Multiple Generations of Mobile Backhaul Technologies.

Slides:



Advertisements
Similar presentations
Experiences with IEEE 802.1ah (Provider Backbone Bridges) Ronald van der Pol SARA Sep 2009NORDUnet meeting, Copenhagen.
Advertisements

Migration Considerations and Techniques to MPLS-TP based Networks and Services Nurit Sprecher / Nokia Siemens Networks Yaacov Weingarten / Nokia Siemens.
An Implementable NGN Architecture and Its Capabilities
Multi-service Architecture: Evolution of Network Architecture Keith Knightson Khalid Ahmad Carrier Data Networks Nortel Networks, Canada IP-Networking/Mediacom.
Colombo, Sri Lanka, 7-10 April 2009 Efficient Backhauling Strategies for NGNs using Carrier-Ethernet SIVA RAMAMOORTHY, Group Director, Marketing Tejas.
Information and Communication Networks Carrier Ethernet / Broadband Evolution Dr.Ulrich Schoen Siemens ICN Carrier Products – System Engineering ITU All.
Primary Enabling Infrastructure For The Mobile Internet Presented by: Ian Serrao Director – Network Services Columbus Communications Trinidad Ltd.
Identifying MPLS Applications
©2010 This information is highly confidential and subject to Sprint policies regarding use and is the property of Sprint and/or its relevant affiliates.
M A Wajid Tanveer Infrastructure M A Wajid Tanveer
Carrier Ethernet for Mobile Operators Facilitating the Evolution to Packet Transport Networks Peter Croy, Harris Stratex Networks Ralph Santitoro, Turin.
BAI613 Module 2 - Voice over IP Technology. Module Objectives 1. Describe the benefits of IP Telephony/Packet Telephony/VoIP over traditional telephone.
0 0 0 BBWF Madrid October 2005 Access-independent Core Networks: Converging towards all-IP Andy Jones Head of Transmission & Interconnectivity Vodafone.
All Rights Reserved © Alcatel-Lucent 2006, ##### Scalability of IP/MPLS networks Lieven Levrau 30 th April, 2008 France Telecom, Cisco Systems, uawei Technologies,
IT’S HERE Bandwidth Technologies. Agenda Technologies for Bandwidth –Single Location DSL/Cable T1/Bonded T1 DS3/OC-N Ethernet Over Copper (EoC, EoFM)
1 ® Adtran, Inc All rights reserved Proprietary and Confidential 1 ® Adtran, Inc All rights reserved Cost-effectively Positioning Your Network.
ONE PLANET ONE NETWORK A MILLION POSSIBILITIES Barry Joseph Director, Offer and Product Management.
VIKAS REDDY BEERAVALLY HETEROGENEOUS NETWORKS. Radio Network Evolution to heterogeneous Todays Networks 2015 Heterogeneous Networks Single Standard Radio.
Module CSY3021 Network Planning and Programming RD-CSY /09 1.
Copyright © 2004 Juniper Networks, Inc. Proprietary and Confidentialwww.juniper.net 1 Provider Opportunities for Enterprise MPLS APRICOT 2006, Perth Matt.
1 Why Carriers Like Pseudowires… Payload (IP, L2 data, voice) PseudoWires Layer-2 (Ethernet, ATM…) Physical (Optical, Wireless) User Applications Payload.
© 2006 Cisco Systems, Inc. All rights reserved.Cisco PublicITE I Chapter 6 1 Services in a Converged WAN Accessing the WAN – Chapter 1.
© Copyright 2007 Turin Networks, Inc. All rights reserved. 1 Carrier Ethernet-Based Converged Services Infrastructure using Ethernet.
Wireless Ethernet Backhaul : A Carrier’s Perspective
Jim Grams Azaire Networks Chief Technology Officer WiFi and 3G Convergence Made Easy.
Colombo, Sri Lanka, 7-10 April 2009 Multimedia Service Delivery on Next Generation Networks Pradeep De Almeida, Group Chief Technology Officer Dialog Telekom.
© 2007 AT&T Knowledge Ventures. All rights reserved. AT&T and the AT&T logo are trademarks of AT&T Knowledge Ventures. Subsidiaries and affiliates of AT&T.
6. Next Generation Networks A. Transition to NGN B
Selecting a WAN Technology Lecture 4: WAN Devices &Technology.
COnvergence of fixed and Mobile BrOadband access/aggregation networks Work programme topic: ICT Future Networks Type of project: Large scale integrating.
Carrier Networks (Chapter 4) Long Haul/Core Network Metro Network Access Network Technologies Convergence Signaling Digital Hierarchy/SONET.
Axerra Networks Solutions for Business Services Delivery.
Confidential and proprietary material for authorized Verizon Wireless personnel only. Use, disclosure or distribution of this material is not permitted.
United Telecommunication Services Michael Gaari Manager Network Provisioning UTS
1 Multi Protocol Label Switching Presented by: Petros Ioannou Dept. of Electrical and Computer Engineering, UCY.
M P L S. MPLS Overview MPLS or Multiprotocol label switching is a new network protocol that defined a mechanism for packet forwarding in network router.
BROADBAND TECHNOLOGIES & SERVICES Broadband Technologies -Core Network
1 Reliable high-speed Ethernet and data services delivery Per B. Hansen ADVA Optical Networking February 14, 2005.
National Institute of Science & Technology Voice Over Digital Subscriber Line (VoDSL) Vinay TibrewalEE [1] VoDSL: Next Generation Voice Solution.
5G MOBILE TECHNOLOGY.
One-stop shop for all wireless backhaul needs –Multiple frequency bands –Multiple configurations –Variable occupied bandwidth –Flexible user interfaces.
1© Nokia Siemens Networks For internal use MULTI-SERVICE ACCESS More bang for the buck.
1 UHG MPLS Experience June 14, 2005 Sorell Slaymaker Director Network Architecture & Technologies
2002 L eadership P l a n n i n g C o n f e r e n c e Derrick Hamilton Vice President SBC Midwest Network Services Growing Possibilities: The SBC Network.
Copyright © 2008 Vanu, Inc. 1 Software Radio Infrastructure Solutions for Caribbean Carriers Rob Anglin COO Vanu, Inc. July 16, 2008.
The University of Bolton School of Games Computing & Creative Technologies LCT2516 Network Architecture CCNA Exploration LAN Switching and Wireless Chapter.
Introduction to 21CN Resilience Tim Hubbard Head of 21CN Solutions Strategy.
1 Presentation_ID © 1999, Cisco Systems, Inc. Cisco All-IP Mobile Wireless Network Reference Model Presentation_ID.
1 NGN Evolution & its Overview Desire for a new platform: User requirements increased — MORE BANDWIDTH Technology growth — INTELLIGENT NODES, SWITCHES.
Mobile Backhaul : Carrier Ethernet
© 2006 National Institute of Informatics 1 Jun Matsukata National Institute of Informatics SINET3: The Next Generation SINET July 19, 2006.
1 © 2003, Cisco Systems, Inc. All rights reserved. CISCO CONFIDENTIAL Advancing the Carrier IP/MPLS Edge Routing Technology Group Cisco Systems, Inc. April.
® Adtran, Inc All rights reserved 1 ® Adtran, Inc All rights reserved ADTRAN & Smart Grid January 21, 2010 Kevin Morgan Director, Product Marketing.
How to improve Mobile Radio Network Planning based on a new Big Data structure analysis Vianney Martinez Alcantara December 3 rd, 2015.
1 | © 2015 Infinera Open SDN in Metro P-OTS Networks Sten Nordell CTO Metro Business Group
. Large internetworks can consist of the following three distinct components:  Campus networks, which consist of locally connected users in a building.
Colombo, Sri Lanka, 7-10 April 2009 FORUM ON NEXT GENERATION STANDARDIZATION (Colombo, Sri Lanka, 7-10 April 2009) Session Moderator Ghassem Koleyni An.
Lecture 1: Introduction to WAN
Introduction to Telecommunications, 2/e By M.A.Rosengrant Copyright (c) 2007 by Pearson Education, Inc. All rights reserved. Figure 28–1 A next generation.
Multi-protocol Label Switching
MPLS Introduction How MPLS Works ?? MPLS - The Motivation MPLS Application MPLS Advantages Conclusion.
PRESENTED BY : P:MARREDDY07681A0453 WIRELESS SYSTEM WIRELESS SYSTEM.
The way forward for telecoms services Jeremy Steventon-Barnes Data Service Development
An evolutionary approach to G-MPLS ensuring a smooth migration of legacy networks Ben Martens Alcatel USA.
Instructor Materials Chapter 1: WAN Concepts
4G-WIRELESS NETWORKS PREPARED BY: PARTH LATHIGARA(07BEC037)
A New Era in Critical Communications
Chapter 1: WAN Concepts Connecting Networks
IS3120 Network Communications Infrastructure
IMS & Wireline to Wireless Convergence
Presentation transcript:

Multiple Generations of Mobile Backhaul Technologies

What is the Mobile Backhaul ? Backhaul portion of the network comprises the intermediate links between the Core Network, or backbone and the small subnetworks at the "edge" of the entire hierarchical network. Taking information from point A to point B

Introduction:  Backhaul plays a vital role in mobile networks by acting as the link between Radio Access Network (RAN) equipment (Eg: radio basestation) and the mobile backbone network.  Since the introduction of the new mobile generation with the new data networking capabilities, mobile networks and mobile usage has undergone a tremendous change. Once voice was the dominating service at the mobile networks, but nowadays data traffic volume exceeds voice traffic everywhere, where the service is available  This means that backhaul is able to transport mobile data from the end user to the internet (or similar network), mobile networks and traditional telephone networks.  At the same time, backhaul network operators are being required to significantly reduce operational costs in order to compensate for declining Average Revenue Per User (ARPU) and to compete with a host of new competitors and technologies.  Operators are also required to protect (or sufficiently emulate) core legacy services such as voice, which still account for a substantial share of revenue.

Evolution of the G Mobile technologies are classified into different generations referred to as 1G,2G/2.5G/3G/4G. Each generation of Mobile technologies provides users with enhanced services, higher speeds and better network capacity

High-Level Overview of Mobile Technologies Different bodies and Forums such as 3GPP/#GPP2/ETSI/ITU ; recommend,approve standards and advance the various technologies under each generation. Solution profile overview:

2G,3G DISTRIBUTION

4G Distribution

Commercially Launched LTE Network “Cumulative Totals” -

LTE subscribers growth -

 Traditionally operators have built multiple networks for different purposes.  The lowest layer has been the physical network including fiber, copper and radio connections. On top of those technologies like xWDM, SDH/Sonet, ATM, Frame Relay, IP, MPLS and Ethernet have been deployed.  Since the fixed operator networks are running a combination of Ethernet and IP/MPLS at the moment, it is feasible to use the same networks for mobile backhaul purposes as well. This brings dramatic cost savings both on the OPEX and CAPEX side.

IP Backhaul is driven by the requirements imposed by 3G/ 4G technologies In this new situation backhaul networks with many cell sites have become the “bottleneck” offering insufficient capacity to support higher bandwidths and often expensive to upgrade. To address the problem operators are migrating from existing separate, legacy ATM and TDM backhauling networks to a more cost-effective, converged, MPLS-enabled, and multipurpose infrastructure. In addition to reducing operational costs, MPLS-based networks will also lay the foundations for the delivery of next generation mobile services, such as location-based services, mobile gaming and mobile TV, and for the use of future technologies such as Long Term Evolution (LTE) and mobile WiMAX. Ultimately, this fully consolidated network will be able to handle many different types of traffic on a single cell site, enabling the operator to offer many different services to many different types of customer.

Mobile backhaul solutions can be either purely ip/Ethernet- mpls or hybrid of Ethernet and other layer 2 technologies such as ATM/T1-E1/Frame Relay. Primary focus of New Mobile backhaul architecture based on Ethernet /MPLS solution

 migration strategies from legacy technologies such as TDM,ATM and IP /Ethernet-based and newer technologies such as WIMAX- LTE backhaul  Flexibility of using a combined layer 2 and layer 3 based network  Aggregation performed closer to the BTS-aggregation and metro network functionality closer to the access  VPN based services across the network.  Use of MPLS LSPs as transport mechanism in the ring  Use traffic periodization and Class of service Cos  More capacity with Scalable & Cost Effective setups. Main Mobile Backhaul keys :

Main Radio access network RAN Components on different Mobile Networks

Mobile Technologies and Base station Support:,S1 (GTP) NetworkTransport Network Layers GSM/GPRS (2G/2.5G) TDM EDGE (2.5G) TDM UMTS (3G) ATM CDMA1 * EV-DO(3G) IP/Ethernet Mobile WiMax IP/Ethernet LTE (4G) IP/Ethernet

IP Transport Network components

IP RAN QOS Considerations COS Mapping

Mobile Backhaul Network must evolve

ALL TDM ALL TDM+ IP All IP Full functionality & Capabilities Multiservice multi structure platform

Legacy Backhaul Networks to carrier Ethernet Migration Strategy

Legacy Mobile Backhaul Networks

NEW IP Mobile Backhaul Networks Flexible, scalable and simplified mobile backhaul Network enable delivery of increased mobile capacity and coverage with the right quality of service. Increasing in network and operational efficiency.

Scenario A:- BS with No Ethernet Support Option 1: Run IP/Carrier Ethernet in parallel to TDM/ATM Backhaul Co-existence of Legacy technologies and Ethernet **Usually MPLS network carried over dark Fiber,OSN network, DWDM Network, MW or Hybrid of all of them

Scenario A:- BS with No Ethernet Support :- Option 2: Emulate Native Service Over Ethernet Using PWE Legacy Technologies Carried over Ethernet network

Scenario B:- BS Support Ethernet in Addition to Legacy Technology :- Option 1: Using both packet/Ethernet and Legacy Technologies Dual Support for Ethernet and Legacy Technology

Scenario B:- BS Support Ethernet in Addition to Legacy Technology :- Option 4: Use Packet/Ethernet All Through Backhaul All IP-Ethernet –based Backhaul

Option 3: Using both packet/Ethernet and Legacy Technologies

VPN services VPLS view of mobile backhaul network

Other Design Considerations:  VLAN Models  MPLS LSPs  Failure Recovery and reliability

Vlans : 2 scenario whether the frames from cell are tagged : Tagged Frames Location and service tagged comes from the site Untagged Frames BS not capable to tag MPLS LSPs Single LSP or multiple LSPs assigned to carry the traffic within the backhaul network, same MPLS LSP can be used to carry different traffic streams originating and destined to same VPN instance. Failure recovery reliability OAM on physical and link level LSP link and node protection. Routing Metrics Dual Homing

MPLS technology in backhaul is the solution to the bottleneck in today's mobile network. Offers benefits and cost efficiencies in both legacy mobile backhaul and for future environments based on new technologies such as LTE. Protects existing technology investments Ensures that the technology will remain sufficiently “future proof "and scalable. New services can be successfully rolled out, while mobile operators are able to leverage further cost benefits by using an MPLS-based backhaul network to deliver many non-backhaul services. Conclusion

Thank You Khalid Samara Mob: (+962)