Window-based Rate Adaptation in 802.11n Wireless Networks

被引:3
|
作者
Pefkianakis, Ioannis [1 ]
Hu, Yun [2 ]
Lee, Suk-Bok [1 ]
Peng, Chunyi [1 ]
Sakellaridi, Sofia [3 ]
Lu, Songwu [1 ]
机构
[1] Univ Calif Los Angeles, Los Angeles, CA 90024 USA
[2] Univ Sci & Technol China, Hefei 230026, Anhui, Peoples R China
[3] Univ Minnesota UMN, Minneapolis, MN USA
来源
MOBILE NETWORKS & APPLICATIONS | 2013年 / 18卷 / 01期
关键词
rate adaptation; 802.11n; MIMO; design; experimentation; DIVERSITY;
D O I
10.1007/s11036-011-0347-x
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
In this paper we use real experiments to study MIMO 802.11n Rate Adaptation (RA) on a programmable AP platform. The results reveal nontrivial inter-, intra- mode opportunistic gains with respect to transient channel variations in both MIMO operation modes of Diversity and Spatial Multiplexing. To exploit these short-term gains, we design and implement a new Window-based Rate Adaptation (WRA) algorithm. WRA differently from existing MIMO 802.11n proposals, runs an independent RA in each MIMO mode in parallel, to address the unique characteristics of each MIMO mode. To isolate the best candidate rates, it maintains and adjusts a Sliding Rate-Selection Window for each individual mode, and opportunistically selects the best-goodput rate among the candidates on a per-transmission basis. WRA also applies novel techniques to limit probing overhead and to improve responsiveness to mobility. Our experiments show that WRA gives 52.8% goodput gains over Atheros MIMO RA algorithm, and 72.5% gains over practical legacy 802.11a/b/g designs in field trials.
引用
收藏
页码:156 / 169
页数:14
相关论文
共 50 条
  • [31] Improvement of Content Window Size Selection Algorithm for Small 802.11n Networks
    Dolinska, Iwona
    Jakubowski, Mariusz
    Masiukiewicz, Antoni
    Rzadkowski, Grzcgorz
    Sobol, Jaroslaw
    2015 INTERNATIONAL CONFERENCE ON INFORMATION AND DIGITAL TECHNOLOGIES (IDT), 2015, : 249 - 254
  • [32] Towards an Accurate Bandwidth Estimation Tool for 802.11n Wireless Networks
    Azevedo, Diego
    Bonfim, Michel
    Lima, Leonidas
    Fernandes, Stenio
    2018 IEEE SYMPOSIUM ON COMPUTERS AND COMMUNICATIONS (ISCC), 2018, : 491 - 496
  • [33] Research on switching mechanism for MIMO mode of 802.11n wireless networks
    Chen J.
    Li H.
    Zhang F.
    Wu J.
    Journal of Convergence Information Technology, 2011, 6 (07) : 47 - 55
  • [34] Distributed Spatial Interference Coordination for IEEE 802.11n Wireless Networks
    Chen, Rui
    Li, Changle
    Li, Jiandong
    IEICE TRANSACTIONS ON COMMUNICATIONS, 2012, E95B (04) : 1297 - 1299
  • [35] MAC aggregation in 802.11n: Concepts and impact on wireless networks performance
    Hassine, Kawther
    Frikha, Mounir
    2014 INTERNATIONAL SYMPOSIUM ON NETWORKS, COMPUTERS AND COMMUNICATIONS, 2014,
  • [36] Contention Window-based MAC Protocol for Wireless Sensor Networks
    Cheng, Bin
    Ci, Linlin
    Tian, Chengping
    Li, Xuanya
    Yang, Minghua
    2014 IEEE 12TH INTERNATIONAL CONFERENCE ON DEPENDABLE, AUTONOMIC AND SECURE COMPUTING (DASC)/2014 IEEE 12TH INTERNATIONAL CONFERENCE ON EMBEDDED COMPUTING (EMBEDDEDCOM)/2014 IEEE 12TH INTERNATIONAL CONF ON PERVASIVE INTELLIGENCE AND COMPUTING (PICOM), 2014, : 479 - +
  • [37] The Impact of Link Adaptation on WiFi 802.11n
    Zhu, Haiying Julie
    Kidston, David
    2016 IEEE INTERNATIONAL CONFERENCE ON NETWORKING ARCHITECTURE AND STORAGE (NAS), 2016,
  • [38] Frame-Aggregated Link Adaptation Algorithm for IEEE 802.11n Networks
    Feng, Kai-Ten
    Lin, Po-Tai
    2009 IEEE 20TH INTERNATIONAL SYMPOSIUM ON PERSONAL, INDOOR AND MOBILE RADIO COMMUNICATIONS, 2009, : 42 - 46
  • [39] Crane Moves with IEEE 802.11n wireless
    不详
    CONTROL ENGINEERING, 2010, 57 (10) : M7 - M8
  • [40] An Enhanced A-MSDU Frame Aggregation Scheme for 802.11n Wireless Networks
    Saif, Anwar
    Othman, Mohamed
    Subramaniam, Shamala
    Hamid, Nor Asila Wati Abdul
    WIRELESS PERSONAL COMMUNICATIONS, 2012, 66 (04) : 683 - 706