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Optimizing the Output of a Human-Powered Energy Harvesting System With Miniaturization and Integrated Control

机译:通过小型化和集成控制来优化人力能量采集系统的输出

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We propose a novel harvesting technology to inconspicuously transduce mechanical energy from human foot-strikes and explore its configuration and control toward optimized energy output. Dielectric elastomers (DEs) are high-energy density, soft material that electrostatically transduce mechanical energy. These properties enable increased energy-transduction efficiency without sacrificing user comfort, if configured and controlled properly. We expose key statistical properties of human gait, which show that an array of miniaturized harvesters across the foot-sole will improve energy output. Further, the gait properties naturally yield a closed-loop control strategy to individually control harvesters in the array in a manner that maximizes net energy output. We propose statistical techniques that guide the configuration and control of the harvester array, and evaluate system behavior from detailed analytical and empirical models of DE behavior. System evaluations based on experimentally collected foot pressure data sets show that the proposed system can achieve up to 120 mJ per foot-strike.
机译:我们提出了一种新颖的收割技术,以不显眼的方式从人的脚步中传导机械能,并探索其配置和控制,以实现最佳的能量输出。介电弹性体(DEs)是高能量密度的柔软材料,可以静电方式转换机械能。如果配置和控制得当,这些特性可在不牺牲用户舒适度的情况下提高能量转换效率。我们揭示了人的步态的关键统计属性,表明脚底上的一系列小型收割机将提高能量输出。此外,步态特性自然会产生一种闭环控制策略,以最大化净能量输出的方式分别控制阵列中的收割机。我们提出统计技术,指导收割机阵列的配置和控制,并根据详细的DE行为分析和经验模型评估系统行为。基于实验收集的足部压力数据集的系统评估表明,提出的系统每英尺震荡可达到120 mJ。

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