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Preliminary Testing of an Angled Sliding Shoe for Potential Human Energy Harvesting Applications

机译:用于潜在人能源收集应用的成角度滑动鞋的初步测试

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Human energy harvesting is a promising power source for wearable devices. However, harvesting energy during gait is still not feasible mainly because of practical problems related to increased metabolic costs. There may be potential to harvest energy from human gait without increasing metabolic cost with sliding shoes that could increase stride length. This paper presents preliminary testing on the effect of angled sliding shoes on stride length and metabolic cost. The angled sliding shoe is custom-made by mounting a sliding mechanism under the sole of a standard walking shoe. Five healthy subjects performed treadmill walking trials at 1 m/s while wearing three different pairs of shoes: angled sliding shoes, fixed shoes and normal shoes. Stride length and metabolic cost were analyzed and compared. Contrary to what was expected, walking with the angled sliding shoes decreased stride length and increased metabolic cost, possibly because of the heavy weight and high elevated heel of the angled sliding shoe. These results suggest that future versions of sliding shoes should be lighter and thinner to avoid decreasing stride length and increasing metabolic cost.
机译:人体能量收集是可穿戴设备的有希望的电源。然而,在步态期间收获能量仍然是不可行的,主要是因为与提高代谢成本相关的实际问题。可能有可能从人体步态收获能量,而不会随着滑动鞋提高可以增加步幅长度的滑动鞋的代谢成本。本文提出了初步检测对倾斜滑动鞋对步幅长度和代谢成本的影响。通过在标准行走鞋的鞋底下安装滑动机构,成角度的滑动鞋是定制的。五个健康的科目在1米/秒的时候进行了跑步机行走试验,同时穿着三双鞋:倾斜滑鞋,固定鞋和正常的鞋子。分析并比较了步伐和代谢成本。与预期的相反,走动与成角度的滑动鞋一起下降,并且可能增加代谢成本增加,可能是因为成角度滑动鞋的重量和高升高的脚跟。这些结果表明,未来的滑动鞋的版本应该更轻,更薄,以避免升高程度和提高代谢成本。

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