受蟋蟀启发设计的微型定向声音传感器,用于微型飞行器

F. Ruffier, S. Benacchio, F. Expert, E. Ogam
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引用次数: 14

摘要

昆虫可以在复杂的环境中使用基于高度合适的感觉运动处理系统的有效方法准确地导航和跟踪声源。本文提出对这些方法进行描述、建模和测试,并设计了一种微型飞行装置。为此,一种受蟋蟀听觉系统启发的新型仿生声学传感器被开发和测试。声音传感器由两个重量仅为0.1g的微型全向麦克风组成,配有声学谐振器和仿生时间处理系统。将听觉系统调谐到声源的载波频率4.7kHz(蟋蟀鸣叫的频率)。测试并描述了定向声传感器的线性度和精度,以及对声音干扰和动态声源运动的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A tiny directional sound sensor inspired by crickets designed for micro-air vehicles
Insects can accurately navigate and track sound sources in complex environments using efficient methods based on highly appropriate sensory-motor processing systems. It is proposed here to describe, model and test these methods, by designing them for a micro-flying device. For this purpose, a new bio-mimetic acoustic sensor inspired by the cricket's auditory system was developed and tested. The sound sensor consists of two tiny omnidirectional microphones weighing only 0.1g, equipped with acoustic resonators and a biomimetic temporal processing system. The hearing system was tuned to the carrier frequency of the sound source, which is 4.7kHz (the frequency of crickets' song). The performances of the directional sound sensor were tested and described in terms of their linearity and accuracy, and their robustness to sound disturbances and dynamic sound source movements.
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