This paper evaluates the capabilities of a soft robotic pneumatic actuator derived from the terrain display haptic device, "The Smart Shoe." The bladder design of the Smart Shoe is upgraded to include a pressure supply and greater output flow capabilities. A bench top setup is created to rigorously test this new type of actuator. The bandwidth and stiffness capability of this new actuator are evaluated relative to forces and displacements encountered during human gait. Four force vs. displacement profiles relevant to haptic terrain display are proposed and tested using sliding-mode tracking control. It was found that the actuator could sustain a stiffness similar to a soft-soled shoe on concrete, as well as other terrain (sand, dirt, etc.), while the bandwidth of 7.3 Hz fell short of the goal bandwidth of 10 Hz. Compressions of the bladder done at 20 mm/s, which is similar to the speed of human gait, showed promising results in tracking a desired force trajectory. The results in this paper show this actuator is capable of displaying haptic terrain trajectories, providing a basis for futurep wearable haptic terrain display devices.
翻译:本文评估了从地形显示突变设备“ 智能鞋” 产生的软机器人气动动能的能力。 智能鞋的膀胱设计升级, 以包括压力供应和更大的输出流能力。 创建了台阶顶部设置, 严格测试这种新型的动画机。 与人类动作过程中遇到的力和变位相比, 新的动画机的带宽和硬度能力进行了评估。 与偶然地形显示相关的移位剖面的四度对比, 使用滑动式摩德跟踪控制进行提议和测试。 发现演动器可以保持类似于软溶鞋在水泥和其他地形( 沙土等) 的僵硬度, 而7.3赫兹的带宽比10赫兹的目标带宽要短。 20毫米/ 毫米/ 的膀胱的压缩与人类动作的速度相似, 显示追踪所需力轨迹的有希望的结果。 本文的演动画显示, 能够显示断动的地形轨迹, 为未来磨损地形显示显示设备提供基础。