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Tapered nonlinear vibration energy harvester for powering Internet of Things

机译:锥形非线性振动能量收割机供电信息

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The lack of a sustainable power source to substitute batteries for long-term applications limits the widespread deployment of wireless sensor nodes in this era of the Internet of Things. Conventional linear Vibration Energy Harvesters are inefficient in converting ambient mechanical energy into usable electrical energy owing to their narrow frequency bandwidth when harnessing mechanical energy that is spread over a wide range of frequencies. In this work, we design, develop and demonstrate high power density nonlinear wideband energy harvesters using novel tapered spring architectures in an autonomous wireless sensor node system. These spring structures exhibit a nonlinear restoring force arising from the atypical stress distribution that can be additionally tuned by changing the taper-ratio in the structure. We investigate different tapering designs in order to achieve optimal spring hardening nonlinearities. This nonlinearity aids in widening the operable bandwidth, making the harvesters suitable for scavenging energy from real-world broadband vibrations. We obtain power densities of the order of 2660 mu W/cm(3)g(2) in the nonlinear energy harvester, outpacing most contemporary energy scavengers. We present a modified Perturb and Observe algorithm that allows tracing of the maximum power point in the context of non-stationary vibration conditions. We use the fabricated nonlinear device to power a wireless sensor node that reports on vital physical parameters (humidity, temperature), thereby enabling a resilient remote data acquisition system. This demonstrates the potential of our design to provide a sustainable energy source for platforms within the Internet of Things.
机译:缺乏可持续的电源来替代长期应用的电池限制了内容互联网时代的无线传感器节点的广泛部署。传统的线性振动能量收割机由于它们在利用在广泛频率范围内的机械能时,由于它们的窄频率带宽而导致环境机械能量效率低下。在这项工作中,我们使用自主无线传感器节点系统中的新型锥形弹簧架构设计,开发和展示高功率密度非线性宽带能量收割机。这些弹簧结构表现出由非典型应力分布产生的非线性恢复力,其可以通过改变结构中的锥形比来另外调整。我们调查不同的锥形设计,以实现最佳的弹簧硬化非线性。这种非线性有助于扩大可操作的带宽,使得采用适用于来自现实世界宽带振动的清除能量的收割机。我们在非线性能量收割机中获得2660亩/厘米(3)G(2)的电力密度,超越大多数当代能源清除剂。我们介绍了一种修改的扰动和观察算法,允许在非静止振动条件的上下文中追踪最大功率点。我们使用制造的非线性设备为无线传感器节点供电,该无线传感器节点报告了重要的物理参数(湿度,温度),从而能够启用弹性远程数据采集系统。这展示了我们设计的潜力,以便为事物互联网中的平台提供可持续的能源来源。

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