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首页> 外文期刊>Journal of robotic systems >Performance of a Muscle-like 'Leaky' Pneumatic Actuator Powered by Modulated Air Pulses
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Performance of a Muscle-like 'Leaky' Pneumatic Actuator Powered by Modulated Air Pulses

机译:由调制空气脉冲驱动的类似肌肉的“泄漏”气动执行器的性能

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摘要

There is current interest in the development of legged robotic devices inspired by biological walking systems. We have developed an actuator for this type of device that closely emulates the performance of muscle. The actuator is a "leaky" single-effect air cylinder controlled through a 3-way valve that either permits charging the cylinder with compressed air or opens it to the atmosphere. To emulate muscular activation with trains of identical nerve impulses that vary in frequency, we controlled the pressure in the cylinder through pulse frequency modulation. To allow a comparison between our cylinder and muscle, we evaluated the open loop performance of the cylinder and valve system in isometric (no motion) and linear isotonic (constant load) conditions. We demonstrate that this mode of activation of the cylinder makes its behavior quite close to that of muscle. Furthermore, our cylinder/valve system generated twice the tension developed by muscle of the same cross-sectional area, with half its power-to-weight ratio.
机译:当前受到受生物步行系统启发的有腿机器人设备的开发的兴趣。我们已经为这种设备开发了一种执行器,可以紧密模拟肌肉的性能。致动器是通过三通阀控制的“漏气”单效气缸,该三通阀允许向气缸充气或向大气敞开。为了模拟频率相同但频率相同的神经冲动的肌肉激活,我们通过脉冲频率调制来控制气缸中的压力。为了比较我们的圆柱和肌肉,我们评估了在等轴测(无运动)和线性等张(恒定负载)条件下圆柱和阀系统的开环性能。我们证明了圆柱体的这种激活模式使其行为非常接近于肌肉。此外,我们的气瓶/气门系统产生了两倍于相同横截面积的肌肉所产生的张力,而其动力重量比仅为其一半。

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