Graduate School of Bio-Applications and Systems Engineering, Tokyo University of Agriculture and Technology, Tokyo 184-8588, Japan.
Research Fellow of Japan Society for the Promotion of Science, Tokyo 102-0083, Japan.
Sensors (Basel). 2020 Mar 4;20(5):1397. doi: 10.3390/s20051397.
This paper describes the utilization of the downwashes of multicopters for gas-sensing applications. Multirotor drones are an attractive platform for sensing applications. Their high maneuverability enables swift scanning of a target area with onboard sensors. When equipped with a gas sensor and used for gas-sensing applications, however, the strong downwash produced by the rotors poses a problem. When a multicopter is hovering at a low altitude, gas puffs leaked from a gas source on the ground are all blown away. Here, we propose to use two multicopters connected by a rod or a string and place a gas sensor at the midpoint of the rod/string. The downwash generated by each multicopter spreads radially after it impinges on the ground. When two multicopters are connected, the airflows spreading radially along the ground from the two multicopters impinge at the center and are deflected in the upward direction. Gas puffs wafting near the ground surface between the two multicopters are carried by this upward airflow to the gas sensor. Experimental results are presented to show the soundness of the proposed method. The connected quadcopters hovering over an ethanol gas source was able to detect the gas even with a moderate cross-flow.
本文描述了多旋翼无人机下降气流在气体传感应用中的利用。多旋翼无人机是传感应用的一个有吸引力的平台。它们的高机动性使得它们能够利用机载传感器快速扫描目标区域。然而,当配备气体传感器并用于气体传感应用时,由转子产生的强烈下降气流会带来问题。当多旋翼无人机在低空悬停时,从地面泄漏的气体喷流会被吹走。在这里,我们建议使用两个通过杆或线连接的多旋翼无人机,并在杆/线的中点放置一个气体传感器。每个多旋翼无人机的下降气流在撞击地面后会向径向扩散。当两个多旋翼无人机连接时,从两个多旋翼无人机沿地面向径向扩散的气流在中心处交汇并向上偏转。在两个多旋翼无人机之间的地面附近飘拂的气体喷流被这种上升气流带到气体传感器。实验结果表明了所提出方法的可行性。连接的四旋翼无人机在乙醇气体源上方悬停时,即使存在适度的横流也能够检测到气体。