Model Based Bandwidth Scavenging for Device Coexistence in Wireless LANs

被引:0
|
作者
Plummer, Anthony, Jr. [1 ]
Taghizadeh, Mahmoud [1 ]
Biswas, Subir [1 ]
机构
[1] Michigan State Univ, E Lansing, MI 48824 USA
来源
关键词
D O I
暂无
中图分类号
TP301 [理论、方法];
学科分类号
081202 ;
摘要
Dynamic Spectrum Access in a Wireless LAN can enable a set of secondary users' devices to access unused spectrum, or whitespace, which is found between the transmissions of a set of primary users' devices. The primary design objectives for an efficient secondary user access strategy are to be able to "scavenge" spatio-temporally fragmented bandwidth while limiting the amount of interference caused to the primary users. In this paper, we propose a secondary user access strategy which is based on measurement and modeling of the whitespace as perceived by the secondary users in a WLAN. A secondary user continually monitors and models its surrounding whitespace, and then attempts to access the available spectrum so that the effective secondary throughput is maximized while the resulting interference to the primary users is limited to a pre-defined bound. We first develop analytical expressions for the secondary throughput and primary interference, and then perform ns2 based simulation experiments to validate the effectiveness of the proposed access strategy, and evaluate its performance numerically using the developed expressions.
引用
收藏
页码:352 / 363
页数:12
相关论文
共 50 条
  • [31] Model based diagnosis in LANs
    Fontanini, ST
    Wainer, J
    Bernal, V
    Maragon, S
    2002 IEEE WORKSHOP ON IP OPERATIONS AND MANAGEMENT, 2002, : 121 - 125
  • [32] A QoS Bandwidth Allocation Method for Coexistence of Wireless Body Area Networks
    Chen, Da-Ren
    2017 25TH EUROMICRO INTERNATIONAL CONFERENCE ON PARALLEL, DISTRIBUTED AND NETWORK-BASED PROCESSING (PDP 2017), 2017, : 251 - 254
  • [33] Hypergraph-Based Model for Coexistence Management of Heterogeneous Wireless Networks
    Nyasulu, Tawachi
    Crawford, David H.
    12TH WIRELESS DAYS CONFERENCE (WD 2021), 2020,
  • [34] A measurement study of bandwidth estimation in IEEE 802.11g wireless LANs using the DCF
    Bredel, Michael
    Fidler, Markus
    NETWORKING 2008: AD HOC AND SENSOR NETWORKS, WIRELESS NETWORKS, NEXT GENERATION INTERNET, PROCEEDINGS, 2008, 4982 : 314 - 325
  • [35] Enabling location-based services on wireless LANs
    Chen, YC
    Chan, YJ
    She, CW
    ICON 2003: 11TH IEEE INTERNATIONAL CONFERENCE ON NETWORKS, 2003, : 567 - 572
  • [36] Co-DRR: An integrated uplink and downlink scheduler for bandwidth management over wireless LANs
    Wei, Huan-Yun
    Chiang, Ching-Chuang
    Lin, Ying-Dar
    IEICE TRANSACTIONS ON COMMUNICATIONS, 2007, E90B (08) : 2022 - 2033
  • [37] WiTracker: An Indoor Positioning System based on Wireless LANs
    Zhao, Yongxiang
    Zhou, Huaibei
    Li, Meifang
    2010 6TH INTERNATIONAL CONFERENCE ON WIRELESS COMMUNICATIONS NETWORKING AND MOBILE COMPUTING (WICOM), 2010,
  • [38] QoS Routing for Mesh-Based Wireless LANs
    Xue Q.
    Ganz A.
    International Journal of Wireless Information Networks, 2002, 9 (03) : 179 - 190
  • [39] A Kerberos-based authentication architecture for wireless LANs
    Ali Kâafar, M
    Benazzouz, L
    Kamoun, F
    Males, D
    NETWORKING 2004: NETWORKING TECHNOLOGIES, SERVICES, AND PROTOCOLS; PERFORMANCE OF COMPUTER AND COMMUNICATION NETWORKS; MOBILE AND WIRELESS COMMUNICATIONS, 2004, 3042 : 1344 - 1353
  • [40] Co-DRR: An integrated uplink and downlink scheduler for bandwidth management over wireless LANs
    Wei, HY
    Chiang, CC
    Lin, YD
    EIGHTH IEEE INTERNATIONAL SYMPOSIUM ON COMPUTERS AND COMMUNICATION, VOLS I AND II, PROCEEDINGS, 2003, : 1415 - 1420