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Impact of flight trajectory on the detection and selection of flowers by nectar-feeding bats

机译:飞行轨迹对采食花蜜蝙蝠的花朵检测和选择的影响

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Echolocating mammals, such as bats, have evolved an excellent ability to detect, select and identify the targets they depend on for their survival by echolocation even in the most challenging environments. They simultaneously adapt their trajectory and diversify transmission parameters such as waveform, bandwidth and time duration, to obtain high level detection and classification performance that is far better than that obtained by modern radar and sonar systems. This paper exploits the information available to the bat along its in-flight trajectory aiming at assessing the impact of choosing the right trajectory on detection and classification performance. A set of experimental data consisting of HRRPs of one inflorescence of Rhytidophyllum auriculatum is analysed and results are discussed and related to the case of radar and sonar systems.
机译:回声定位的哺乳动物(例如蝙蝠)已发展出出色的能力,即使在最具挑战性的环境中,也可以通过回声定位来检测,选择和识别它们赖以生存的目标。它们可以同时调整其轨迹,并使传输参数(例如波形,带宽和持续时间)多样化,以获得远高于现代雷达和声纳系统的高水平检测和分类性能。本文利用蝙蝠飞行中的轨迹信息,旨在评估蝙蝠选择正确的轨迹对检测和分类性能的影响。分析了一组由一个花序的Rhytidophyllum auriculatum的HRRP组成的实验数据,并对结果进行了讨论并与雷达和声纳系统的情况有关。

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