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Roaming and service management in public wireless networks using an innovative policy management architecture
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Source International Journal of Network Management archive
Volume 15 ,  Issue 2  (March/April 2005) table of contents
Pages: 103 - 121  
Year of Publication: 2005
ISSN:1099-1190
Authors
Idir Fodil  6WIND, Advanced Networking Architectures, Montigny-le-Bretonneux, France
Guy Pujolle  Paris6 University, and leader of the Phare group, members of the LIP6 Laboratory
Publisher
John Wiley & Sons, Inc.  New York, NY, USA
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DOI Bookmark: 10.1002/nem.548

ABSTRACT

Nowadays, public wireless local area networks (WLANs), commonly called hotspots, are being largely deployed by WISPs (Wireless Internet Service Providers) as a means of offering ubiquitous Internet access to their customers. Although a substantial number of solutions have been proposed to improve security, mobility and quality of service on the wireless area, access network management which is mandatory remains a very significant concern.This paper describes RSM-WISP, a new management architecture designed for WISPs to facilitate the implementation and management of the services they offer at the access side of the WLAN, and to manage roaming contracts between WISPs. Our architecture is based upon the policy-based management principles as introduced by the IETF, combined with more intelligence at the network edge. RSM-WISP adopts an architecture that is composed of two elements: a WISP management center (MC) that deploys policies and monitors all the WLANs, and a programmable access router (CPE) located in each WLAN. The CPE ensures service enforcement, service differentiation (access to different service levels) and guarantee, user access management, and dynamic WLAN adaptation according to the user's SLA (service level agreement). It also permits automatic service updates according to the user's requirements. Concerning roaming management, this is achieved on the CPE through multiple service provider support capabilities. This approach provides WISPs with a simple, flexible and scalable solution that allows easy service deployment and management at the access. This management architecture has been implemented, tested and validated on the 6WINDGate routers.


REFERENCES

Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.

 
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1. IEEE. 802.11b/d3.0 Wireless LAN Medium Access Control (MAC) and Physical Layer (PHY) Specification, August 1999.
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4. Mahler A, Steinfield C. The Evolving Hot Spot Market for Broadband Access ITU Telecom World 2003 Forum panel on Technologies for Broadband, Geneva, October 2003.
 
5
5. Fye DM. Evolution of WLAN Roaming Services. CDG WLAN Technical Forum, Dallas, Texas, 2 October 2003.
 
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6. Kende M. WLAN challenges and opportunities. National Summit on Broadband Deployment, 28 April 2003.
 
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7. Fodil I, Ksinant V. User Service Management in Hotspot network using Policies, European Wireless 2004, the Fifth European Wireless Conference, 24-27 February 2004, Barcelona, Spain.
 
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8. Westrinen A. et al. Terminology for Policy Based Management, RFC 3198, November 2001, http://www.ietf.org.rfc.
 
9
 
10
10. INFRADIO Project: http://rp.lip6.fr/infradio/
11
12
 
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13. IEEE Draft P802.1X/D11: Standard for Port based Network Access Control, LAN MAN Standards Committee of the IEEE Computer Society, 27 March 2001.
 
14
 
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15. Kalhoun P. et al. Light Weight Access Point Protocol, Internet Draft, June 2003.
 
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16. Schwab D, Bunt R. Characterising the Use of a Campus Wireless Network, IEEE INFOCOM 2004.
 
17
 
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18. Corre O, Fodil I, Ksinant V, Pujolle G. An Architecture for Access Network Management with Policies, MMNS 2003, 6th IFIP/IEEE Conference on Network Management, September 2003.
 
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19. IETF CapWap Working Group, http://www. ietf.org/html.charters/capwap-charter.html
 
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20. Yegin AE, Ohba Y, Penno R, Tsirtsis G, Wang C. Protocol for Carrying Authentication for Network Access (PANA) Requirements, Internet Draft, June 2003.