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Enhanced vibrational energy harvester based on velocity amplification

机译:基于速度放大的增强型振动能量采集器

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This article presents a fundamental investigation in which velocity amplification is employed in non-resonant structures to enhance the power harvested from ambient vibrations. Velocity amplification is achieved utilising sequential collisions between free-moving masses, and the final velocity is proportional to the number of masses and the mass ratios selected. The governing theory is discussed, particularly how the final velocity scales with the number of masses. This article examines n-mass velocity-amplified vibration energy harvesters and examines their performance relative to single-mass harvesters. Electromagnetic energy conversion is chosen as it is fundamental in allowing the free movement of the masses. Experimental results from two- and three-mass prototypes are presented that demonstrate a wider frequency response and a gain in power of 33 times compared to single-mass configurations under wideband random excitation. The volume of the devices was constrained, which resulted in the two-mass system outperforming the triple-mass system counter to expectations. This was caused by the triple-mass device experiencing an increased number of impact due to the volume constraint, leading to high losses in the system. It is recommended that in order to realise the full benefits of the triple-mass system, additional volume for mass actuation is required.
机译:本文提出了一项基础研究,其中在非谐振结构中采用速度放大来增强从环境振动中收集的功率。利用自由移动质量之间的顺序碰撞来实现速度放大,并且最终速度与质量数和所选的质量比成正比。讨论了控制理论,特别是最终速度如何与质量数成比例。本文研究了n质量速度放大的振动能量收集器,并研究了其相对于单质量收集器的性能。选择电磁能转换,因为它是允许质量自由运动的基础。给出了两个和三个质量原型的实验结果,这些结果表明,在宽带随机激励下,与单个质量配置相比,其频率响应更宽,功率增益提高了33倍。设备的体积受到限制,导致两质量系统的性能优于三质量系统,与预期相违背。这是由于三重设备由于体积限制而受到越来越多的冲击,从而导致系统中的高损失。建议为了实现三质量系统的全部好处,需要更大的体积来进行质量驱动。

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