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首页> 外文期刊>Bioinspiration & biomimetics >GoQBot: A caterpillar-inspired soft-bodied rolling robot
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GoQBot: A caterpillar-inspired soft-bodied rolling robot

机译:GoQBot:毛毛虫启发的软体滚动机器人

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摘要

Rolling locomotion using an external force such as gravity has evolved many times. However, some caterpillars can curl into a wheel and generate their own rolling momentum as part of an escape repertoire. This change in body conformation occurs well within 100 ms and generates a linear velocity over 0.2 m s~(-1), making it one of the fastest self-propelled wheeling behaviors in nature. Inspired by this behavior, we construct a soft-bodied robot to explore the dynamics and control issues of ballistic rolling. This robot, called GoQBot, closely mimics caterpillar rolling. Analyzing the whole body kinematics and 2D ground reaction forces at the robot ground anchor reveals about 1G of acceleration and more than 200 rpm of angular velocity. As a novel rolling robot, GoQBot demonstrates how morphing can produce new modes of locomotion. Furthermore, mechanical coupling of the actuators improves body coordination without sensory feedback. Such coupling is intrinsic to soft-bodied animals because there are no joints to isolate muscle-generated movements. Finally, GoQBot provides an estimate of the mechanical power for caterpillar rolling that is comparable to that of a locust jump. How caterpillar musculature produces such power in such a short time is yet to be discovered.
机译:使用诸如重力的外力的滚动运动已经发展了许多次。但是,有些毛毛虫可以卷成一个轮子,并产生自己的滚动动量,作为逃生手段的一部分。身体构象的这种变化在100毫秒内很好地发生,并产生超过0.2 m s〜(-1)的线速度,使其成为自然界中最快的自驱动车轮行为之一。受此行为的启发,我们构造了一个软身机器人来探索弹道滚动的动力学和控制问题。这个称为GoQBot的机器人紧密地模仿了毛毛虫的滚动。分析机器人地面锚点处的全身运动学和二维地面反作用力,可以得出大约1G的加速度和超过200 rpm的角速度。作为一种新型的滚动机器人,GoQBot演示了变形如何产生新的运动模式。此外,执行器的机械耦合改善了身体的协调性,而没有感觉反馈。这种耦合是强壮动物所固有的,因为没有关节可以隔离肌肉产生的运动。最后,GoQBot提供了与蝗虫跳跃相当的履带滚动机械功率估计。毛毛虫的肌肉组织如何在如此短的时间内产生这种力量还有待发现。

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