Smart antennas for OFDM-WLANs based on a spatial-temporal multi-scenario channel model

被引:0
|
作者
Alihemmati, R. [1 ]
Dadashzadeh, G. [2 ]
Shishegar, A.A. [3 ]
Hojjat, N. [4 ]
机构
[1] ECEE Department, University of Colorado, Boulder, CO, United States
[2] Shahed University, Tehran, Iran
[3] Electrical Engineering Department, Sharif University of Technology, Tehran, Iran
[4] TenXc Wireless Inc., 11 Hines Road, Ottawa, ON K2K 2X1, Canada
关键词
Wireless local area networks (WLAN) - Frequency selective fading - Smart antennas - Time domain analysis - IEEE Standards - Orthogonal frequency division multiplexing;
D O I
暂无
中图分类号
学科分类号
摘要
combination of smart antenna techniques and OFDM could be considered as a promising solution for improving the performance and enhancing the data rates of next generation wireless communication systems operating in frequency selective fading environments. There are different design parameters which could affect the application of adaptive arrays in OFDM-based systems. Various beam-forming methods in frequency or time domain, different array architectures and various number of array elements are important factors which are able to change the performance and complexity of the system. These parameters may show different effects in different channel conditions. In this paper we implemented a new wideband spatio-temporal channel model for IEEE 802.11a WLAN with a variety of possible channel scenarios and array architectures. For each scenario, we have investigated different smart antennas configurations and implementation methods in order to find the optimum adaptive array for each scenario. © 2008 ACECR.
引用
收藏
页码:107 / 114
相关论文
共 50 条
  • [41] GSTGM: Graph, spatial-temporal attention and generative based model for pedestrian multi-path prediction
    Khel, Muhammad Haris Kaka
    Greaney, Paul
    McAfee, Marion
    Moffett, Sandra
    Meehan, Kevin
    IMAGE AND VISION COMPUTING, 2024, 151
  • [42] A multi-step airport delay prediction model based on spatial-temporal correlation and auxiliary features
    Zhang, Hao
    Song, Chunyue
    Zhang, Jie
    Wang, Hui
    Guo, Jinlong
    IET INTELLIGENT TRANSPORT SYSTEMS, 2021, 15 (07) : 916 - 928
  • [43] Multi-granularity spatial-temporal access control model for web GIS
    Zhang, Ai-juan
    Gao, Jing-xiang
    Ji, Cheng
    Sun, Jiu-yun
    Bao, Yu
    TRANSACTIONS OF NONFERROUS METALS SOCIETY OF CHINA, 2014, 24 (09) : 2946 - 2953
  • [44] MTTPRE: A Multi-Scale Spatial-Temporal Model for Travel Time Prediction
    Wan, Feng
    Li, Linsen
    Wang, Ke
    Chen, Lu
    Gao, Yunjun
    Jiang, Weihao
    Pu, Shiliang
    30TH ACM SIGSPATIAL INTERNATIONAL CONFERENCE ON ADVANCES IN GEOGRAPHIC INFORMATION SYSTEMS, ACM SIGSPATIAL GIS 2022, 2022, : 384 - 393
  • [45] Spatial-Temporal based Integrated Management for Smart City: Framework, Key techniques and Implementation
    Chen, Nengcheng
    Du, Wenying
    2015 23RD INTERNATIONAL CONFERENCE ON GEOINFORMATICS, 2015,
  • [46] The SMART Approach to Comprehensive Quality Assessment of Site-Based Spatial-Temporal Data
    Galarus, Douglas E.
    Angrvk, Rafal A.
    2016 IEEE INTERNATIONAL CONFERENCE ON BIG DATA (BIG DATA), 2016, : 2636 - 2645
  • [47] Spatial-Temporal Attention Based Interpretable Deep Framework for FDIA Detection in Smart Grid
    Zhang, Wangjun
    Deng, Chao
    Su, Xiangjing
    Nie, Liangzhao
    Wu, Yi
    2022 IEEE SUSTAINABLE POWER AND ENERGY CONFERENCE (ISPEC), 2022,
  • [48] A Spatial-Temporal Transformer Architecture Using Multi-Channel Signals for Sleep Stage Classification
    Yao, Haotian
    Liu, Tao
    Zou, Ruiyang
    Ding, Shengnan
    Xu, Yan
    IEEE TRANSACTIONS ON NEURAL SYSTEMS AND REHABILITATION ENGINEERING, 2023, 31 : 3353 - 3362
  • [49] Spatial-Temporal Spectrum Access Analysis for Multi-Channel Mobile Cognitive Radio Networks
    Zhang, Lei
    Song, Tiecheng
    Hu, Jing
    Bao, Xu
    WIRELESS PERSONAL COMMUNICATIONS, 2017, 94 (04) : 2819 - 2831
  • [50] Spatial-Temporal Spectrum Access Analysis for Multi-Channel Mobile Cognitive Radio Networks
    Lei Zhang
    Tiecheng Song
    Jing Hu
    Xu Bao
    Wireless Personal Communications, 2017, 94 : 2819 - 2831