ETSI TS 102 261-2003 Open Network Services and Architecture (ONSA) Abstract architecture and reference points definition Mapping of functional architectures and requirements for NG_1.pdf

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1、 ETSI TS 102 261 V1.1.1 (2003-09)Technical Specification Open Network Services and Architecture (ONSA);Abstract architecture and reference points definition;Mapping of functional architectures and requirements for NGNETSI ETSI TS 102 261 V1.1.1 (2003-09) 2 Reference DTS/SPAN-140006 Keywords architec

2、ture, configuration, functional, internet, network, protocol, telephony, VoIP ETSI 650 Route des Lucioles F-06921 Sophia Antipolis Cedex - FRANCE Tel.: +33 4 92 94 42 00 Fax: +33 4 93 65 47 16 Siret N 348 623 562 00017 - NAF 742 C Association but non lucratif enregistre la Sous-Prfecture de Grasse (

3、06) N 7803/88 Important notice Individual copies of the present document can be downloaded from: http:/www.etsi.org The present document may be made available in more than one electronic version or in print. In any case of existing or perceived difference in contents between such versions, the refer

4、ence version is the Portable Document Format (PDF). In case of dispute, the reference shall be the printing on ETSI printers of the PDF version kept on a specific network drive within ETSI Secretariat. Users of the present document should be aware that the document may be subject to revision or chan

5、ge of status. Information on the current status of this and other ETSI documents is available at http:/portal.etsi.org/tb/status/status.asp If you find errors in the present document, send your comment to: editoretsi.org Copyright Notification No part may be reproduced except as authorized by writte

6、n permission. The copyright and the foregoing restriction extend to reproduction in all media. European Telecommunications Standards Institute 2003. All rights reserved. DECTTM, PLUGTESTSTM and UMTSTM are Trade Marks of ETSI registered for the benefit of its Members. TIPHONTMand the TIPHON logo are

7、Trade Marks currently being registered by ETSI for the benefit of its Members. 3GPPTM is a Trade Mark of ETSI registered for the benefit of its Members and of the 3GPP Organizational Partners. ETSI ETSI TS 102 261 V1.1.1 (2003-09) 3 Contents Intellectual Property Rights7 Foreword.7 Introduction 7 1

8、Scope 8 2 References 8 3 Definitions and abbreviations.11 3.1 Definitions11 3.2 Abbreviations .16 4 Basic concepts18 4.1 Overview of the NGN project 1 study18 4.2 Functional planes19 4.3 Domains and functional groups20 4.4 Functional decomposition of the IP control plane22 5 Overview of the UMTS arc

9、hitecture22 5.1 The Core Network (CN) entities 22 5.1.1 Entities common to the PS and CS domains.22 5.1.1.1 The Home Subscriber Server (HSS) .22 5.1.1.1.1 The Home Location Register (HLR) .23 5.1.1.1.2 The Authentication Centre (AuC) .23 5.1.1.1.3 HSS logical functions 24 5.1.2 Entities of the CS do

10、main .25 5.1.3 Entities of the PS domain25 5.1.3.1 Serving GPRS Support Node (SGSN) 25 5.1.3.2 Gateway GPRS Support Node (GGSN)26 5.1.3.3 Border Gateway (BG) .26 5.2 The Mobile Station (MS) .26 5.3 IP based Multimedia (IM) Core Network (CN) Subsystem entities.26 5.3.1 Call Session Control Function (

11、CSCF).26 5.3.2 Media Gateway Control Function (MGCF)26 5.3.3 IP based Multimedia - Media Gateway Function (IM-MGW) .27 5.3.4 Multimedia Resource Function Controller (MRFC).27 5.3.5 Multimedia Resource Function Processor (MRFP) 27 5.3.6 Subscription Locator Function (SLF) .27 5.3.7 Breakout Gateway C

12、ontrol Function (BGCF) 27 5.3.8 Application Server (AS) .28 5.4 Signalling Gateway Function (SGW).28 5.5 IP related UMTS architectural configuration .28 5.5.1 Configuration of IM Subsystem entities .28 5.5.2 Configuration of signalling gateway function 30 5.6 PLMN basic interfaces and reference poin

13、ts30 5.6.1 Interfaces internal to the Core Network30 5.6.1.1 Interfaces internal to the PS domain31 5.6.1.1.1 Interface between SGSN and HLR (Gr-interface).31 5.6.1.1.2 Interface between SGSN and GGSN (Gn- and Gp-interface) .31 5.6.1.1.3 Signalling Path between GGSN and HLR (Gc-interface) .31 5.6.1.

14、1.4 Interface between SGSN and EIR (Gf-interface) 31 5.6.2 IM Subsystem reference points.31 5.6.2.1 Reference Point HSS - CSCF (Cx Reference Point) .31 5.6.2.2 Reference Point CSCF - UE (Gm Reference Point)32 5.6.2.3 Reference Point MGCF - IM-MGW (Mc Reference Point)32 5.6.2.4 Reference Point MGCF -

15、 CSCF (Mg Reference Point) 32 5.6.2.5 Reference Point CSCF - Multimedia IP networks (Mm Reference Point)32 5.6.2.6 Reference Point CSCF - MRFC (Mr Reference Point) .32 ETSI ETSI TS 102 261 V1.1.1 (2003-09) 4 5.6.2.7 Reference Point MRFC - MRFP (Mp Reference Point)33 5.6.2.8 Reference Point CSCF - CS

16、CF (Mw Reference Point).33 5.6.2.9 Reference Point GGSN-PCF (Go Reference Point)33 5.6.2.10 Reference Point CSCF - BGCF (Mi reference point) .33 5.6.2.11 Reference Point BGCF - MGCF (Mj reference point)33 5.6.2.12 Reference Point BGCF - BGCF (Mk reference point)33 5.6.2.13 Reference Point CSCF- SLF

17、(Dx reference point)33 5.6.2.14 Reference Point to IPv6 network services (Mb reference point).33 5.6.2.15 Reference Point CSCF - AS (ISC reference point) .33 5.6.2.16 Reference Point HSS - SIP AS or OSA SCS (Sh reference point)34 5.6.2.17 Reference Point HSS - CAMEL IM-SSF (Si reference point)34 5.7

18、 Reference points between the PLMN and other networks .34 5.7.1 Reference point fixed networks - MSC.34 5.7.2 Reference point GGSN - packet data networks (Gi reference point)34 6 Mapping the UMTS IMS architecture onto the TIPHON Call Control Architecture 34 6.1 Scenario 0.34 6.2 Scenario 1.36 6.3 Sc

19、enario 2.37 7 Multiservice switching forum: MULTI-PLANE system architecture38 7.1 Scope of the architecture 38 7.2 Functions and definitions .40 7.2.1 Adaptation Plane description and functions40 7.2.1.1 Logical Port Function (LPF) .41 7.2.2 Switching Plane description and functions .41 7.2.2.1 Virt

20、ual Switch Function (VSF) .42 7.2.3 Description of Functions spanning the Switching and Adaptation Planes42 7.2.3.1 Partitioning Function (PF).42 7.2.4 Control Plane description and functions .42 7.2.4.1 Network Edge Control Function (NECF) .43 7.2.4.2 Virtual Switch Control Function (VSCF) .43 7.2.

21、4.3 Bearer Control Function (BCF).43 7.2.4.4 Network Service Instance Control Function (NSICF) 44 7.2.4.5 Signalling Gateway Function (SGF) .44 7.2.5 Application Plane description.45 7.2.5.1 Service Feature Gateway Function (SFGF) 45 7.2.6 Management Plane description and functions 46 7.2.6.1 Super-

22、ordinate Management Function (SupMF).47 7.2.6.2 Sub-ordinate Management Function (SubMF)47 7.3 Interfaces and reference points.47 7.3.1 Inter-plane interactions .47 7.3.1.1 Adaptation Plane - Control Plane47 7.3.1.2 Switching Plane - Control Plane .48 7.3.1.3 Switching Plane - Adaptation Plane48 7.3

23、.1.4 Control Plane - Application Plane.48 7.3.1.5 Management Plane- Switching and Adaptation Plane 49 7.3.1.6 Management - Control Plane.49 7.3.2 Intra-plane interactions .49 7.3.2.1 Control Plane.49 7.3.2.1.1 Control - Control Plane, between same functions .49 7.3.2.1.2 Control Plane, between diffe

24、rent functions .50 7.3.2.2 Switching - Switching Plane (between same functions ) 51 7.3.2.3 Adaptation - Adaptation Plane (between same functions) 51 8 Mapping the MSF: MULTI-PLANE system architecture onto the TIPHON call control architecture.51 9 Conclusion54 Annex A (informative): Business roles r

25、eference configuration 55 Annex B (informative): non-IP based UMTS architecture.56 ETSI ETSI TS 102 261 V1.1.1 (2003-09) 5 B.1 Basic PLNM configuration 56 B.1a Configuration of CAMEL entities58 B.2 Functional entities 58 B.2.1 General entities.58 B.2.1.1 The Visitor Location Register (VLR) .58 B.2.1

26、.2 The Equipment Identity Register (EIR)59 B.2.2 Entities of the CS domain.59 B.2.2.1 The Mobile-services Switching Centre (MSC).59 B.2.2.1.1 MSC Server.60 B.2.2.1.2 Circuit Switched - Media Gateway Function (CS-MGW) 60 B.2.2.2 The Gateway MSC (GMSC).60 B.2.2.2.1 Gateway MSC Server (GMSC Server) .60

27、 B.2.2.3 The Interworking Function (IWF) 61 B.2.3 CAMEL entities .61 B.2.3.1 GSM Service Control Function (gsmSCF) .61 B.2.3.2 GSM Service Switching Function (gsmSSF)61 B.2.3.3 GSM Specialized Resource Function (gsmSRF) 61 B.2.3.4 GPRS Service Switching Function (gprsSSF) 61 B.2.4 Number portability

28、 specific entities .61 B.2.4.1 IN-based solution: Number Portability Database (NPDB) .61 B.2.4.2 Signalling Relay-based solution: Mobile Number Portability/Signalling Relay function (MNP-SRF)62 B.3 PLMN basic interfaces and reference points62 B.3.1 Interfaces between Mobile Station and the Fixed Inf

29、rastructure62 B.3.1.1 Interface between Mobile Station and Base Station System (Um-interface) 62 B.3.1.2 Interface between User Equipment and Radio Network System (Uu-interface) 62 B.3.2 Interface between the Core Network and the Access Network 62 B.3.2.1 Interfaces between the CS domain and the Acc

30、ess Network62 B.3.2.1.1 Interface between the MSC and Base Station System (A-interface).62 B.3.2.1.2 Interface between the MSC and Base Station System (Iu_CS interface)63 B.3.2.1.3 Interface between the MSC and RNS (Iu_CS interface).63 B.3.2.2 Interfaces between the PS domain and the Access Network

31、63 B.3.2.2.1 Interface between SGSN and BSS (Gb-interface).63 B.3.2.2.2 Interface between SGSN and BSS (Iu_PS-interface)63 B.3.2.2.3 Interface between SGSN and RNS (Iu_PS-interface) .63 B.3.3 Interfaces internal to the Core Network .64 B.3.3.1 Interfaces internal to the CS domain.64 B.3.3.1.1 Interf

32、ace between the MSC server and its associated VLR (B-interface) .64 B.3.3.1.2 Interface between the HLR and the MSC server (C-interface) .64 B.3.3.1.3 Interface between the HLR and the VLR (D-interface) 64 B.3.3.1.4 Interface between MSC servers (E-interface) .64 B.3.3.1.5 Interface between MSC serv

33、er and EIR (F-interface).65 B.3.3.1.6 Interface between VLRs (G-interface)65 B.3.3.1.7 Reference point (G)MSC server - CS-MGW (Mc Reference Point).65 B.3.3.1.8 Reference Point MSC Server - GMSC Server (Nc Reference Point)65 B.3.3.1.9 Reference Point CS-MGW - CS-MGW (Nb Reference Point) .65 B.3.3.2 I

34、nterfaces used by CS-domain 65 B.3.3.2.1 Interface between MSC/VLR and SGSN (Gs-interface).65 B.3.3.2.2 Interface between HLR and AuC (H-Interface) 66 B.3.3.3 CAMEL-specific interfaces 66 B.3.3.3.1 GMSC - gsmSSF interface66 B.3.3.3.2 gsmSSF - gsmSCF interface .66 B.3.3.3.3 MSC - gsmSSF interface.66

35、B.3.3.3.4 gsmSCF - HLR interface.66 B.3.3.3.5 gsmSCF - gsmSRF interface.66 B.3.3.3.6 MSC - gsmSCF interface 66 B.3.3.3.7 SGSN - gprsSSF interface.66 B.3.3.3.8 gprsSSF - gsmSCF interface .66 B.3.3.4 Number portability specific interfaces67 B.3.3.4.1 IN-based solution 67 B.3.3.4.1.1 NPDB to MSC interf

36、ace67 ETSI ETSI TS 102 261 V1.1.1 (2003-09) 6 B.3.3.4.2 Signalling Relay-based solution67 B.3.3.4.2.1 GMSC to MNP-SRF interface.67 B.3.3.4.2.2 MNP-SRF to HLR interface 67 Annex C (informative): TIPHON Release 3 functional architecture.68 C.1 Introduction to the functional layers 68 C.1.1 The service

37、s functional layer69 C.1.2 The Service Control functional layer70 C.1.3 The Call Control functional layer.71 C.1.4 The Bearer Control functional layer.71 C.1.5 The Media Control functional layer .72 C.2 Definition of reference points.72 C.2.1 SC-Service reference points .73 C.2.2 SC-SC reference poi

38、nts 74 C.2.3 CC-SC reference points74 C.2.4 CC/BC-CC/BC reference points.74 C.2.5 MC-BC reference points 74 C.2.6 MC-MC reference points74 C.2.7 TR-MC reference points.75 C.3 Introduction to the functional layers 75 C.3.1 Transport service functional layer 75 C.3.2 Transport control layer .75 C.3.3

39、Transport flow layer .76 C.4 Definition of transport reference point.76 C.4.1 Transport control - transport service reference points77 C.4.2 Transport control - transport control reference points 77 C.4.3 Transport flow - transport control reference points77 Annex D (informative): Bibliography.78 Hi

40、story 80 ETSI ETSI TS 102 261 V1.1.1 (2003-09) 7 Intellectual Property Rights IPRs essential or potentially essential to the present document may have been declared to ETSI. The information pertaining to these essential IPRs, if any, is publicly available for ETSI members and non-members, and can be

41、 found in ETSI SR 000 314: “Intellectual Property Rights (IPRs); Essential, or potentially Essential, IPRs notified to ETSI in respect of ETSI standards“, which is available from the ETSI Secretariat. Latest updates are available on the ETSI Web server (http:/webapp.etsi.org/IPR/home.asp). Pursuant

42、to the ETSI IPR Policy, no investigation, including IPR searches, has been carried out by ETSI. No guarantee can be given as to the existence of other IPRs not referenced in ETSI SR 000 314 (or the updates on the ETSI Web server) which are, or may be, or may become, essential to the present document

43、. Foreword This Technical Specification (TS) has been produced by ETSI Technical Committee Services and Protocols for Advanced Networks (SPAN). Introduction The approach being taken to standardization in NGN is as six projects: NGN1: Architecture, NGN2: QoS, NGN3: Service Platforms, NGN4: Network Ma

44、nagement, NGN5: Lawful Interception, NGN6: Security. Its aim is to allow much greater scope for competition through innovation in the design of equipment and services. Its aim is also to provide adequate standardization to facilitate the operation of services across interconnected networks, even net

45、works that use different technologies. The present document presents the initial core set of Service Capabilities envisaged to be required to enable service providers to offer services on TIPHON and UMTS networks that may safely interwork with existing PSTN and ISDN services while enabling more adva

46、nced services to be subsequently developed. ETSI ETSI TS 102 261 V1.1.1 (2003-09) 8 1 Scope The present document is an analysis of the mapping of concrete functional architectures as defined in UMTS IMS and MSF to the TIPHON release 3.0 call control architecture. Whilst developing a generic NGN refe

47、rence model, reference points and the requirements for protocols and interfaces for interconnection are identified. The objective of the present document is to verify implementation oriented architectures against the Release 3 architecture, as developed in EP TIPHON TS 101 314 6. This will highlight

48、 if there are incompatibilities between the architectures. This study will use the framework for interconnection reference points as defined by ITU-T SG13 in ITU-T Recommendation Y.140 50. Ideally, the generic reference model defines a reference architecture, which is technology independent. A funct

49、ional architecture for NGN study approaches this subject by considering a decomposed call control reference model and collecting functional entities into a simplified logical structure, and referencing possible implementations. 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 and/or edition number or version number) or non-specific. For a specific reference, subsequent revisions do not apply. For a no

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