Department of Mechanical Engineering-Engineering Mechanics, Michigan Technological University, 1400 Townsend Drive, Houghton, MI 49931, USA.
Sensors (Basel). 2017 Nov 17;17(11):2649. doi: 10.3390/s17112649.
In this paper, we report the design, experimental validation and application of a scalable, wearable e-textile triboelectric energy harvesting (WearETE) system for scavenging energy from activities of daily living. The WearETE system features ultra-low-cost material and manufacturing methods, high accessibility, and high feasibility for powering wearable sensors and electronics. The foam and e-textile are used as the two active tribomaterials for energy harvester design with the consideration of flexibility and wearability. A calibration platform is also developed to quantify the input mechanical power and power efficiency. The performance of the WearETE system for human motion scavenging is validated and calibrated through experiments. The results show that the wearable triboelectric energy harvester can generate over 70 V output voltage which is capable of powering over 52 LEDs simultaneously with a 9 × 9 cm² area. A larger version is able to lighten 190 LEDs during contact-separation process. The WearETE system can generate a maximum power of 4.8113 mW from hand clapping movements under the frequency of 4 Hz. The average power efficiency can be up to 24.94%. The output power harvested by the WearETE system during slow walking is 7.5248 µW. The results show the possibility of powering wearable electronics during human motion.
本文报告了一种可扩展的、可穿戴的摩擦电能量收集(WearETE)系统的设计、实验验证和应用,用于从日常生活活动中收集能量。WearETE 系统具有超低的材料和制造方法成本、高可用性,以及为可穿戴传感器和电子设备供电的高可行性。泡沫和电子纺织品被用作能量收集器设计的两个主动摩擦材料,考虑了灵活性和可穿戴性。还开发了一个校准平台来量化输入机械功率和功率效率。通过实验验证和校准了 WearETE 系统对人体运动采集的性能。结果表明,可穿戴摩擦电能量收集器可以产生超过 70 V 的输出电压,能够同时为 52 个以上的 LED 供电,面积为 9×9 cm²。较大的版本在接触-分离过程中可以点亮 190 个 LED。WearETE 系统可以从频率为 4 Hz 的拍手运动中产生 4.8113 mW 的最大功率。平均功率效率可达 24.94%。在慢走过程中,WearETE 系统收集的输出功率为 7.5248 µW。结果表明,在人体运动过程中为可穿戴电子设备供电是可能的。