A novel wideangle ultrasonic sensor utilizing a curved radiator developed for use in an AUV obstacle avoidance system

S. Nolan, D. Toal, H. Ewald
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引用次数: 4

Abstract

This paper presents work on the development and testing of a wideangle ultrasonic transducer developed for use as a low cost short range obstacle avoidance system (OAS) on an autonomous underwater vehicle (AUV). The transducer design is novel in that it utilizes a commercial focusing-bowl piezo element as a convex curved radiator in order to achieve a wide-angled beam profile. The operating frequency of the piezo sensor has been selected to have a short wavelength in water yielding good range resolution. The dimensions of the experimental transducer are small and power consumption is low. It is proposed to use several sensors together with overlapping detection cones to build a sensing system that can provide useful information about objects in an AUV's environment. The principle advantages of such a sensing approach are that it would provide fast detection and location of close range targets and could be implemented with less hardware complexity and signal processing than a typical phased-array sonar approach thus reducing the overall system cost. The sound-pressure distribution, ultrasonic sensitivity, and pulse-echo acoustic performance of the transducer prototype are discussed. Water tank testing carried out to evaluate the acoustic response of the prototype in detecting various dimensioned reflectors in the laboratory is reported.
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一种利用弯曲辐射器的新型广角超声波传感器,用于水下航行器避障系统
本文介绍了一种广角超声换能器的开发和测试工作,该换能器用于自主水下航行器(AUV)上的低成本近距离避障系统(OAS)。换能器的设计是新颖的,因为它利用商业聚焦碗压电元件作为凸弯曲散热器,以实现广角光束轮廓。压电传感器的工作频率选择为短波长,在水中产生良好的距离分辨率。实验用换能器尺寸小,功耗低。提出了使用多个传感器和重叠的检测锥来构建一个能够提供水下航行器环境中物体有用信息的传感系统。这种传感方法的主要优点是,它可以提供近距离目标的快速检测和定位,并且可以实现比典型相控阵声纳方法更少的硬件复杂性和信号处理,从而降低整体系统成本。讨论了换能器样机的声压分布、超声灵敏度和脉冲回波声学性能。报道了在实验室进行的水箱测试,以评估原型在检测各种尺寸反射器时的声响应。
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