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FR4-based electromagnetic energy harvester for wireless sensor nodes

机译:用于无线传感器节点的基于FR4的电磁能量收集器

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Electromagnetic (EM) energy harvesting seems to be one of the most promising ways to power wireless sensors in a wireless sensor network. In this paper, FR4, the most commonly used PCB material, is utilized as a mechanical vibrating structure for EM energy harvesting for body-worn sensors and intelligent tire sensors, which involve impact loadings. FR4 can be a better material for such applications compared to silicon MEMS devices due to lower stiffness and broadband response. In order to demonstrate FR4 performance and broadband response, three moving magnet type EM generator designs are developed and investigated throughout the paper. A velocity-damped harvester simulation model is first developed, including a detailed magnetic model and the magnetic damping effects. The numerical results agree well with the experimental results. Human running acceleration at the hip area that is obtained experimentally is simulated in order to demonstrate system performance, which results in a scavenged power of about 40 mu W with 15 m s(-2) acceleration input. The designed FR4 energy scavengers with mechanical stoppers implemented are particularly well suited for nearly periodic and non-sinusoidal high-g excitations with rich harmonic content. For the intelligent tire applications, a special compact FR4 scavenger is designed that is able to withstand large shocks and vibrations due to mechanical shock stoppers built into the structure. Using our design, 0.4 mW power across a load resistance at off-resonance operation is obtained in shaker experiments. In the actual operation, the tangential accelerations as a result of the tire-road contact are estimated to supply power around 1 mW with our design, which is sufficient for powering wireless tire sensors. The normalized power density (NPD) of the designed actuators compares favorably with most actuators reported in the literature.
机译:电磁(EM)能量收集似乎是为无线传感器网络中的无线传感器供电的最有前途的方法之一。在本文中,FR4是最常用的PCB材料,被用作机械振动结构,用于人体能量传感器和智能轮胎传感器的EM能量收集,其中涉及冲击载荷。与较低的刚性和宽带响应相比,与硅MEMS器件相比,FR4是一种更好的材料。为了证明FR4性能和宽带响应,在本文中开发并研究了三种移动磁体式EM发电机设计。首先开发了速度衰减的收割机仿真模型,其中包括详细的磁模型和磁阻尼效应。数值结果与实验结果吻合良好。为了演示系统性能,对通过实验获得的在髋部区域的人的奔跑加速度进行了仿真,以产生15 m s(-2)的加速度输入产生约40μW的扫频功率。设计的带有机械塞子的FR4能量清除剂特别适合于具有丰富谐波含量的近周期性和非正弦的高g激发。对于智能轮胎应用,设计了一种特殊的紧凑型FR4清道夫,它能够承受由于内置在结构中的机械减震器而产生的巨大冲击和振动。使用我们的设计,在振荡器实验中,在失谐操作下,负载电阻两端的功率为0.4 mW。在实际操作中,根据我们的设计,轮胎-道路接触导致的切向加速度估计可提供约1 mW的功率,足以为无线轮胎传感器供电。设计的执行器的归一化功率密度(NPD)与文献中报告的大多数执行器相比具有优势。

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