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Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies [email protected]

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies [email protected]

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Subject:

Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

[email protected]

Agenda:

• Future Multi-access / Multi-provider market

• Long term vision for a Mobility Service

• Mobile IPv6 Enabling Technologies

• Dynamic provisioning of configuration data (Bootstrapping)

• Mobile IPv6 Search & Rescue Deployment Scenarios

• Conclusion

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling [email protected]

Multi-access and Multi-provider market:

[email protected]

IPv4Enterprise

PATR

ISPs

MobileOperators

VirtualOperators

Carriers

WLANHotsport

WMAN(IEEE 802.16e)

R R R

Cellular(2.5-3G)

IPv4-onlyaccess

NAT

IPv4-onlyaccess

IPv4-onlyaccess

GW

Trains, cars, etc.

Firewall

Services

IPv6Enterprise

R

Services

R

IPv6House

R

On-boardnetwork

AAAMobility

QoS

VPN

MobileNode

R

IPv4House

VPNIPv6

Backbone

SessionControl

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

[email protected]

Long Term Vision:

R R R

IPv4/v6backbone

R R R

Mobile IPv6

Mobile IPv6all-IP network

RR R

RR

R R R

?Mobile IPv6,HIP, others?

RAN RANRAN RAN

Dedicated RANs optimized for specific services

Today

cellular (2.5-3G) Wireless LAN WMAN (WiMAX)

Integration of heterogeneous RANs to offer efficient and cost-effective ubiquitous mobility

MIPv6 is the key

Step 1

Smooth migration to an all-IP network architecture

Step 2

all services over IP MIPv6 with fast

handover support

Fully mobile Internet

Step 3

tremendous growth in the number of terminals

MIPv6 might suffer its age

Researchtargets

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

• Improvement of Mobile IPv6 scalability

• Dynamic provisioning of configuration data on terminals and HAs (Bootstrapping)

•Improvement of reliability

• Load-sharing across HAs

• Solutions for HA failover (no single point of failure)

• Control of mobility service

• Service authorization based on a AAA infrastructure

[email protected]

Mobile IPv6 Enabling Technologies:

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

• Enable offering of “premium” network features

• On-demand and secure activation of fast handovers, QoS, etc.

• Integration of Mobile IPv6 in real-life environments

• Coexistence with middle-boxes (firewalls, VPN concentrators, etc.)

• Deployment of Mobile IPv6 in IPv4-only accesses

• Analysis of protocols and architectures for long-term network evolution

• Host Identity Protocol (HIP)

• IKEv2 Mobility and Multihoming (MOBIKE)

• Proxy Mobile IPv6 (PMIPv6)

[email protected]

Mobile IPv6 Enabling Technologies:

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

Goal

Addressing the operational requirement for dynamic provisioning of configuration data on terminals and HAs and MIPv6 service authorization.

Configuration data

•HA address

•Required on MN

•Used for registering Binding Updates with HA

•MN‘s Home Address

•Required on MN

•Used for communication with other nodes

•Could change if home network will be renumbered

•Keying Material

•Required on MN and HA

•Used to set up a security association (IPsec) between MN and HA

[email protected]

Bootstrapping:

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

[email protected]

Service entities involved in bootstrapping:

Access Service Authorizer (ASA)

CorrespondentNodes (CNs)

Internet or otherIP backbone

R

MobileNodes (MNs)

RR

AR AR

AccessPoints (APs)

R

R

AAAServers

R

R

HomeAgents

Mobility Service Authorizer (MSA)

Mobility Service Provider (MSP)

AAAServers

R

Access Service Provider (ASP)

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

Mobile IPv6 Search & Rescue Deployment Scenarios:

Volunteer

Rescue Vehicle

Practitioners

Incident Control Point

GW

AP

IPv4-onlyNetwork

3G

IPv6 Network WMAN

R

Core Network

R

Home Network

R HA_1AAA Services

NAT

HA_2

IP Backbone

Hospital

WLAN SAR Volunteer

Network

IPv6 Public Network WMAN/WLAN

R

SAR Base

ASP/MSP

ASP

Emergency Vehicle

ASP

ASP

ASP

SAR Officer

IPv4-onlyNetwork

3G

IPv6 Network WMAN

R

Core Network

R

Johns Home Network

R HA_1AAA Services

NAT

HA_2

ASP/MSP

ASA/MSA

ASA/MSA

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

Mobile IPv6 Search & Rescue Deployment Scenarios:

3G (IPv4)

Wifi (IPv6)

Wifi (IPv6)

Wifi (IPv6/IPv4)

Wifi (IPv4)

LAN (IPv6)

Wifi (IPv4)

Handover IPv6/IPv6

MN Bootstrapand

video call starts

Handover IPv4/IPv4

Handover Wifi IPv4/ 3G IPv4

Handover3G IPv4/ Wifi IPv6

HandoverWifi IPv6/ LAN IPv6

John’s neighbourhood

Town park

ICP

Handover IPv6/IPv4

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

Conclusion:

Overview of components being developed to facilitate the efficient and operational mobility in large heterogeneous IP networks

• EAP-based MIPv6 bootstrapping (with and with-out MIPv6 DHCPv6 extensions and DNS/IKEv2).

Overview of Search & Rescue scenes which provide specific application case studies which we believe are flexible enough to support the verification of the technical and business requirements of a Mobile IPv6 service environment.

Subject: Scenarios Designed for the Verification of Mobile IPv6 Enabling Technologies

Personal details:

Name:

Surname:

Company:

Phone:

E-mail:

Blog:

Miguel

Ponce de Leon

TSSG, Waterford Institute of Technology

+353-51-302952

[email protected]

http://www.tssg.org/blog/miguelpdl

[email protected]

This work has been partially supported by the European Commission FP6 IST ENABLE project.

Co-Authors:Wenbing

YaoMiguel

A. Diaz

http://www.ist-enable.eu