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首页> 外文期刊>Journal of intelligent material systems and structures >A vibrating cantilever footfall energy harvesting device
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A vibrating cantilever footfall energy harvesting device

机译:振动悬臂式落地能量收集装置

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摘要

Human footfall is an attractive source of energy for harvesting for low-power applications. However, the nature of footfall is poorly matched to electromagnetic generators. Footfall motion is characterised by high forces and low speeds, while electromagnetic generators are normally most efficient at relatively high speed. This article proposes a novel mechanism for converting the low-speed motion of footfall to a higher speed oscillating motion suitable for electromagnetic power generation. The conversion is achieved using a cantilever beam which is deflected by the footfall motion using a special 'striker' mechanism which then allows the cantilever to oscillate freely at a relatively high speed. An arrangement of permanent magnets attached to the cantilever causes an alternating magnetic field, and a stationary coil converts this to a usable voltage. This article describes the mechanism and provides a mathematical model of its behaviour which allows the system parameters to be optimised and its performance predicted. The performance of a prototype device is presented, and it is shown that this is capable of generating up to 60 mJ/step and that the conversion efficiency is up to 55%.
机译:人类的脚步声对于低功率应用而言是一种诱人的能源。但是,人行道的性质很难与电磁发生器相匹配。脚步运动的特点是力量大,速度慢,而电磁发电机通常在相对较高的速度下效率最高。本文提出了一种新颖的机制,用于将人行道的低速运动转换为适用于电磁发电的高速振荡运动。使用悬臂梁实现转换,该悬臂梁通过特殊的“冲击器”机制由落脚运动偏转,然后使悬臂以相对较高的速度自由振荡。固定在悬臂上的永磁体的排列会产生交变磁场,而固定线圈会将其转换为可用电压。本文介绍了该机制,并提供了其行为的数学模型,该模型允许优化系统参数并预测其性能。展示了原型设备的性能,结果表明该设备能够产生高达60 mJ /步的能量,转换效率高达55%。

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