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一种由低压介电弹性体致动器驱动的自主无系绳快速软体机器人昆虫。

An autonomous untethered fast soft robotic insect driven by low-voltage dielectric elastomer actuators.

作者信息

Ji Xiaobin, Liu Xinchang, Cacucciolo Vito, Imboden Matthias, Civet Yoan, El Haitami Alae, Cantin Sophie, Perriard Yves, Shea Herbert

机构信息

Soft Transducers Laboratory (LMTS), École Polytechnique Fédérale de Lausanne (EPFL), Rue de la Maladière 71B, Neuchâtel 2000, Switzerland.

Integrated Actuators Laboratory (LAI), École Polytechnique Fédérale de Lausanne (EPFL), Rue de la Maladière 71B, Neuchâtel 2000, Switzerland.

出版信息

Sci Robot. 2019 Dec 18;4(37). doi: 10.1126/scirobotics.aaz6451.

Abstract

Insects are a constant source of inspiration for roboticists. Their compliant bodies allow them to squeeze through small openings and be highly resilient to impacts. However, making subgram autonomous soft robots untethered and capable of responding intelligently to the environment is a long-standing challenge. One obstacle is the low power density of soft actuators, leading to small robots unable to carry their sense and control electronics and a power supply. Dielectric elastomer actuators (DEAs), a class of electrostatic electroactive polymers, allow for kilohertz operation with high power density but require typically several kilovolts to reach full strain. The mass of kilovolt supplies has limited DEA robot speed and performance. In this work, we report low-voltage stacked DEAs (LVSDEAs) with an operating voltage below 450 volts and used them to propel an insect-sized (40 millimeters long) soft untethered and autonomous legged robot. The DEAnsect body, with three LVSDEAs to drive its three legs, weighs 190 milligrams and can carry a 950-milligram payload (five times its body weight). The unloaded DEAnsect moves at 30 millimeters/second and is very robust by virtue of its compliance. The sub-500-volt operation voltage enabled us to develop 780-milligram drive electronics, including optical sensors, a microcontroller, and a battery, for two channels to output 450 volts with frequencies up to 1 kilohertz. By integrating this flexible printed circuit board with the DEAnsect, we developed a subgram robot capable of autonomous navigation, independently following printed paths. This work paves the way for new generations of resilient soft and fast untethered robots.

摘要

昆虫一直是机器人专家的灵感源泉。它们柔顺的身体使它们能够挤过狭小的开口,并对冲击具有高度的弹性。然而,制造重量不足一克的自主软机器人,使其不受束缚并能够对环境做出智能响应,是一项长期存在的挑战。一个障碍是软驱动器的功率密度低,导致小型机器人无法携带其传感和控制电子设备以及电源。介电弹性体驱动器(DEA)是一类静电电活性聚合物,能够以高功率密度进行千赫兹操作,但通常需要几千伏电压才能达到全应变。千伏电源的质量限制了DEA机器人的速度和性能。在这项工作中,我们报告了工作电压低于450伏的低压堆叠式DEA(LVSDEA),并使用它们来驱动一个昆虫大小(40毫米长)的软质、无束缚且自主的有腿机器人。DEA昆虫机器人的身体有三个LVSDEA来驱动它的三条腿,重190毫克,能够携带950毫克的payload(是其体重的五倍)。空载的DEA昆虫机器人以30毫米/秒的速度移动,并且由于其柔顺性而非常坚固。低于500伏的工作电压使我们能够开发780毫克的驱动电子设备,包括光学传感器、微控制器和电池,用于两个通道,以输出高达1千赫兹频率的450伏电压。通过将这种柔性印刷电路板与DEA昆虫机器人集成,我们开发了一种能够自主导航、独立沿着印刷路径行进的重量不足一克的机器人。这项工作为新一代有弹性的软质和快速无束缚机器人铺平了道路。

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