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Comparative finite element analyses of piezoelectric ceramics and polymers at high frequency for underwater wireless communications

机译:水下无线通信高频压电陶瓷和聚合物的比较有限元分析

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Despite huge advances in wireless communications in the last few years, underwater wireless communications is still a not fully developed technology, due to the lack of efficiency of radio waves for underwater communication. This problem can be overcome by using acoustic waves instead. In order to implement high-speed acoustic communications, it is imperative to develop transducers with high performance at high frequency. In this paper, a study of both piezoelectric ceramics and polymers used as water-coupled ultrasonic transducers is presented. As the main goal is to analyze their performance for high-speed communications, the behaviour of the piezoelectric ceramic (lead zirconate titanate, PZT) and the piezoelectric polymer (poly(vynilidene fluoride),PVDF) at high frequencies in underwater environment are compared. Results show that PVDF has a better response under the same ideal conditions, mainly with increasing frequency.
机译:尽管在过去的几年里,尽管在过去几年中有巨大的沟通,但由于缺乏用于水下通信的无线电波的效率,水下无线通信仍然是一个没有完全开发的技术。使用声波可以克服这个问题。为了实现高速声学通信,必须在高频率下开发具有高性能的传感器。本文介绍了一种用作水耦合超声换能器的压电陶瓷和聚合物的研究。由于主要目标是分析其高速通信的性能,比较了压电陶瓷(铅锆酸盐钛酸盐,PZT)和压电聚合物(聚(vynilidene氟化物),PVDF)在水下环境中的高频率的性能。结果表明,PVDF在相同的理想条件下具有更好的反应,主要是随着频率的增加。

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