hash
stringlengths
32
32
doc_id
stringlengths
5
12
section
stringlengths
5
1.47k
content
stringlengths
0
6.67M
873bb0765fb9905ca579985e57bc695e
25.901
6.1.4 Solution 3: O&M-based distribution of (P)SI
873bb0765fb9905ca579985e57bc695e
25.901
6.1.4.1 General description
This solution is based on the operator using O&M to update the stored SI/PSI in the neighbouring GERAN cell list of the RNC every time it is modified by O&M in the GERAN cell. This is depicted in figure 3. 1) On installation and initial configuration by O&M of the GERAN neighbouring cell lists in the (C)RNC, the GERAN...
873bb0765fb9905ca579985e57bc695e
25.901
6.1.4.2 Analysis of the solution
Pros: 1) No direct signalling required between UTRAN and GERAN. 2) No impact on the SGSN. Cons: 1) Maybe difficult to ensure that SI/PSI stored in UTRAN is always aligned with that in the GERAN cell.2) Extra impact on 3G NMS and R interface.
873bb0765fb9905ca579985e57bc695e
25.901
6.1.5 Comparative analysis of the solutions
The sub-clauses 6.1.2.2, 6.1.3.2 and 6.1.4.2 are summarised in Table 1. Table 1: Comparative analysis of the proposed solutions. Solution Pros Cons 1. (P)SI provided to the SRNC • No additional Iur load generated. • No additional Iur implementation required. • Synchronised update of SI/PSI is possib...
873bb0765fb9905ca579985e57bc695e
25.901
6.2 UTRAN signalling procedures for NACC
873bb0765fb9905ca579985e57bc695e
25.901
6.2.1 Iur signalling for GERAN SI/PSI transfer from the DRNC to the SRNC
The transfer of SI/PSI over the Iur is relevant to solution 2, described in sub-clause 6.1.3. Two different solutions have been identified on the Iur interface for the transfer of (P)SI from the local DRNC to the SRNC. Use the [RNSAP] RADIO LINK SETUP RESPONSE message. - GERAN SI/PSI could be sent in the "GSM neighbo...
873bb0765fb9905ca579985e57bc695e
25.901
6.2.2 Use of RANAP or O&M for provision of GERAN SI/PSI to RNC
The issue of whether to use O&M or whether to use RANAP signalling to inform the RNC of the GERAN SI/PSI is dependant on how often the GERAN SI/PSI would be changed, i.e. how often the operator optimises GERAN SI/PSI. If the O&M solution were chosen and if it is required to update the SI/PSI very frequently, there may ...
873bb0765fb9905ca579985e57bc695e
25.901
6.2.3.3.1 General
What form should the BSS <=> 3G SGSN response RIM messages take? Three options are analysed in this sub-clause: 1. As per existing agreements for inter-RAT signalling, the host source system - when inter-RAT signalling - adapts to the target system and thus constructs an appropriate RANAP message. 2. The GERAN syst...
873bb0765fb9905ca579985e57bc695e
25.901
7 Agreements and associated Contributions
The main text of the document should start here, after the above clauses have been added.
873bb0765fb9905ca579985e57bc695e
25.901
7.1 UTRAN NACC signalling architecture
The mechanism used to gain access to the GERAN SI/PSI at the SRNC is such that the (P)SI will be stored by the local RNC.
873bb0765fb9905ca579985e57bc695e
25.901
7.2 Format of RIM messages
GERAN does not adapt RIM messages to the target system and are routed via the CN without interpretation. The RNC alone needs to send and receive BSSGP messages within a container within the RANAP message.
873bb0765fb9905ca579985e57bc695e
25.901
7.3 Exchange of Information over Iu
The transfer of RIM information over the Iu from UTRAN, will be performed using a new RANAP procedure – Direct Information Transfer. This generic Class 2 RANAP procedure has been designed such that it will transfer information from the RNC to the CN or vice versa, in unacknowledged mode – maintaining the previously agr...
873bb0765fb9905ca579985e57bc695e
25.901
7.4 Exchange of Information over Iur
The transfer of RIM information over the Iur between the SRNC and the DRNC will be performed using an existing RANAP R5 procedure – [RNSAP] Information Exchange – following an appropriate modification/addition to the procedure.
873bb0765fb9905ca579985e57bc695e
25.901
8 Specification Impact & associated Change Requests
This section is intended to list the affected specifications and the related agreed Change Requests. It also lists the possible new specifications that may be needed for the completion of the Work Task. 8.1 TS 25.401 UTRAN Overall Description 8.1.1 Impacts GERAN System Information Retrieval is introduced as an ad...
873bb0765fb9905ca579985e57bc695e
25.901
9 Project Plan
873bb0765fb9905ca579985e57bc695e
25.901
9.1 Schedule
Date Meeting Scope [expected] Input [expected]Output Sept 2003 RAN#21 RAN Approval TR Approved Mar 2004 RAN#23 RAN Approval TR Approved June 2004 RAN#24 RAN Approval TR Approved
873bb0765fb9905ca579985e57bc695e
25.901
9.2 Work Task Status
Planned Date Milestone Status Annex A: Change history Change history Date TSG # TSG Doc. CR Rev Subject/Comment Old New June 2004 TSG-RAN#24 RP-040186 Presentation of TR for information - 1.0.0 June 2004 TSG-RAN#24 Approved at TSG RAN #24 and placed under Change Contr...
e77d3faff9be1de0a0fd3e5e46ddb1f5
25.807
1 Scope
Some companies have shown their interest in the feasibility of a low output power FDD base station, because it would offer the following advantages: 1. It would not be necessary to use an expensive high power amplifier when a distribution system is connected after the node B. Distribution systems require low input...
e77d3faff9be1de0a0fd3e5e46ddb1f5
25.807
2 References
The following documents contain provisions which, through reference in this text, constitute provisions of the present document. • References are either specific (identified by date of publication, edition number, version number, etc.) or non‑specific. • For a specific reference, subsequent revisions do not a...
e77d3faff9be1de0a0fd3e5e46ddb1f5
25.807
3 Abbreviations
For the purposes of the present document, the following abbreviations apply: 3G Third Generation 3GPP Third Generation Partnership Project BS Base Station CPICH Common Pilot Channel DL Downlink DPCH Dedicated Physical Channel FDD Frequency Division Duplex IE Information Element NBAP Node B Application Part P-...
e77d3faff9be1de0a0fd3e5e46ddb1f5
25.807
4 Definition of low output power
Maximum output power, Pmax, of the base station is the mean power level per carrier measured at the antenna connector in specified reference conditions, as defined in [2], section 6.2.1. The lowest maximum output power that can be set for a base station with the current specifications is 0 dBm. The individual channel c...
e77d3faff9be1de0a0fd3e5e46ddb1f5
25.807
5 Solutions for getting low output power
e77d3faff9be1de0a0fd3e5e46ddb1f5
25.807
5.1 Solution #1
The first solution for getting low output power is described in Annex B. As it can be seen in this annex, this solution implies only one change to the current specifications, which is the following: • TS 25.433 (NBAP protocol specification). A new IE must be created, containing the following information: • Ex...
e77d3faff9be1de0a0fd3e5e46ddb1f5
25.807
5.2 Solution #2
Another way of getting low output power would be to introduce these two parameters, as described in Solution #1, DL and UL gain of the distribution system, into the O&M system. By doing this, the base station would be aware of the presence of this equipment and could therefore adjust its output power, so as to provide...
e77d3faff9be1de0a0fd3e5e46ddb1f5
25.807
6 Conclusions
TSG RAN WG3 has reviewed solution #1 and concluded that, although this could be a feasible solution, it does not seem to be the optimal one. Therefore, a second solution, solution #2, was proposed trying to minimize the changes to the current specifications. As option a) of solution #2 seems to be the simplest solut...
1de16545e4a78484b5596a06529f4503
25.463
1 Scope
The present document specifies the Remote Electrical Tilting Application Part (RETAP) between the implementation specific O&M transport function and the RET Antenna Control unit function of the Node B. It defines the Iuant interface and its associated signaling procedures.
1de16545e4a78484b5596a06529f4503
25.463
2 References
The following documents contain provisions which, through reference in this text, constitute provisions of the present document. • References are either specific (identified by date of publication, edition number, version number, etc.) or non‑specific. • For a specific reference, subsequent revisions do not a...
1de16545e4a78484b5596a06529f4503
25.463
3 Definitions and abbreviations
1de16545e4a78484b5596a06529f4503
25.463
3.1 Definitions
For the purposes of the present document, the following terms and definitions apply. Active alarm: An alarm which has an alarm state that has been raised, but not cleared Alarm: Persistent indication of a fault Alarm code: A code that identifies a specific alarm. The alarm code set is a subset of the return code set...
1de16545e4a78484b5596a06529f4503
25.463
3.2 Abbreviations
For the purposes of the present document, the following abbreviations apply: EP Elementary Procedure HDLC High-Level Data Link Control RET Remote Electrical Tilting RETAP Remote Electrical Tilting Application Part TCP Time-Consuming Procedure
1de16545e4a78484b5596a06529f4503
25.463
4 General
1de16545e4a78484b5596a06529f4503
25.463
4.1 Procedure specification principles
The principle for specifying the procedure logic is to specify the functional behaviour of the RET antenna control unit exactly and completely. The Node B functional behaviour is left unspecified. The following specification principles have been applied for the procedure text in clause 6: - The procedure text discri...
1de16545e4a78484b5596a06529f4503
25.463
4.2 Forwards and backwards compatibility
The forwards and backwards compatibility of all versions of the protocol shall be assured by a mechanism in which all current and further messages will not be changed in the future. These parts can always be decoded regardless of the standard version. New functionalities are added into the specification by introducing...
1de16545e4a78484b5596a06529f4503
25.463
4.3 Multi-antenna units
The RETAP elementary procedures are split into a single-antenna oriented part, a multi-antenna oriented part and a common part for both device types in order to support RET units controlling single- or multi-antenna devices. The RET unit responds, upon request, the number of antennas it controls. All multi-antenna orie...
1de16545e4a78484b5596a06529f4503
25.463
4.4 Integer representation
Multi-octet integer values are transmitted in little endian order. Signed integers are represented as 2-complement values.
1de16545e4a78484b5596a06529f4503
25.463
5 Services expected from signalling transport
RETAP requires an assured in-sequence delivery service from the signalling transport and notification if the assured in-sequence delivery service is no longer available.
1de16545e4a78484b5596a06529f4503
25.463
5.1 Elementary procedure format
Layer 2 provides a full-duplex link for the transmission of RETAP messages. There are two types of RETAP elementary procedures: Class 1: Initiating messages are sent either from the primary to a secondary device, or from a secondary to the primary device, in order to initiate some action within the receiving device. ...
1de16545e4a78484b5596a06529f4503
25.463
5.1.1 Initiating message
The data part of an initiating message may contain parameters as specified in clause 6 of this TS.
1de16545e4a78484b5596a06529f4503
25.463
5.1.2 Response message
Elementary procedures shall, unless otherwise specified, provide a response message within 1 second. The response time is measured from the time the message frame was received by the transport layer to the time the response message is ready for transfer by the transport layer. If the class1 elementary procedure reques...
1de16545e4a78484b5596a06529f4503
25.463
6 Control elementary procedures
1de16545e4a78484b5596a06529f4503
25.463
6.1 State model
The state model describing the RET device is shown in figure 6.1 with procedures written in italic. The relation to the connection state model for layer 2 can be found in [3]. Figure 6.1: State model for the RET device If an application software is not missing the RET device enters the state OperatingMode. If ...
1de16545e4a78484b5596a06529f4503
25.463
6.2 General procedure handling
1de16545e4a78484b5596a06529f4503
25.463
6.2.1 Alarms
When a fault is detected, the corresponding alarm state shall be changed to state raised by the secondary device. When the fault no longer exists, the corresponding alarm state shall be changed to state cleared by the secondary device. Alarm changes are reported through the AlarmIndication or AntennaAlarmIndication ele...
1de16545e4a78484b5596a06529f4503
25.463
6.2.2 Procedure message interpretation
The following message interpretation rules shall apply to a secondary device in the order mentioned: - Any message shorter than 3 octets shall be disregarded. In case of Multi-Antenna-Procedures any messages shorter than 4 octets shall be disregarded.; - If a message has a length inconsistent with its “Number of data...
1de16545e4a78484b5596a06529f4503
25.463
6.2.3 Parallel procedure handling
The secondary device shall support parallel execution of in maximum one additional EP only in parallel to one of the Time-Consuming Procedures defined in table 6.2.3.1: Table 6.2.3.1: Definition of TCPs and the execution of procedures in parallel to a TCP Elementary Procedure TCP Execution in parallel to a TCP Com...
1de16545e4a78484b5596a06529f4503
25.463
6.3 Overview of elementary procedures
The set of elementary procedures for RET antenna control provides procedure-oriented instructions. An overview of the procedures is given in annex D. Table 6.3.1 lists all common elementary procedures described in subclause 6.5. Table 6.3.2 lists all elementary procedures specific for single-antenna device types descri...
1de16545e4a78484b5596a06529f4503
25.463
6.4 Description of elementary procedures
Table 6.4.1: Description of elementary procedures Name: The name used to refer to the elementary procedure Code: The code is defined here. All other code references are informative Issued by: Primary device or secondary device Procedure class: Class 1 or Class 2 DownloadMode state: Defines whether the procedu...
1de16545e4a78484b5596a06529f4503
25.463
6.5 Common elementary procedures
1de16545e4a78484b5596a06529f4503
25.463
6.5.1 Reset Software
Table 6.5.1.1: Elementary procedure Reset Software Name: ResetSoftware Code: 0x03 Issued by: Primary device Procedure class: 1 DownloadMode state. Yes Power mode: Low Table 6.5.1.2: Initiating message parameters and format for Reset Software Number Length Type Description None 0 octets None No da...
1de16545e4a78484b5596a06529f4503
25.463
6.5.2 Get Alarm Status
Table 6.5.2.1: Elementary procedure Get Alarm Status Name: GetAlarmStatus Code: 0x04 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.5.2.2: Initiating message parameters and format for Get Alarm Status Number Length Type Description None 0 octets None N...
1de16545e4a78484b5596a06529f4503
25.463
6.5.3 Get Information
Table 6.5.3.1: Elementary procedure Get Information Name: GetInformation Code: 0x05 Issued by: Primary device Procedure class: 1 DownloadMode state: Yes Power mode: Low Table 6.5.3.2: Initiating message parameters and format for Get Information Number Length Type Description None 0 octets None No...
1de16545e4a78484b5596a06529f4503
25.463
6.5.4 Clear Active Alarms
Table 6.5.4.1: Elementary procedure Clear Active Alarms Name: ClearActiveAlarms Code: 0x06 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.5.4.2: Initiating message parameters and format for Clear Active Alarms Number Length Type Description None 0 octets...
1de16545e4a78484b5596a06529f4503
25.463
6.5.5 Alarm Subscribe
Table 6.5.5.1: Elementary procedure Alarm Subscribe Name: AlarmSubscribe Code: 0x12 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.5.5.2: Initiating message parameters and format for Alarm Subscribe Number Length Type Description None 0 octets None No ...
1de16545e4a78484b5596a06529f4503
25.463
6.5.6 Self Test
Table 6.5.6.1: Elementary procedure Self Test Name: SelfTest Code: 0x0A Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: High Table 6.5.6.2: Initiating message parameters and format for Self Test Number Length Type Description None 0 octets None No data carried T...
1de16545e4a78484b5596a06529f4503
25.463
6.5.7 Void
1de16545e4a78484b5596a06529f4503
25.463
6.5.8 Void
1de16545e4a78484b5596a06529f4503
25.463
6.5.9 Read User Data
Table 6.5.9.1: Elementary procedure Read User Data Name: ReadUserData Code: 0x10 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.5.9.2: Initiating message parameters and format for Read User Data Number Length Type Description 1 2 octets Unsigned integer...
1de16545e4a78484b5596a06529f4503
25.463
6.5.10 Write User Data
Table 6.5.10.1: Elementary procedure Write User Data Name: WriteUserData Code: 0x11 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.5.10.2: Initiating message parameters and format for Write User Data Number Length Type Description 1 2 octets Unsigned in...
1de16545e4a78484b5596a06529f4503
25.463
6.5.11 Download Start
Table 6.5.11.1: Elementary procedure Download Start Name: DownloadStart Code: 0x40 Issued by: Primary device Procedure class: 1 DownloadMode state: Yes Power mode: Low Table 6.5.11.2: Initiating message parameters and format for Download Start Number Length Type Description None 0 octets None No ...
1de16545e4a78484b5596a06529f4503
25.463
6.5.12 Download Application
Table 6.5.12.1: Elementary procedure Download Application Name: DownloadApplication Code: 0x41 Issued by: Primary device Procedure class: 1 DownloadMode state: Yes Power mode: Low Table 6.5.12.2: Initiating message parameters and format for Download Application Number Length Type Description 1 Less...
1de16545e4a78484b5596a06529f4503
25.463
6.5.13 Download End
Table 6.5.13.1: Elementary procedure Download End Name: DownloadEnd Code: 0x42 Issued by: Primary device Procedure class: 1 DownloadMode state: Yes Power mode: Low Table 6.5.13.2: Initiating message parameters and format for Download End Number Length Type Description None 0 octets None No data c...
1de16545e4a78484b5596a06529f4503
25.463
6.5.14 Vendor specific procedure
Table 6.5.14.1: Elementary procedure Vendor Specific Procedure Name: VendorSpecificProcedure Code: 0x90 Issued by: Vendor specific Procedure class: Vendor specific DownloadMode state: Vendor specific Power mode: Vendor specific Table 6.5.14.2: Initiating message parameters and format for Vendor Specific ...
1de16545e4a78484b5596a06529f4503
25.463
6.6 Single-antenna elementary procedures
1de16545e4a78484b5596a06529f4503
25.463
6.6.1 Calibrate
Table 6.6.1.1: Elementary procedure Calibrate Name: Calibrate Code: 0x31 Issued by: Primary Device Procedure class: 1 DownloadMode state: No Power mode: High Table 6.6.1.2: Initiating message parameters and format for Calibrate Number Length Type Description None 0 octets None No data carried ...
1de16545e4a78484b5596a06529f4503
25.463
6.6.2 Send Configuration Data
Table 6.6.2.1: Elementary procedure Send Configuration Data Name: SendConfigurationData Code: 0x32 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.6.2.2: Initiating message parameters and format for Send Configuration Data Number Length Type Description 1 ...
1de16545e4a78484b5596a06529f4503
25.463
6.6.3 Set Tilt
Table 6.6.3.1: Elementary procedure Set Tilt Name: SetTilt Code: 0x33 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: High Table 6.6.3.2: Initiating message parameters and format for Set Tilt Number Length Type Description 1 2 octets Signed integer Tilt value Ta...
1de16545e4a78484b5596a06529f4503
25.463
6.6.4 Get Tilt
Table 6.6.4.1: Elementary procedure Get Tilt Name: GetTilt Code: 0x34 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.6.4.2: Initiating message parameters and format for Get Tilt Number Length Type Description None 0 octets None No data carried Table...
1de16545e4a78484b5596a06529f4503
25.463
6.6.5 Alarm Indication
Table 6.6.5.1: Elementary procedure Alarm Indication Name: AlarmIndication Code: 0x07 Issued by: Secondary device Procedure class: 2 DownloadMode state: No Power mode: Low Table 6.6.5.2: Initiating message parameters and format for Alarm Indication Number Length Type Description 2 i – 1 1 octet Un...
1de16545e4a78484b5596a06529f4503
25.463
6.6.6 Set Device Data
Table 6.6.6.1: Elementary procedure Set Device Data Name: SetDeviceData Code: 0x0E Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.6.6.2: Initiating message parameters and format for Set Device Data Number Length Type Description 1 1 octet Unsigned integ...
1de16545e4a78484b5596a06529f4503
25.463
6.6.7 Get Device Data
Table 6.6.7.1: Elementary procedure Get Device Data Name: GetDeviceData Code: 0x0F Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.6.7.2: Initiating message parameters and format for Get Device Data Number Length Type Description 1 1 octet Unsigned integ...
1de16545e4a78484b5596a06529f4503
25.463
6.7 Multi-antenna elementary procedures
1de16545e4a78484b5596a06529f4503
25.463
6.7.1 Antenna Calibrate
Table 6.7.1.1: Elementary procedure Antenna Calibrate Name: AntennaCalibrate Code: 0x80 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: High Table 6.7.1.2: Initiating message parameters and format for Antenna Calibrate Number Length Type Description 1 1 octet Unsign...
1de16545e4a78484b5596a06529f4503
25.463
6.7.2 Antenna Set Tilt
Table 6.7.2.1: Elementary procedure Antenna Set Tilt Name: AntennaSetTilt Code: 0x81 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: High Table 6.7.2.2: Initiating message parameters and format for Antenna Set Tilt Number Length Type Description 1 1 octet Unsigned i...
1de16545e4a78484b5596a06529f4503
25.463
6.7.3 Antenna Get Tilt
Table 6.7.3.1: Elementary procedure Antenna Get Tilt Name: AntennaGetTilt Code: 0x82 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.7.3.2: Initiating message parameters and format for Antenna Get Tilt Number Length Type Description 1 1 octet Unsigned in...
1de16545e4a78484b5596a06529f4503
25.463
6.7.4 Antenna Set Device Data
Table 6.7.4.1: Elementary procedure Antenna Set Device Data Name: AntennaSetDeviceData Code: 0x83 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.7.4.2: Initiating message parameters and format for Antenna Set Device Data Number Length Type Description 1 ...
1de16545e4a78484b5596a06529f4503
25.463
6.7.5 Antenna Get Device Data
Table 6.7.5.1: Elementary procedure Antenna Get Device Data Name: AntennaGetDeviceData Code: 0x84 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.7.5.2: Initiating message parameters and format for Antenna Get Device Data Number Length Type Description 1 ...
1de16545e4a78484b5596a06529f4503
25.463
6.7.6 Antenna Alarm Indication
Table 6.7.6.1: Elementary procedure Antenna Alarm Indication Name: AntennaAlarmIndication Code: 0x85 Issued by: Secondary device Procedure class: 2 DownloadMode state: No Power mode: Low Table 6.7.6.2: Initiating message parameters and format for Antenna Alarm Indication Number Length Type Descriptio...
1de16545e4a78484b5596a06529f4503
25.463
6.7.7 Antenna Clear Active Alarms
Table 6.7.7.1: Elementary procedure Antenna Clear Active Alarms Name: AntennaClearActiveAlarms Code: 0x86 Issued by: Secondary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.7.7.2: Initiating message parameters and format for Antenna Clear Active Alarms Number Length Type De...
1de16545e4a78484b5596a06529f4503
25.463
6.7.8 Antenna Get Alarm Status
Table 6.7.8.1: Elementary procedure Antenna Get Alarm Status Name: AntennaGetAlarmStatus Code: 0x87 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.7.8.2: Initiating message parameters and format for Antenna Get Alarm Status Number Length Type Description ...
1de16545e4a78484b5596a06529f4503
25.463
6.7.9 Antenna Get Number Of Antennas
Table 6.7.9.1: Elementary procedure Antenna Get Number Of Antennas Name: AntennaGetNumberOfAntennas Code: 0x88 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.7.9.2: Initiating message parameters and format for Antenna Get Number Of Antennas Number Length Ty...
1de16545e4a78484b5596a06529f4503
25.463
6.7.10 Antenna Send Configuration Data
Table 6.7.10.1: Elementary procedure Antenna Send Configuration Data Name: AntennaSendConfigurationData Code: 0x89 Issued by: Primary device Procedure class: 1 DownloadMode state: No Power mode: Low Table 6.7.10.2: Initiating message parameters and format for Antenna Send Configuration Data Number Leng...
1de16545e4a78484b5596a06529f4503
25.463
7 Unknown elementary procedures
Void. Annex A (normative): Return codes for secondary devices Table A.1: Return Codes for Secondary Devices Code Meaning Alarm DownloadMode state 0x00 OK Normal response X 0x02 Motor Jam Motor cannot move X 0x03 ActuatorJam Actuator jam has been detected. No movement of the actuator, but moveme...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
1 Scope
Editor's note: clean up the scope in each part. The present document is one of a multi-part TS, and contains objectives, requirements and test cases that are specific to the Lawful Interception elements of a 3GPP network: Administration Function (ADMF), Point of Interception (POI), Triggering Function (TF), Location A...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
2 References
The following documents contain provisions which, through reference in this text, constitute provisions of the present document. - References are either specific (identified by date of publication, edition number, version number, etc.) or non‑specific. - For a specific reference, subsequent revisions do not apply. -...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
3 Definitions of terms, symbols and abbreviations
This clause and its three (sub) clauses are mandatory. The contents shall be shown as "void" if the TS/TR does not define any terms, symbols, or abbreviations.
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
3.1 Terms
For the purposes of the present document, the terms given in TR 21.905 [1] and the following apply. A term defined in the present document takes precedence over the definition of the same term, if any, in TR 21.905 [1]. Definition format (Normal) <defined term>: <definition>. example: text used to clarify abstract r...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
3.2 Symbols
For the purposes of the present document, the following symbols apply: Symbol format (EW) <symbol> <Explanation>
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
3.3 Abbreviations
For the purposes of the present document, the abbreviations given in TR 21.905 [1] and the following apply. An abbreviation defined in the present document takes precedence over the definition of the same abbreviation, if any, in TR 21.905 [1]. Abbreviation format (EW) <ABBREVIATION> <Expansion>
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
4 Overview
4.1 Approach This TS was developed based on the guidance and methodology described in 3GPP TR 33.916 "Security Assurance Methodology (SECAM) for 3GPP network products" [3]. 3GPP has organized SCAS documents by publishing one TS per architectural network element. In contrast, we take a different approach in the LI spa...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
5 Prerequisites
5.1 Network administration There are multiple privilege levels in the network. At a minimum, there are at least two: • Lawful Interception privileged • Non-LI privileged Editor's Note: here are at least three categories: "root," "day-to-day operations," LI Deployments in the field may split access mor...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
6.1.1 System Hardening
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
6.1.2 Authentication and Access Control
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
6.1.3 POI Implementation
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
6.1.4 Transport/API Security
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
6.1.5 Virtualisation
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
7 Additional NF-Embedded-LI SCAS
7.1 Introduction The present clause contains requirements and test cases that pertain to NF-Embedded LI elements, such as POIs, TFs. 7.2 Requirements The following TS 33.126 requirements are tested in the present document: TS 33.126 R6.6-30: The CSP shall ensure that non-authorized personnel or processes (includi...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
7.3.1.4 Unauthorized detection of LI, CPU utilization side-channel attack method two
Requirement Name: Undetectability by Non-Authorized Parties. Requirement Reference: TS 33.126 R6.6-30. Requirement Description: The CSP shall ensure that non-authorized personnel or processes (including automated or Artificial Intelligence based systems) that are part of the service cannot detect that interception is...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
7.3.1.10 LI_X1 HTTP connection is disallowed
Requirement Name: Undetectability by Non-Authorized Parties. Requirement Reference: TS 33.126 R6.6-30. Requirement Description: The CSP shall ensure that non-authorized personnel or processes (including automated or Artificial Intelligence based systems) that are part of the service cannot detect that interception is...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
7.3.1.11 LI_X1 is protected by TLS
Editor's Note: Is there a way to verify the layer 3/4 handshake only, without using any meaningful application layer message as a first step - using a simple testing harness/simulator, that doesn't necessarily have any layer 7/app layer knowledge. Requirement Name: Undetectability by Non-Authorized Parties. Requirem...
b4c51a57e104b0092e2dd0e80dd56a84
33.129-2
7.3.1.12 LI_X1 is protected by TLS - failure for other reasons
Editor's Note: Is there a way to verify the layer 3/4 handshake only, without using any meaningful application layer message as a first step - using a simple testing harness/simulator, that doesn't necessarily have any layer 7/app layer knowledge. Requirement Name: Undetectability by Non-Authorized Parties. Requirem...