Zhou Hanyun, Huang S H, Li Wei
Ocean College, Zhejiang University, Zhoushan 316000, China.
College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China.
Sensors (Basel). 2020 Apr 10;20(7):2148. doi: 10.3390/s20072148.
As a sound transmitting device based on the nonlinear acoustic theory, parametric acoustic array (PAA) is able to generate high directivity and low frequency broadband signals with a small aperture transducer. Due to its predominant technical advantages, PAA has been widely used in a variety of application scenarios of underwater acoustic engineering, such as sub-bottom profile measurement, underwater acoustic communication, and detection of buried targets. In this review paper, we examine some of the important advances in the PAA since it was first proposed by Westervelt in 1963. These advances include theoretical modelling for the PAA, signal processing methods, design considerations and implementation issues, and applications of the PAA in underwater acoustic engineering. Moreover, we highlight some technical challenges which impede further development of the PAA, and correspondingly give a glimpse on its possible extension in the future. This article provides a comprehensive overview of some important works of the PAA and serves as a quick tutorial reference to readers who are interested to further explore and extend this technology, and bring this technology to other application areas.
作为一种基于非线性声学理论的声音传输设备,参量声学阵列(PAA)能够通过小口径换能器产生高指向性和低频宽带信号。由于其突出的技术优势,PAA已广泛应用于水下声学工程的各种应用场景,如海底剖面测量、水下声学通信以及掩埋目标探测。在这篇综述论文中,我们考察了自1963年韦斯特维尔特首次提出PAA以来的一些重要进展。这些进展包括PAA的理论建模、信号处理方法、设计考虑因素和实现问题,以及PAA在水下声学工程中的应用。此外,我们强调了阻碍PAA进一步发展的一些技术挑战,并相应地展望了其未来可能的扩展方向。本文全面概述了PAA的一些重要工作,为有兴趣进一步探索和扩展该技术并将其应用于其他领域的读者提供了快速的教程参考。