日本フィジカルAI新聞

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週刊ニュースレター購読
センサ統合arXiv:2608.21699v1

羽ばたき昆虫サイズ航空ロボットのためのアクチュエータと付属肢における昆虫様分散型固有受容

Towards insect-like distributed proprioception in actuators and appendages for flapping-wing insect-scale aerial robots

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昆虫サイズの羽ばたき飛行ロボットに、駆動アクチュエータとピッチヒンジに組み込む薄膜圧電ポリマーセンサを開発し、ストローク角とピッチ角を正確に計測できることを示した。衝突検出や非同期羽ばたきなどの応用も実証した。

著者: Alexander Hedrick, Arvind Gupta, Kaushik Jayaram

分類: cs.RO

原文アブストラクト

Modern flapping-wing insect-scale air vehicles display agility similar to that of their insect counterparts; however, these impressive maneuvers are only possible with off-board sensors like optical tracking cameras. In this manuscript, we introduce two embedded proprioceptive sensors for insect-scale aerial robots: thin film piezoelectric polymers integrated directly into a driving actuator and a pitching hinge which track stroke and pitch angle, respectively. We fabricate the aforementioned size-agnostic mechanically intelligent structures (sensor-actuator, sensor-flexure) using laminate stack fabrication methods. Chirp experiments with our sensors integrated into an insect-size flapping-wing robot show accurate tracking of stroke (RMSE = 0.44 deg) and pitch (RMSE = 2.44 deg) angles in the relevant frequency range. As the first step towards demonstrating the utility of these sensors for enabling numerous onboard autonomy applications, including closed-loop wingbeat control and sensor fusion with existing insect-scale sensor suites for more accurate proprioception and localization, we show one application for each sensor. The proprioceptive hinge enables collision detection, reducing the chance of permanent damage if the robot's wing collides with an object. The proprioceptive actuator enables asynchronous flapping, which is hypothesized to increase adaptability and efficiency in insects and robots alike. A microrobot equipped with our proprioceptive actuator allows us to test these hypotheses with potential for improving flapping aerial robot performance. We foresee proprioceptive sensors having an important role in progressing both the fields of insect-scale aerial robots and robo-physics due to the bio-inspired nature and high integration level of our sensors.