首页> 外文会议>2nd international conference on energy sustainability 2008 >MOTION ENERGING HARVESTING USING CATCH-AND-RELEASE MECHANISM
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MOTION ENERGING HARVESTING USING CATCH-AND-RELEASE MECHANISM

机译:利用捕捉和释放机制进行运动捕捉

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Small-scale motion energy harvesting has garnered significant interest in recent years, especially given advances in piezoelectric materials, but with limited commercial application. Most harvesting methods to date, including those employing magnetic induction, have focused on coupled resonance. Such harvesters are tuned to resonate with their excitation source and have shown promise in capturing moderately high-frequency (>10Hz), low-displacement motion that is steady. However, coupled harvesters lose efficiency significantly when a source deviates slightly in frequency. They also require large masses and/or buoyant volumes to efficiently capture low frequency (<10Hz) motion. We have been developing a novel technology that combines electromagnetic induction with a proprietary catch-and-release mechanism that absorbs an input motion and then releases it at a much higher frequency to improve conversion efficiency. The energy harvester is simple, compact, and insensitive to excitation frequency. Initial prototypes have demonstrated power densities and specific powers many multiples greater than the best-performing, commercial vibration harvester. We have also developed a validated computer model of the system that indicates that performance could be improved 2-4 times over initial prototypes.
机译:近年来,小规模的运动能量收集引起了人们的极大兴趣,特别是考虑到压电材料的进步,但商业应用受到限制。迄今为止,大多数收获方法,包括采用磁感应的方法,都集中在耦合共振上。此类收割机经过调谐,可与其激发源产生共振,并显示出捕获稳定的中等高频(> 10Hz),低位移运动的希望。但是,当源的频率略有偏离时,耦合的收割机会大大降低效率。它们还需要较大的质量和/或浮力才能有效捕获低频(<10Hz)运动。我们一直在开发一种新技术,该技术将电磁感应与专有的捕捉和释放机制相结合,该机制吸收输入运动,然后以更高的频率释放输入运动,以提高转换效率。能量收集器简单,紧凑且对激励频率不敏感。最初的原型已经展示出功率密度和比功率,其性能比性能最佳的商用振动采集器高出许多倍。我们还开发了经过验证的系统计算机模型,该模型表明性能可以比原始原型提高2-4倍。

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