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Simulation design of flexible Unpowerd lower limb exoskeleton

机译:柔性无灯管下肢外骨骼的仿真设计

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Unpowered lower limb exoskeletons has the advantages of light weight, low metabolic cost, rarely change normal gait, no external source, sustainable work, etc. It is gradually becoming a hot topic in exoskeleton robot research field. Conventional unpowered lower limb exoskeleton pay less attention to gait energy efficiency, a novel unpowered lower limb exoskeleton is proposed. Firstly, the motion characteristics of lower limbs are analyzed; the joints moment and the position of heel are obtained. Next, the structure design for flexible unpowerd lower limb exoskeleton with rubber energy storage element is developed, and the mechanism of crouch gait was analyzed. Then the musculoskeletal model with exoskeleton is established, and the joint moment for the crouch person improve obviously, which contain elastic energy storage elements with different stiffness coefficient. The joint moment for the right leg is about 33N/mm during terminal stance (heel off) or preswing (toe off), but it in the left leg appears atrough, the value is about 20N/mm. Moreover, the variable ranges of the elongation of elastic elements for the ankle is bigger than hip during walking. The results of this study can provide a theoretical basis for the optimal design of unpowered lower extremity exoskeleton.
机译:无动力的下肢外骨骼具有重量轻,代谢成本低的优点,很少改变正常的步态,没有外部来源,可持续的工作等。它正在逐渐成为外骨骼机器人研究领域的热门话题。常规的无动力下肢外骨骼较少关注步态能量效率,提出了一种新的无动力的下肢外骨骼。首先,分析了下肢的运动特性;获得关节时刻和鞋跟的位置。接下来,开发了具有橡胶储能元件的柔性无功率下肢外骨骼的结构设计,分析了蹲伏步态的机理。然后建立了具有外骨骼的肌肉骨骼模型,并且蹲伏人员的联合力矩显而易见,这含有具有不同刚度系数的弹性能量存储元件。右腿的联合时刻在终端姿势(脚跟)或预先形成(脚趾关闭)期间约为33n / mm,但它在左腿上呈缩小,值约为20n / mm。此外,脚踝的弹性元件伸长的可变范围大于行走期间的臀部。该研究的结果可以为无动力设计的下肢外骨骼的最佳设计提供理论依据。

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