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Design of an Acoustic Bender Transducer for Active Sonobuoys

机译:有源声波浮标声弯曲传感器的设计

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摘要

Recent underwater vehicles can operate with a much lower level of noise, which increases the need for an active sonobuoy with a high detection performance. These active sonobuoys mainly use bender transducers as a projector that emits sound waves. In this study, we designed a high-performance bender transducer and verified the validity of the design through experiments. For this purpose, first we analyzed the variation of the peak transmitting voltage response (TVR) level and peak TVR frequency of the bender transducer, in relation to its structural parameters. The performance of the bender transducer was analyzed using the finite element method. Then we derived the optimal structure of the bender transducer to achieve the highest TVR. Based on the design, a prototype of the bender transducer was fabricated and its acoustic properties were measured to confirm the validity of the design.
机译:最近的水下航行器可以在低得多的噪声下运行,这增加了对具有高检测性能的有源声纳浮标的需求。这些有源声浮标主要使用弯曲换能器作为发射声波的投影仪。在这项研究中,我们设计了高性能的弯曲传感器,并通过实验验证了设计的有效性。为此,我们首先分析了弯曲传感器的峰值发射电压响应(TVR)电平和峰值TVR频率与其结构参数的关系。使用有限元方法分析了弯曲传感器的性能。然后,我们得出了弯曲换能器的最佳结构,以实现最高的TVR。基于该设计,制造了弯曲换能器的原型,并对其声学特性进行了测量,以确认设计的有效性。

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