A Queueing Model for Mobile Communication Systems with Hierarchical Cell Structure

계층적 셀 구조를 갖는 이동 통신 시스템의 큐잉 모델

  • 김기완 (순천향대학교 전기전자공학부)
  • Published : 1998.12.01

Abstract

The hierarchical cell structure consists of the macrocell and microcells to increase the system capacity and to achieve broad coverage. The hierarchical cell structure provides services for users in different mobility. In this paper, an analytical queueing model in mobile networks is proposed for the performance evaluation of the hierarchical cell structure. The model for networks with the multiple levels can simplify multi-dimensional ones into one-dimensional queueing model. The computational advantage will be growing as the layers are constructed in multiple levels. The computer simulation is provided for validating the proposed analytical model.

Keywords

References

  1. 정보통신 PCS 국제 표준화 동향 한영남
  2. Proceeding of the IEEE v.82 no.9 Microcellular Communication Systems with Hierarchical Macrocell Overlays: Traffic Performance Models and Analysis Stephen S. Rappaport;Lon-Rong Hu
  3. IEEE Trans. Veh. Technol. v.45 no.1 Overlay of Cellular CDMA on AMPS Forward and Reverse Link Analysis Hossam H. Hmimy;Someshwar C. Gupta
  4. IEEE J. Selected Areas Commun. v.11 A microcell/macrocell cellular architecture for low- and high-mobility wireless users C.-L. I.;L. J. Greenstein;R. d. Gitlin
  5. IEEE Trans. Veh. Technol. v.45 no.4 Channel Management in Microcell/Macrocell Cellular Radio Systems Kwan L. Yeung;Sanjiv Nanda
  6. IEEE Trans. Veh. Technol. v.43 Microcell engineering in CDMA cellular networks Joseph Shapira
  7. IEEE J. Select. Areas Commun. Numerical methods for modeling computer networks under nonstationary conditions D. Tipper;M. K. Sundareshan
  8. IEEE Trans. Veh. Technol. v.VT-35 Traffic Model and Performance Analysis for Cellular Mobile Radio Telephone Systems with Prioritized and Nonprioritized Handoff Procedures Daehyoung Hong;Stephen S. Rappaport
  9. Queueing systems v.Ⅰ Leonard Kleinrock
  10. Modeling and Control of Dynamic Flows in Communication Networks J. Filipiak
  11. Fundamentals of Queueing theory, (2nd Ed) D.G. Carlm.Harris
  12. IEEE J. Select. Areas Commun. Transient analysis of Markovian queueing systems and its application to congestion control modeling H. Van As
  13. ARENA Template Reference Guide System Modeling Corporation
  14. 한국시뮬레이션학회 98 춘계학술대회 논문집 다층 셀 구조를 갖는 이동 통신 시스템의 성능 평가 김기완;김두용;최덕규