Medium Access Control with Physical Layer Assisted Loss Differentiation

被引:0
|
作者
Sun, Fanglei [1 ]
Li, Victor O. K. [1 ]
Diao, Zhifeng [2 ]
Xu, Zhengyuan [2 ]
机构
[1] Univ Hong Kong, Dept Elect & Elect Engn, Hong Kong, Hong Kong, Peoples R China
[2] Univ Calif Riverside, Dept Elect Engn, Riverside, CA 92521 USA
关键词
D O I
暂无
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The binary exponential backoff (BEB) algorithm used in IEEE 802.11 DCF suffers from the unfairness problem and yields low throughput under heavy load. With physical layer assisted loss differentiation, this paper proposes a new distributed queuing medium access control (MAC) protocol (PALD-DQMP). In this protocol, utilizing the user detection module in the physical layer, losses due to collisions are distinguished from those due to link errors, and such information is made available to the MAC layer. Based on different users' channel states, PALD-DQMP schedules their transmissions. Simulation results show that the proposed scheme outperforms the standard MAC protocol in terms of network throughput and fairness. This improvement is mainly due to the availability of cross-layer channel information, and the elimination of collisions and backoff periods.
引用
收藏
页数:5
相关论文
共 50 条
  • [21] A Joint Model for IEEE 802.15.4 Physical and Medium Access Control Layers
    Zayani, Mohamed-Haykel
    Gauthier, Vincent
    Zeghlache, Djamal
    2011 7TH INTERNATIONAL WIRELESS COMMUNICATIONS AND MOBILE COMPUTING CONFERENCE (IWCMC), 2011, : 814 - 819
  • [22] Cross-layer Optimization for the Physical and Medium Access Control layers in Mobile Ad-hoc Network with Smart Antennas
    Guama, J. A.
    Saad, N. M.
    ICIAS 2007: INTERNATIONAL CONFERENCE ON INTELLIGENT & ADVANCED SYSTEMS, VOLS 1-3, PROCEEDINGS, 2007, : 343 - 347
  • [23] Editorial: Physical Layer Security and Wireless Access Control (QSHINE 2017)
    Lei Wang
    Jenhui Chen
    Yang Peng
    Lei Zhang
    Mobile Networks and Applications, 2020, 25 : 1 - 3
  • [24] Editorial: Physical Layer Security and Wireless Access Control (QSHINE 2017)
    Wang, Lei
    Chen, Jenhui
    Peng, Yang
    Zhang, Lei
    MOBILE NETWORKS & APPLICATIONS, 2020, 25 (01): : 1 - 3
  • [25] Sensing of Transmission Opportunities at the Medium Access Control Layer for Cognitive Radio Networks
    Kundargi, Nikhil
    Tewfik, Ahmed
    COGART: 2009 SECOND INTERNATIONAL WORKSHOP ON COGNITIVE RADIO AND ADVANCED SPECTRUM MANAGEMENT, 2009, : 148 - 152
  • [26] A software WiMAX medium access control layer using massively multithreaded processors
    Chetlur, M.
    Devi, U.
    Dutta, P.
    Gupta, P.
    Chen, L.
    Zhu, Z.
    Kalyanaraman, S.
    Lin, Y.
    IBM JOURNAL OF RESEARCH AND DEVELOPMENT, 2010, 54 (01)
  • [27] Implementation of a Cross-Layer Sensing Medium-Access Control Scheme
    Su, Yishan
    Fu, Xiaomei
    Han, Guangyao
    Xu, Naishen
    Jin, Zhigang
    SENSORS, 2017, 17 (04)
  • [28] Performance Modelling and Analysis of Asymmetric Networks over Medium Access Control Layer
    Talwar, Meenu
    Kang, Sandeep Singh
    INTERNATIONAL JOURNAL OF COMPUTER SCIENCE AND NETWORK SECURITY, 2013, 13 (11): : 84 - 91
  • [29] Cross-layer rate control, medium access control and routing design in cooperative VANET
    Zhou, Liang
    Zheng, Baoyu
    Geller, Benoit
    Wei, Anne
    Xu, Shan
    Li, Yajun
    COMPUTER COMMUNICATIONS, 2008, 31 (12) : 2870 - 2882
  • [30] Physical properties and medium access control for wireless ad-hoc networks
    Zielinski, B
    2005 International Conference on Physics and Control (PHYSCON), 2005, : 106 - 111