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首页> 外文期刊>Robotics and Autonomous Systems >SPIRAL: A novel biologically-inspired algorithm for gas/odor source localization in an indoor environment with no strong airflow
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SPIRAL: A novel biologically-inspired algorithm for gas/odor source localization in an indoor environment with no strong airflow

机译:螺旋:一种新颖的生物启发算法,可在室内空气不强烈流动的情况下对气体/气味源进行定位

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摘要

This work describes the design and experimental results of an algorithm, designed to localize a gas source in an indoor environment with no strong airflow by using an autonomous agent. This condition exacerbates the patchiness and intermittency of odor distribution, typical of turbulent flows in the presence of strong mean flows. Furthermore, no information about the wind can be used to detect the position of the source. In the approach proposed here, the robot moves along spirals. A spiral can be reset and a new one started, based on the information acquired about gas distribution. This enables the robot to get close to the ejecting source, without relying on airflow measurements. Results from experiments are also described and discussed, to assess the efficiency of the proposed method.
机译:这项工作描述了一种算法的设计和实验结果,该算法旨在通过使用自主代理来在没有强烈气流的室内环境中定位气体源。这种情况加剧了气味分布的不连续性和间歇性,这是强平均流存在时湍流的典型特征。此外,关于风的信息不能用于检测源的位置。在这里提出的方法中,机器人沿螺旋运动。根据获取的有关气体分配的信息,可以重置螺旋并开始新的螺旋。这使机器人无需依靠气流测量就可以接近喷射源。还描述和讨论了实验结果,以评估所提出方法的效率。

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