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Special Section on Biologically-inspired radar and sonar systems - Evaluating three-dimensional localisation information generated by bio-inspired in-air sonar

机译:受生物启发的雷达和声纳系统特别部分-评估由生物启发的空中声纳产生的三维定位信息

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This study aims to provide a better understanding of how bat bio-sonar operates so that the authors can apply this improved understanding to the design of simple in-air sonar systems based on the same operational principles. It focuses on the effect of component and configuration choices on the generated binaural spectral cues. Configurations composed of conventional receivers are evaluated for varying reflection strengths and compared to a system with artificial pinnae receivers. Localisation performance is quantified by an information-theoretic performance criterion expressing the mutual information carried by a binaural spectrum on the corresponding three-dimensional reflector location. Results show that the narrow beamwidth of conventional transducers limits the localisation information carried by the generated binaural spectra. The more complex spatial sensitivity patterns of organic pinna forms such as that of the Phyllostomus discolor bat species are shown to provide additional spectral cues that greatly improve localisation information transfer. The authors have found that the varying acoustic axis in the head-related transfer function of the pinna has a positive effect, but that the higher peripheral sensitivity around the varying acoustic axis is the driving force behind the artificial pinna's superior localisation performance.
机译:这项研究旨在更好地了解蝙蝠生物声纳的工作原理,以便作者可以将这种改进的理解应用于基于相同工作原理的简单空中声纳系统的设计。它着重于组件和配置选择对生成的双耳频谱提示的影响。对由常规接收器组成的配置进行评估,以获得不同的反射强度,并将其与带有人工羽状接收器的系统进行比较。定位性能通过信息理论性能标准进行量化,该标准表示双耳光谱在相应的三维反射器位置上承载的互信息。结果表明,常规换能器的窄束宽限制了所生成的双耳频谱所携带的定位信息。有机品耳形式的更复杂的空间敏感度模式,例如毛竹毛蝙蝠物种的空间敏感度模式,提供了额外的光谱线索,极大地改善了定位信息的传递。作者发现,耳廓与头部相关的传递函数中变化的声轴具有积极作用,但是围绕变化的声轴的较高的圆周灵敏度是人造耳廓出色的定位性能的驱动力。

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