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An SSHI Rectifier for Triboelectric Energy Harvesting

机译:用于摩擦电能收集的SSHI整流器

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In this article, a synchronized switching harvesting on inductor (SSHI)-based rectifier for triboelectric energy harvesting is reported for the first time. In the recent few years, triboelectric energy harvesters (TEs), also called triboelectric nanogenerators (TENGs), are emerging and extensively studied, which provide promising solutions for converting mechanical energy to electricity as power resources for electronics. To practically power electronics from TENGs, a power management module with high energy efficiency is also essential. The state of the art of power management circuits for triboelectric energy harvesting is mainly focused on increasing dc-dc power efficiency technically. In this article, we report an SSHI rectifying strategy associated with TEH design and provide a new perspective on designing TEHs or TENGs by considering their capacitance concurrently. A new theoretical model is developed for electricity generation from triboelectric energy harvesting considering the introduced pairing capacitance and the impact force under practical condition. We also demonstrate that ultralow-cost, easy-fabricated TEHs can also generate a reasonable amount of power. The experimental results show that the proposed SSHI rectifier increases the harvested power by 242.83 when compared with a full-wave bridge rectifier for a newly designed low-cost TEH. The proposed SSHI interface provides a promising strategy of rectifier design to enhance ac-dc energy efficiency for triboelectric energy harvesting.
机译:在本文中,首次报道了基于电感器(SSHI)的整流器上的同步开关收集,用于摩擦电能的收集。在最近几年,摩擦电能量收集器(TE),也称为摩擦电纳米发电机(TENG),正在出现并得到广泛研究,它们为将机械能转化为电能作为电子的动力资源提供了有希望的解决方案。对于TENG的实际电力电子设备来说,具有高能效的电源管理模块也必不可少。用于摩擦电能收集的电源管理电路的技术水平主要集中在技术上提高dc-dc功率效率方面。在本文中,我们报告了与TEH设计相关的SSHI整流策略,并通过同时考虑TEH或TENG的电容提供了设计TEH或TENG的新视角。考虑到引入的配对电容和实际条件下的冲击力,开发了一种新的理论模型,用于从摩擦电能收集中进行发电。我们还证明,超低成本,易于制造的TEH还可产生合理数量的功率。实验结果表明,与用于新设计的低成本TEH的全波桥式整流器相比,拟议的SSHI整流器将收获的功率提高了242.83。拟议的SSHI接口提供了一种有前途的整流器设计策略,可以提高交流-直流能效以收集摩擦电能。

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