Evaluation of CAC Methods under non-Poisson Arrival Traffic in Cellular Networks

被引:1
|
作者
Vassileva, Natalia [1 ]
Barcelo-Arroyo, Francisco [1 ]
机构
[1] Univ Politecn Cataluna, Dept Engn Telemat, Barcelona, Spain
关键词
handover performance; QoS metrics; call admission control (CAC); traffic engineering; wireless cellular networks;
D O I
10.1109/ICCS.2008.4737319
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
The mean remaining time (NIRT) and guard channel with queue (GCQ) call admission control (CAQ methods are evaluated in the context of non-Poisson arrival traffic conditions. The NIRT scheme uses statistical estimates of the traffic profile when admitting/rejecting new calls to meet predefined QoS levels. NIRT provides network operators with a wide working interval. It is simple to compute and easy to implement, and it complies with criteria of relevance in choosing a CAC policy. The GCQ scheme has been studied extensively because of its high practical value, but always under the assumption of Poisson-distributed call arrivals. Analytical studies and field measurements show that the arrival process in wireless cellular networks is not memoryless. Therefore, the main goal of the research reported in this paper is to evaluate the performances of the two call admission control methods under realistic traffic scenarios. Our results show that handover performance is highly dependent on inter-arrival times and on the channel holding time when arrival traffic is smooth. These results have important implications for cellular net-work dimensioning.
引用
收藏
页码:919 / 925
页数:7
相关论文
共 50 条
  • [1] The benefits of wavelength conversion in WDM networks with non-Poisson traffic
    Subramaniam, S
    Somani, AK
    Azizoglu, M
    Barry, RA
    IEEE COMMUNICATIONS LETTERS, 1999, 3 (03) : 81 - 83
  • [2] A Simple Approximation of the Meta Distribution for Non-Poisson Cellular Networks
    Kalamkar, Sanket S.
    Haenggi, Martin
    2018 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS (ICC), 2018,
  • [3] On the meta distribution in spatially correlated non-Poisson cellular networks
    Wang, Shanshan
    Di Renzo, Marco
    EURASIP JOURNAL ON WIRELESS COMMUNICATIONS AND NETWORKING, 2019, 2019 (1)
  • [4] On the meta distribution in spatially correlated non-Poisson cellular networks
    Shanshan Wang
    Marco Di Renzo
    EURASIP Journal on Wireless Communications and Networking, 2019
  • [5] Routing of dynamic Poisson and non-Poisson traffic in WDM networks with limited wavelength conversion
    Späth, J
    Bodamer, S
    24TH EUROPEAN CONFERENCE ON OPTICAL COMMUNICATION, VOL 1-3: VOL 1: REGULAR AND INVITED PAPERS; VOL 2: TUTORIALS AND SYMPOSIUM PAPERS; VOL 3: POSTDEADLINE PAPERS, 1998, : 359 - 360
  • [6] NON-POISSON MODELS FOR TRAFFIC FLOW
    SERFLING, RJ
    TRANSPORTATION RESEARCH, 1969, 3 (03): : 299 - &
  • [7] COMBINED INVERSION AND THINNING METHODS FOR SIMULATING NONSTATIONARY NON-POISSON ARRIVAL PROCESSES
    Liu, Ran
    Kuhl, Michael E.
    Liu, Yunan
    Wilson, James R.
    2015 WINTER SIMULATION CONFERENCE (WSC), 2015, : 586 - 597
  • [8] Modeling and Simulation of Nonstationary Non-Poisson Arrival Processes
    Liu, Ran
    Kuhl, Michael E.
    Liu, Yunan
    Wilson, James R.
    INFORMS JOURNAL ON COMPUTING, 2019, 31 (02) : 347 - 366
  • [9] Calculation of packet jitter for non-poisson traffic
    Dbira, H.
    Girard, A.
    Sanso, B.
    ANNALS OF TELECOMMUNICATIONS-ANNALES DES TELECOMMUNICATIONS, 2016, 71 (5-6): : 223 - 237
  • [10] Calculation of packet jitter for non-poisson traffic
    H. Dbira
    A. Girard
    B. Sansò
    Annals of Telecommunications, 2016, 71 : 223 - 237