Flexible OFDM Transceiver for Underwater Acoustic Channel: Modeling, Implementation and Parameter Tuning

被引:0
作者
Mohsin Murad
Imran A. Tasadduq
Pablo Otero
Javier Poncela
机构
[1] University of Malaga,Department of Communications Engineering
[2] Umm Al-Qura University,Department of Computer Engineering
来源
Wireless Personal Communications | 2021年 / 116卷
关键词
OFDM; Channel model; Rician fading; Underwater acoustics; UWA;
D O I
暂无
中图分类号
学科分类号
摘要
Acoustic signals are a first choice in underwater communication since sound waves face very low attenuation in water compared to radio frequency (RF). However, the tendency of receiver to detect multipath signals (due to signals bouncing off surface or the bottom) induces large delay spreads and thus strong channel frequency selectivity. Additionally, rapid spatial and temporal variations in underwater acoustic (UWA) channel makes it hostile for communication systems based on single carrier modulation. Multicarrier modulation techniques, on the other hand, can greatly improve bandwidth utilization and help deal with time dispersal effects. Orthogonal frequency division multiplexing (OFDM) is a proven multicarrier communication system having capabilities to cope with frequency selectivity and delay spreads effectively. OFDM has started to get attention for being a simpler alternative to high complexity and high maintenance single carrier systems in UWA communication systems. This work proposes a Matlab model of an OFDM transceiver along with UWA channel characterization based on Rician shadowed fading model as it perfectly characterizes the way in which a shallow UWA channel behaves. Eventually, the proposed design allows implementation of various OFDM modulation methods and to perform Monte Carlo simulations for bit error rate comparisons together with the ability to tune multiple UWA channel parameters.
引用
收藏
页码:1423 / 1441
页数:18
相关论文
共 95 条
  • [1] Akyildiz IF(2004)Challenges for efficient communication in underwater acoustic sensor networks ACM Sigbed Review 1 3-8
  • [2] Pompili D(2016)RF Path and Absorption Loss Estimation for Underwater Wireless Sensor Networks in Different Water Environments Sensors (Basel, Switzerland) 16 890-644
  • [3] Melodia T(2009)MIMO–OFDM for high-rate underwater acoustic communications IEEE Journal of Oceanic Engineering 34 634-434
  • [4] Qureshi UM(2015)Doppler-shift estimation of flat underwater channel using data-aided least-square approach International Journal of Naval Architecture and Ocean Engineering 7 426-182
  • [5] Shaikh FK(2008)Overview of channel models for underwater wireless communication networks Physical Communication 1 163-89
  • [6] Aziz Z(2009)Underwater acoustic communication channels: Propagation models and statistical characterization IEEE Communications Magazine 47 84-390
  • [7] Shah SMZS(2016)Measurement and modeling of narrowband channels for ultrasonic underwater communications Sensors 101 375-50
  • [8] Sheikh AA(2018)Design of a low-cost modem for short-range underwater acoustic communications Wireless Personal Communications 47 45-717
  • [9] Felemban E(2013)Recent trends in underwater acoustic communications Marine Technology Society Journal 38 701-2586
  • [10] Li B(2013)Statistical characterization and computationally efficient modeling of a class of underwater acoustic communication channels IEEE Journal of Oceanic Engineering 123 3891-32