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An integrated admission-degradation framework for optimizing real-time call mix in wireless cellular networks

Published: 11 August 2000 Publication History

Abstract

This paper describes an integrated framework for selecting optimal call mixes (in a multimedia traffic scenario) by bandwidth degradation in a wireless cellular network, to maximize the revenue earned by the service provider. Each admitted call in our framework generates a revenue for the service provider based on the parameters of the call. The sum of the revenues generated by all admitted calls at a time is considered as the total revenue earned in a cell. By degradation, we mean that: (1) some channels can be taken away from ongoing calls that are assigned multiple channels and/or (2) newly admitted calls that require multiple channels get fewer than what they requested. To avoid removing more channels from calls than they could tolerate, we incorporate a new call attribute: the degradation tolerance, i.e, the number of channels a call can be degraded without sacrificing the acceptable level of quality. We also consider priorities over calls to influence the admission-degradation decision. Our analytical framework includes both static and dynamic scenarios. The dynamic case is enhanced with the ability to select the optimal call mix using incoming and departing handoffs, new calls, and call terminations in a recursive way. We also discuss how to accommodate non-real-time calls into our system. To evaluate the performance of the proposed scheme a discrete event simulation tool, that accommodates our dynamic framework built on a customized simulated annealing optimization function, has been developed. Simulation results demonstrate that not only does the proposed integrated admission-degradation framework maximize the total revenue earned in cells, but also handoff and new call blocking probabilities are reduced.

References

[1]
ACAMPORA, A.S., AND NAGHSHINEH, M. "QoS Provisioning in Micro-Cellular Networks Supporting Multimedia Traffic," Proceedings of IEEE Infocom'95, Boston, USA, pp. 1075-1084, April 1995.
[2]
CDPD FORUM "Cellular Digital Packet Data System Specification: Release 1.1," CDPD Forum, Inc., Technical Report, January 1995.
[3]
DAS, S.K., JAYARAM, R., KAKANI, N.K., AND SEN, S.K. "Call Admission and Control for Quality-of-Service (QoS) Provisioning in Next Generation Wireless Networks," accepted to appear in the A CM/Baltzer Journal on Wireless Networks, Guest Editor: R. Rao, 2000.
[4]
EUROPEAN TELECOMMUNICATIONS STANDARDS INSTITUTE "GSM 03.34, High Speed Circuit Switched Data (HSCSD) - Stage 2."
[5]
EUROPEAN TELECOMMUNICATIONS STANDARDS INSTITUTE "GSM 03.60, General Packet Radio Service (GPRS) - Stage 2."
[6]
JAIN, R., AND KNIGHTLY, E.W. "A Framework for Design and Evaluation of Admission Control Algorithms in Multi-Service Mobile Networks" Proceedings of IEEE Infocom'99, New York, USA, file:08a_04.pdf, March 1999.
[7]
KUROSE, J. "Open Issues and Challenges in Providing Quality of Service Guarantees in High-Speed Networks," Computer Communication Review, vol.23, no.1, USA, pp. 6-15 January 1993.
[8]
MCDONALD, A. B., AND ZNATI, T. "A Path Availability Model for Wireless Ad hoc Networks," Proceedings of IEEE WCNC 1999, vol. 1, New Orleans, LA, USA, pp. 35-40, September 1999.
[9]
METROPOLIS, N., ROSENBLUTH, A.W., ROSENBLUTH, M.N., TELLER, A.H., TELLER, E. "Equation of State Calculation by Fast Computing Machines," Journal of Chem. Phys., vol. 45, USA, pp. 1087-1091, 1953.
[10]
NORTEL NEWS RELEASES "Nortel Networks Breaks Own 'Land Speed Record' Using Light - Redefines Speed of Internet & Networking," http : //www. nortelnetworks, corn/corporate/newEl newsreleases/1999d/10_12_9999633_80gigabit.html,
[11]
OLIVEIRA, C., KIM, J.B., AND SUDA, T. "An Adaptive Bandwidth Reservation Scheme for High-Speed Multimedia Wireless Networks," IEEE Journal on Selected Areas in Communications, Vol. 16, No. 6., pp. 858-874, August 1998.
[12]
RAPPAPORT, S., AND PURZYNSKI, C. "Prioritized Resource Assignment for Mobile Cellular Communication Systems wit Mixed Services and Platform Types," IEEE Transactions on Vehicular Technology, Vol. 45, No. 3, pp. 443-457, August 1996.
[13]
EDITOR: REEVES, C.R. "Modern Heuristic Techniques for Combinatorial Problems," John Wiley F Sons Inc., New York, NY, USA, 1993.
[14]
SEAL, K., AND SINGH, S. "Loss Profiles: A Quality of Service Measure in Mobile Computing," A CM/Baltzer Journal on Wireless Networks, Vol. 2, No. 1., pp. 45-61, March 1996.
[15]
SEN, S.K., DAS, S.K. BASU, K., AND JAWANDA, J. "Quality-of-Service Degradation Strategies in Multimedia Wireless Networks," Proceedings of IEEE 48th Vehicular Technology Conference (VTC'98), Ottawa, Canada, pp. 1884-1888, May 1998.
[16]
TIAN, X., AND Jl, C. "Bounding the Performance of Dynamic Channel Allocation with QoS Provisioning for Distributed Admission Control in Wireless Networks" Proceedings of IEEE Infocom'99, New York, USA, file:10a_01.pdf, March 1999.
[17]
ZVONAR, Z., JUNG, P., AND KAMMERLANDER, K. "GSM - Evolution Towards 3rd Generation Systems," Kluwer Academic Publishers, Boston, USA, 1999.

Cited By

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  • (2002)A prioritized real-time wireless call degradation framework for optimal call mix selectionMobile Networks and Applications10.1023/A:10137269219057:2(143-151)Online publication date: 1-Apr-2002
  • (2002)Adaptive performance management for universal mobile telecommunications system networksComputer Networks: The International Journal of Computer and Telecommunications Networking10.1016/S1389-1286(01)00265-138:4(477-496)Online publication date: 15-Mar-2002

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cover image ACM Conferences
MSWIM '00: Proceedings of the 3rd ACM international workshop on Modeling, analysis and simulation of wireless and mobile systems
August 2000
128 pages
ISBN:1581133049
DOI:10.1145/346855
Permission to make digital or hard copies of all or part of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for components of this work owned by others than ACM must be honored. Abstracting with credit is permitted. To copy otherwise, or republish, to post on servers or to redistribute to lists, requires prior specific permission and/or a fee. Request permissions from [email protected]

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Published: 11 August 2000

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Author Tags

  1. admission control
  2. call degradation
  3. cellular systems
  4. framework

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MSWIM '00 Paper Acceptance Rate 13 of 44 submissions, 30%;
Overall Acceptance Rate 398 of 1,577 submissions, 25%

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View all
  • (2002)A prioritized real-time wireless call degradation framework for optimal call mix selectionMobile Networks and Applications10.1023/A:10137269219057:2(143-151)Online publication date: 1-Apr-2002
  • (2002)Adaptive performance management for universal mobile telecommunications system networksComputer Networks: The International Journal of Computer and Telecommunications Networking10.1016/S1389-1286(01)00265-138:4(477-496)Online publication date: 15-Mar-2002

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