首页> 外文期刊>IEEE Robotics and Automation Letters >Towards the Long-Endurance Flight of an Insect-Inspired, Tailless, Two-Winged, Flapping-Wing Flying Robot
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Towards the Long-Endurance Flight of an Insect-Inspired, Tailless, Two-Winged, Flapping-Wing Flying Robot

机译:朝着长期耐力飞行的昆虫灵感,无尾,双翼,扑翼飞行机器人

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A hover-capable insect-inspired flying robot that can remain long in the air has shown its potential use for both confined indoor and outdoor applications to complete assigned tasks. In this letter, we report improvements in the flight endurance of our 15.8 g robot, named KUBeetle-S, using a low-voltage power source. The robot is equipped with a simple but effective control mechanism that can modulate the stroke plane for attitude stabilization and control. Due to the demand for extended flight, we performed a series of experiments on the lift generation and power requirement of the robot with different stroke amplitudes and wing areas. We show that a larger wing with less inboard wing area improves the lift-to-power ratio and produces a peak lift-to-weight ratio of 1.34 at 3.7 V application. Flight tests show that the robot employing the selected wing could hover for 8.8 minutes. Moreover, the robot could perform maneuvers in any direction, fly outdoors, and carry payload, demonstrating its ability to enter the next phase of autonomous flight.
机译:一种能够在空气中保持长时间的悬浮能力的昆虫激发飞行机器人已经为狭窄的室内和室外应用程序潜在使用,以完成分配的任务。在这封信中,我们使用低压电源报告了我们的15.8g机器人的飞行耐力的改进,使用低压电源。机器人配备了简单但有效的控制机构,可以调节行程平面以进行姿态稳定和控制。由于对扩展飞行的需求,我们对具有不同行程幅度和机翼区域的机器人的提升生成和电力要求进行了一系列实验。我们表明,具有较少内侧翼面积的较大翼提高了升力比,并在3.7V施用时产生1.34的峰值升力比。飞行测试表明,采用所选机翼的机器人可以将悬停在8.8分钟。此外,机器人可以在任何方向,户外飞行,携带有效载荷,展示其进入自主飞行的下一阶段的能力。

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