501 | Security architecture and procedures for 5G System | SA WG3 | 3GPP Series : 33 , Security aspects | 13.4.1.3.2 |
5,699 | 9.3.3 Call proceeding | This message is sent by the network to the calling mobile station to indicate that the requested call establishment information has been received, and no more call establishment information will be accepted. See table 9.57/3GPP TS 24.008[ Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 ] .... | 3GPP TS 24.008 | Mobile radio interface Layer 3 specification; Core network protocols; Stage 3 | CT WG1 | 3GPP Series : 24 , Signalling protocols ("stage 3") - user equipment to network | 9.3.3 |
5,700 | 6.1 General 6.1.3 General rules | In the ASN.1 of this specification, the first bit of a bit string refers to the leftmost bit, unless stated otherwise. Upon reception of a list not using ToAddModList and ToReleaseList structure, the UE shall delete all entries of the list currently in the UE configuration before applying the received list and shall co... | 3GPP TS 38.331 | NR; Radio Resource Control (RRC); Protocol specification | RAN2 | 3GPP Series : 38 , Radio technology beyond LTE | 6.1 |
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