Massive MIMO Systems for Underwater Acoustic Communication

被引:0
|
作者
Lawal, Bello [1 ]
Ali, Syed Saad Azhar [1 ]
Bin Awang, Azlan [1 ]
机构
[1] Univ Teknol PETRONAS, Dept Elect & Elect Engn, Seri Iskandar, Malaysia
关键词
Underwater Communication; Massive MIMO; Precoding; Bit Error Rate; Spectral and Energy Efficiency;
D O I
暂无
中图分类号
P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
Underwater wireless communication systems (UWS) or underwater wireless sensor networks (UWSN) consist of different devices or networks of interconnected devices such as underwater acoustic sensors, autonomous underwater or unmanned underwater vehicles (AUV or UUV) and Remotely Operated Vehicle (ROV). These devices are equipped with sensing, processing, and communication capabilities deployed underwater for several specific applications. Most of these applications are multimedia coastal and tactical surveillance, picture and video acquisition and classification, offshore/oil exploration, pollution monitoring and reporting, military defence, oceanographic data collection, and search and rescue operations. These applications entail delay-sensitive and high data traffic as well as loss-sensitive traffic data. However, the underwater environment has unique characteristics and constraints such as high delay, increased error rate, low bandwidth, impaired channel due to multi-path and fading problems, high attenuation and high power consumption. To guarantee QoS of the high traffic data generated due to these applications; massive multi-input multi-output (Massive MIMO) system is considered as the best promising solution to enhance underwater communication for improved throughput/capacity, spectral and energy efficiency.
引用
收藏
页码:159 / 164
页数:6
相关论文
共 50 条
  • [1] Performance of OFDM-based massive MIMO OTFS systems for underwater acoustic communication
    Bocus, Mohammud Junaid
    Doufexi, Angela
    Agrafiotis, Dimitris
    IET COMMUNICATIONS, 2020, 14 (04) : 588 - 593
  • [2] Shallow Underwater Acoustic Massive MIMO Communications
    Wu, Wenqian
    Gao, Xiqi
    Sun, Chen
    Li, Geoffrey Ye
    IEEE TRANSACTIONS ON SIGNAL PROCESSING, 2021, 69 : 1124 - 1139
  • [3] MIMO-OFDM underwater acoustic communication systems-A review
    Qiao, Gang
    Babar, Zeeshan
    Ma, Lu
    Liu, Songzuo
    Wu, Jinqiu
    PHYSICAL COMMUNICATION, 2017, 23 : 56 - 64
  • [4] Underwater Acoustic Communication Using MIMO Hydrophone
    Priya, T. S. Vishnu
    Sanchez, G. Vinitha
    Raajan, N. R.
    2018 4TH INTERNATIONAL CONFERENCE ON ELECTRICAL ENERGY SYSTEMS (ICEES), 2018, : 672 - 675
  • [5] Data Rate Performance of Mobile Multiuser MIMO Underwater Acoustic Communication Systems
    Pottier, Antony
    Bouvet, Pierre-Jean
    Tomasi, Beatrice
    Vanwynsberghe, Charles
    IEEE JOURNAL OF OCEANIC ENGINEERING, 2024, 50 (02) : 1 - 12
  • [6] Channel Model for Massive MIMO Shallow Underwater Acoustic Communications
    Chove, Thomas
    Bouvet, Pierre-Jean
    Laot, Christophe
    le Josse, Nicolas
    OCEANS 2024 - SINGAPORE, 2024,
  • [7] Underwater Acoustic Multimedia Communication Based on MIMO–OFDM
    Chin-Feng Lin
    Shun-Hsyung Chang
    Chia-Chang Lee
    Wen-Chin Wu
    Wei-Hua Chen
    Kao-Hung Chang
    Jenny Chih-Yu Lee
    Ivan A. Parinov
    Wireless Personal Communications, 2013, 71 : 1231 - 1245
  • [8] MIMO Radars and Massive MIMO Communication Systems Can Coexist
    Mishra, Aparna
    Chopra, Ribhu
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2024, 73 (05) : 6486 - 6501
  • [9] Experimentation of MIMO underwater acoustic communication in shallow water channel
    Bouvet, Pierre-Jean
    Auffret, Yves
    Munck, Didier
    Pottier, Alain
    Janvresse, Guy
    Eustache, Yvan
    Tessot, Philippe
    Bourdon, Raphael
    OCEANS 2017 - ABERDEEN, 2017,
  • [10] MIMO Underwater Acoustic Communication in Shallow Water with Ice Cover
    Xiao Han
    Jing-wei Yin
    Bing Liu
    Long-xiang Guo
    China Ocean Engineering, 2019, 33 : 237 - 244