Liu Songzuo, Zheng Naihua, Lou Yi, Zhao Yunjiang, Liu Xinyu, Qiao Gang
Acoustic Science and Technology Laboratory, Harbin Engineering University, Harbin 150001, China.
Yichang Testing Technique Research Institute, Yichang 443003, China.
J Acoust Soc Am. 2022 Nov;152(5):3049. doi: 10.1121/10.0015229.
Despite the recent intensive research on adaptive algorithms for self-interference (SI) cancellation (SIC) in in-band full-duplex (IBFD) underwater acoustic communication (UWAC), there has been relatively little exploration of how the IBFD-UWAC modem shell affects the SI signal. This paper analyzes the effects of the shell material and the near-end receiver position on the SI signal. The analysis is done with a two-dimensional finite-element model in a free-field simulation environment, which combines the differential equation of motion and the time-dependent solver. The SI signal strength around the modem shell in the far-field conditions is obtained. The simulation and pool experiment results both show that (i) the strength of the received SI signal is lowest when the near-end receiver is on a line extending from the shell's geometric center perpendicularly to its central axis and (ii) a shell material with a high elastic coefficient is more conducive to suppressing the SI signal. A pool experiment showed that changing the spatial position of the near-end receiver and the shell material from aluminum to stainless steel enhanced the SIC performance of the IBFD-UWAC system by at least 12 and 4 dB, respectively.
尽管最近对带内全双工(IBFD)水声通信(UWAC)中的自适应自干扰(SI)抵消(SIC)算法进行了深入研究,但对于IBFD-UWAC调制解调器外壳如何影响SI信号的探索相对较少。本文分析了外壳材料和近端接收器位置对SI信号的影响。该分析是在自由场模拟环境中使用二维有限元模型进行的,该模型结合了运动微分方程和与时间相关的求解器。获得了远场条件下调制解调器外壳周围的SI信号强度。仿真和水池实验结果均表明:(i)当近端接收器位于从外壳几何中心垂直于其中心轴延伸的直线上时,接收到的SI信号强度最低;(ii)具有高弹性系数的外壳材料更有利于抑制SI信号。水池实验表明,将近端接收器的空间位置以及外壳材料从铝改为不锈钢,分别使IBFD-UWAC系统的SIC性能提高了至少12 dB和4 dB。