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首页> 外文期刊>Journal of land use science >Moth-inspired navigation algorithm in a turbulent odor plume from a pulsating source
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Moth-inspired navigation algorithm in a turbulent odor plume from a pulsating source

机译:来自脉动源的湍流气味羽流的飞蛾启发的导航算法

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Some female moths attract male moths by emitting series of pulses of pheromone filaments propagating downwind. The turbulent nature of the wind creates a complex flow environment, and causes the filaments to propagate in the form of patches with varying concentration distributions. Inspired by moth navigation capabilities, we propose a navigation strategy that enables a flier to locate an upwind pulsating odor source in a windy environment using a single threshold-based detection sensor. This optomotor anemotaxis strategy is constructed based on the physical properties of the turbulent flow carrying discrete puffs of odor and does not involve learning, memory, complex decision making or statistical methods. We suggest that in turbulent plumes from a pulsating point source, an instantaneously measurable quantity referred as a "puff crossing time", improves the success rate as compared to the navigation strategies based on temporally regular zigzags due to intermittent contact, or an "internal counter", that do not use this information. Using computer simulations of fliers navigating in turbulent plumes of the pulsating point source for varying flow parameters such as turbulent intensities, plume meandering and wind gusts, we obtained statistics of navigation paths towards the pheromone sources. We quantified the probability of a successful navigation as well as the flight parameters such as the time spent searching and the total flight time, with respect to different turbulent intensities, meandering or gusts. The concepts learned using this model may help to design odor-based navigation of miniature airborne autonomous vehicles.
机译:一些女性蛾子通过发射展开风传播的信息素细丝系列脉冲来吸引雄性飞蛾。风的湍流性质产生复杂的流动环境,使细丝以不同浓度分布的斑块的形式传播。灵感来自飞蛾导航能力,我们提出了一种导航策略,该导航策略使得一键能够使用基于单个阈值的检测传感器在风环境中定位逆风脉动气味源。该亮片气象策略是基于携带离散气味的湍流的物理性质,并且不涉及学习,记忆,复杂的决策或统计方法。我们建议在来自脉动点源的湍流羽毛中,与基于间歇触点的时间常规曲折或“内部计数器”或“内部计数器”或“内部计数器”,在脉动点源的湍流羽毛中提高了瞬时可测量的量,从而提高了与基于时间常规曲折的导航策略相比的成功率或“内部计数器“,不使用此信息。利用计算机模拟在脉动点源的湍流羽毛中导航的脉动点源,以改变流量参数,如湍流强度,羽流曲折和风力阵风,我们获得了朝向信息素来源的导航路径统计。我们量化了成功导航的概率以及飞行参数,例如搜索的时间和总飞行时间,相对于不同的湍流强度,蜿蜒或阵风。使用此模型学习的概念可能有助于设计基于气味的微型空气传播自动车辆的导航。

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