A study on transmission power control for wireless LAN under overlapping BSS environment

被引:3
|
作者
Shitara, Isamu [1 ,2 ]
Hiraguri, Takefumi [1 ,3 ]
Yano, Kazuto [1 ]
Egashira, Naoto [1 ]
Kumagai, Tomoaki [1 ]
机构
[1] Adv Telecommun Res Inst Int, 2-2-2 Hikaridai, Seika, Kyoto 6190237, Japan
[2] Grad Sch Elect Informat & Media Engn, 4-1 Gakuendai, Miyashiro, Saitama 3458501, Japan
[3] Nippon Inst Technol, Fac Engn, 4-1 Gakuendai, Miyashiro, Saitama 3458501, Japan
来源
IEICE COMMUNICATIONS EXPRESS | 2018年 / 7卷 / 08期
关键词
wireless LAN; OBSS; transmission power control;
D O I
10.1587/comex.2018XBL0063
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
Recently, with the widespread use of wireless local area network (WLAN), many access points (APs) and stations (STAs) of WLAN are densely employed. Since the dense deployment of APs causes an overlapping basic service set (OBSS) environment which results in increased interference, the area spectral efficiency decreases. In this paper, in order to improve the area spectral efficiency under OBSS environment, we proposed a transmission power control scheme using an indicator issued from a neighbor AP. If the AP knows that the channel occupancy rate (COR) of OBSS is increasing by reporting from associated STAs, it issues an indicator, and other AP hearing the indicator change their transmission power accordingly. We evaluate the performance of the proposed scheme by computer simulation with different AP separations. Simulation results show the proposed scheme achieves high area spectral efficiency.
引用
收藏
页码:303 / 308
页数:6
相关论文
共 50 条
  • [31] Practical Control of Transmission Power for Wireless Sensor Networks
    Fu, Yong
    Sha, Mo
    Hackmann, Gregory
    Lu, Chenyang
    2012 20TH IEEE INTERNATIONAL CONFERENCE ON NETWORK PROTOCOLS (ICNP), 2012,
  • [32] Constrained Optimal Average Power Control for Wireless Transmission
    Wigren, Torbjorn
    Yamalova, Diana
    IEEE CONTROL SYSTEMS LETTERS, 2022, 6 : 1922 - 1927
  • [33] Transmission power control techniques for wireless sensor networks
    Correia, Luiz H. A.
    Macedo, Daniel F.
    dos Santos, Aldri L.
    Loureiro, Antonio A. F.
    Nogueira, Jose Marcos S.
    COMPUTER NETWORKS, 2007, 51 (17) : 4765 - 4779
  • [34] Power Control in ARQ Transmission with Wireless Energy Replenishment
    Yin, Sixing
    Li, Lihua
    Qu, Zhaowei
    2017 IEEE 28TH ANNUAL INTERNATIONAL SYMPOSIUM ON PERSONAL, INDOOR, AND MOBILE RADIO COMMUNICATIONS (PIMRC), 2017,
  • [35] Constrained Optimal Average Power Control for Wireless Transmission
    Wigren, Torbjorn
    Yamalova, Diana
    IEEE Control Systems Letters, 2022, 6 : 1922 - 1927
  • [36] Fair power and transmission rate control in wireless networks
    Touati, C
    Altman, E
    Galtier, J
    GLOBECOM'02: IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE, VOLS 1-3, CONFERENCE RECORDS: THE WORLD CONVERGES, 2002, : 1229 - 1233
  • [37] Distributed transmission power control for wireless sensor networks
    Liang, Xiao
    Li, Wei
    Gulliver, T. Aaron
    CNSR 2008: PROCEEDINGS OF THE 6TH ANNUAL COMMUNICATION NETWORKS AND SERVICES RESEARCH CONFERENCE, 2008, : 417 - 421
  • [38] Field test measurement on 5 GHz band wireless LAN under outdoor mobile environment
    Yasuda, A
    Ogose, S
    VTC2005-FALL: 2005 IEEE 62ND VEHICULAR TECHNOLOGY CONFERENCE, 1-4, PROCEEDINGS, 2005, : 1137 - 1140
  • [39] Constant Maximum Power Control for Dynamic Wireless Power Transmission System
    Hu, Hongsheng
    Cai, Tao
    Duan, Shanxu
    Feng, Hao
    Zhang, Xiaoming
    Niu, Jintao
    Zhao, Jinbo
    2017 IEEE PELS WORKSHOP ON EMERGING TECHNOLOGIES - WIRELESS POWER TRANSFER (WOW), 2017, : 295 - 299
  • [40] Study on Battery Charging Converter for MPPT Control of Laser Wireless Power Transmission System
    Lee, Seongjun
    Lim, Namgyu
    Choi, Wonseon
    Lee, Yongtak
    Baek, Jongbok
    Park, Jungsoo
    ELECTRONICS, 2020, 9 (10) : 1 - 16