Distributed Zero-Forcing AF Beamforming for Energy-Efficient Communications in Networked Smart Cities

被引:0
|
作者
Zaidi, Slim [1 ]
Ben Smida, Oussama [2 ]
Affes, Sofiene [2 ]
Valaee, Shahrokh [1 ]
机构
[1] Univ Toronto, ECE Dept, Toronto, ON M5S 3G4, Canada
[2] Univ Quebec, INRS EMT, Montreal, PQ H5A 1K6, Canada
关键词
Amplify-and-forward (AF) beamforming; smart cities; scattering; beampattern; cost and power efficiencies; overhead; WIRELESS SENSOR NETWORKS; LOCAL SCATTERING; ARRIVAL; TRANSMIT;
D O I
10.1109/PIMRC.2017.8292770
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
In this paper, amplify-and-forward beamforming (AFB) is considered to establish a reliable communication between devices in networked smart cities. All sources send their data during the first time slot while the cooperative terminals forward a properly weighted version of their received signals during the second. These zero-forcing AFB (ZFB) weights are properly selected to maximize the desired power while completely canceling the interference signals. We show, however, that their implementation requires a huge terminals' information exchange, making ZFB unsuitable for smart cities where the overhead and power restrictions are very stringent. To address this issue, we exploit the asymptotic expression at large K of the ZFB weights whose computation requires much less information exchange and, further, well-approximate their original counterparts. The performance of the proposed beamforming is analyzed and compared to ZFB and monochromatic (i.e., single-ray) AFB (MB) whose design neglects the presence of scattering.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] An Efficient Algorithm for Zero-Forcing Coordinated Beamforming
    Kim, Haksoo
    Yu, Heejung
    Sung, Youngchul
    Lee, Yong H.
    IEEE COMMUNICATIONS LETTERS, 2012, 16 (07) : 994 - 997
  • [2] Zero-forcing beamforming for physical layer security of energy harvesting wireless communications
    Zhu, Fengchao
    Gao, Feifei
    Yao, Minli
    EURASIP JOURNAL ON WIRELESS COMMUNICATIONS AND NETWORKING, 2015, : 1 - 9
  • [3] Zero-forcing beamforming for physical layer security of energy harvesting wireless communications
    Fengchao Zhu
    Feifei Gao
    Minli Yao
    EURASIP Journal on Wireless Communications and Networking, 2015
  • [4] Homotopy Approach for Energy-Efficient MIMO Systems With Zero-Forcing Transceivers
    Dai, Jisheng
    Xu, Weichao
    Ye, Zhongfu
    Hu, Nan
    Chang, Chunqi
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2017, 66 (02) : 1233 - 1247
  • [5] RIS-Aided Zero-Forcing and Regularized Zero-Forcing Beamforming in Integrated Information and Energy Delivery
    Yu, Hongwen
    Hoang Duong Tuan
    Dutkiewicz, Eryk
    Poor, H. Vincent
    Hanzo, Lajos
    IEEE TRANSACTIONS ON WIRELESS COMMUNICATIONS, 2022, 21 (07) : 5500 - 5513
  • [6] STROBE: Actively Securing Wireless Communications using Zero-Forcing Beamforming
    Anand, Narendra
    Lee, Sung-Ju
    Knightly, Edward W.
    2012 PROCEEDINGS IEEE INFOCOM, 2012, : 720 - 728
  • [7] Energy-Efficient Zero-Forcing Precoding Design for Small-Cell Networks
    Quang-Doanh Vu
    Le-Nam Tran
    Farrell, Ronan
    Hong, Een-Kee
    IEEE TRANSACTIONS ON COMMUNICATIONS, 2016, 64 (02) : 790 - 804
  • [8] A user selection method of distributed beamforming based on zero-forcing algorithm
    Huang, Zi-Jia
    Wang, Xiao-Xiang
    Gong, Wen-Rong
    Wang, Xia-Nan
    Beijing Youdian Daxue Xuebao/Journal of Beijing University of Posts and Telecommunications, 2014, 37 (02): : 64 - 67
  • [9] Integrated single target sensing and multiuser communications based on zero-forcing beamforming
    Joung, Jingon
    Yu, Heejung
    Quek, Tony Q. S.
    VEHICULAR COMMUNICATIONS, 2023, 43
  • [10] Distributed Multi-Cell Zero-Forcing Beamforming in Cellular Downlink Channels
    Somekh, Oren
    Simeone, Osvaldo
    Bar-Ness, Yeheskel
    Haimovich, Alexander M.
    GLOBECOM 2006 - 2006 IEEE GLOBAL TELECOMMUNICATIONS CONFERENCE, 2006,