Slide title In CAPITALS 50 pt Slide subtitle 32 pt Converged SAE / NGN Architecture The ScaleNet Architecture R. Keller, A. Schieder, Ericsson
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture ScaleNet Approach ScaleNet addresses Fixed Mobile Convergence (FMC) on service and network layer A combination of SAE and NGN is envisioned Service set is expected to embrace voice and video- telephony, Mobile TV, plain Internet access and multi- player online gaming Common infrastructure is supposed to be IP based
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture High-level ScaleNet Architecture
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture RAN Legend of symbols Y RAT [Single] Radio Access Network RAT may not be shown for simplicity RAN RAT Multi-Radio Access Network RAT Multi-Stage Radio Access: combination of wired and wireless links to forward data. E.g. Multi-hop system based on the same technology or a mixture of different radio technologies. Mesh network: more than one possibility to forward data from the user to the network RAT X Bearer service / connectivity: provides pure point-to-point link Provides more than connectivity: e.g. Mobility support, Authentication, QoS, Security Session Continuity / Terminal Mobility required
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture ScaleNet working assumption: No Multiple IMS Domains, but … GERAN I-WLAN UTRAN PS CN CS CN WLANDSL IMS RoutingIMS Service Internet IMS RoutingIMS Service CS&PS VCC WLAN ‘CN’
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture ScaleNet working assumption: Single IMS Domain GERAN UTRAN PS CN CS CN WLANDSL IMS RoutingIMS Service Internet CS&PS VCC In the following, we assume a single IMS domain. I-WLANWLAN ‘CN’
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Example: Inclusion of WiMAX GERAN UTRAN PS CN CS CN WLANDSL IMS RoutingIMS Service Internet CS&PS VCC WiMAX I-WLANWLAN ‘CN’ WiMAX ‘CN’
Slide title In CAPITALS 50 pt Slide subtitle 32 pt ScaleNet Architecture ScaleNet work areas are colored
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Inclusion of LTE/SAE GERAN UTRAN PS CN CS CN WLANDSL IMS RoutingIMS Service Internet E-UTRAN E-PC PSVCC CS WiMAX I-WLANWLAN ‘CN’ WiMAX ‘CN’ Now session continuity between PS accesses is enabled.
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Inclusion of Multi-Stage (Alt 1 – own ‘CN’) GERAN UTRAN PS CN CS CN WLANDSL IMS RoutingIMS Service Internet E-UTRAN E-PC PSVCC CS WiMAX I-WLANWLAN ‘CN’ WiMAX ‘CN’ Multi-Stage‘CN’
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Inclusion Multi-Stage (Alt 2 – E-CN) GERAN UTRAN PS CN CS CN WLANDSL IMS RoutingIMS Service Internet E-UTRAN E-PC PSVCC CS WiMAX I-WLANWLAN ‘CN’ WiMAX ‘CN’ Multi-Stage
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture UTRAN PS CN Further Evolution (Alt 1: “All to E-CN”) Network Convergence GERAN UTRAN CS CN WLANDSL IMS RoutingIMS Service Internet E-UTRAN PS (1)VCC (1) CS WiMAX I-WLAN Multi-Stage E-CN Ethernet Switch (or IP Router) 3GPP Policy Control Access Node / Fnkt. Access Gateway (possibly CP and UP split) (1) Depending on terminal capabilities
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Evolved CN Further Evolution (Alt 2: NGN Driven) Network Convergence IMS RoutingIMS Service Internet PS (1) IP Router / Ethernet Switch NGN Policy Control Unified (Access) Router Router / Gateway E-UTRA E-UTRA Multi-Stage UTRA GERA WLAN WIMAX (V)DSL WIMAX Multi-Stage Fiber wDSL (1) Depending on terminal capabilities
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Fiber UTRAN PS CN Further Evolution (Alt 1+Alt 2) Network Convergence GERAN UTRAN CS CN IMS Routing Internet E-UTRAN PS (1)VCC (1) CS E-CN Ethernet Switch (or IP Router) 3GPP / NGN Policy Control Access Node / Fnkt. Unified (Access) Router Access Gateway (possibly CP and UP split) WLAN WIMAX (V)DSL WIMAX Multi-Stage wDSL (1) Depending on terminal capabilities IMS+Overlay Services Overlay Routing E-UTRA Multi-Stage
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Fiber UTRAN PS CN Service Convergence Based on Alt1+Alt2 GERAN UTRAN CS CN IMS Routing Internet E-UTRAN PS (1)VCC (1) CS E-CN Ethernet Switch (or IP Router) 3GPP / NGN Policy Control Access Node / Fnkt. Unified (Access) Router Access Gateway (possibly CP and UP split) WLAN WIMAX (V)DSL WIMAX Multi-Stage wDSL (1) Depending on terminal capabilities IMS+Overlay Services Overlay Routing E-UTRA Multi-Stage Voice&Video Telephony Mobile TV Internet Overlay
Slide title In CAPITALS 50 pt Slide subtitle 32 pt Developing the ScaleNet Architecture Towards Ambient Networks
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture AN Islands: First ANs appear at the network edges GERAN UTRAN CS CN WLANVDSL IMS RoutingIMS Service Internet E-UTRAN E-CN WiMAX I-WLAN Multi-Stage AN Connectivity needed e.g. PAN Drivers: Ease of use of AN enabled terminals, PANs and BANs Interconnect with Home AN
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Growing AN Infrastructure: E-CN AN Keep support for legacy GERAN UTRAN CS CN WLANVDSL IMS RoutingIMS Service Internet E-UTRAN AN E-CN WiMAX I-WLAN Multi-Stage AN Connectivity Drivers: Optimize use of network resources by interworking of Ambient Networks with non-AN capable network elements Facilitate interworking across access technologies
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Growing AN Infrastructure : AN Access Single Operator GERAN UTRAN CS CN WLANVDSL IMS RoutingIMS Service Internet E-UTRAN AN E-CN WiMAX AN Access Multi-Stage AN Connectivity ANI Drivers: Dynamically connecting new access technologies, especially those with limited coverage like WLAN Decrease operational costs Seamless services for the end users and enhanced capacity for the network operators. Nomadic users with different terminals can access the same services AN ANI
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Growing AN Infrastructure: AN Wireline Operator GERAN UTRAN CS CN AN wireline operator IMS RoutingIMS Service Internet E-UTRAN AN E-CN WiMAX AN Access Multi-Stage AN Connectivity ANI Drivers: Decrease operational costs Add support for nomadic users to wireline operators AN ANI
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Growing AN Infrastructure: IMS Routing included GERAN UTRAN CS CN AN wireline IMS Service Internet E-UTRAN AN E-CN WiMAX AN Access Multi-Stage AN Connectivity ANI ASI Drivers: Network operators can offer their services via AN to different service providers Decrease operation and infrastructure costs AN
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture Growing AN Infrastructure: CS migrated Optimized transmission for voice kept GERAN UTRAN AN wireline IMS Service Internet E-UTRAN AN E-CN WiMAX AN Access Multi-Stage AN Connectivity ANI ASI Drivers: Optimized transmission for voice kept Decrease operation and infrastructure costs AN
Top right corner for field-mark, customer or partner logotypes. See Best practice for example. Slide title 40 pt Slide subtitle 24 pt Text 24 pt Bullets level pt © Ericsson AB 2006ScaleNet Architecture