Development of a micro energy harvester using multiple vibration modes

C. Tay, C. Quan, Chengkuo Lee, Hongwei Liu
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引用次数: 1

Abstract

Energy harvesting from ambient vibrations provides a clean and regenerative solution for powering autonomous sensors which have been widely utilized in numerous practical applications including general, medical and military industries. In recent years, numerous research works on energy harvesting have been carried out using piezoelectric, electromagnetic, electrostatic and thermoelectric mechanisms. In this work, we have proposed a micro piezoelectric energy harvester with a wide operating frequency range. The device consists of a movable circular-mass with three sets of double-layer aluminum coils, a circular-ring which incorporates a permanent magnet and a supporting beam. The harvester is capable of harnessing energy at multiple vibration modes with various 3-dimensional (3-D) excitation frequencies. The 3-D dynamic behavior and performance of the device show that the first vibration mode is an out-of-plane motion, while the second and third modes are in-plane motion at angles of 60° and 150° respectively to the horizontal axis. For a specific excitation acceleration, maximum power densities can be achieved at different 3-D vibration modes. Experimental results obtained show good agreement with that of simulated and the results indicate a good potential for the device to be developed into a practical tool for harnessing energy at multiple 3-D vibration modes.
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多振动模式微能量采集器的研制
从环境振动中收集能量为自主传感器提供了一种清洁和再生的解决方案,这些传感器已广泛应用于包括通用、医疗和军事工业在内的许多实际应用中。近年来,利用压电、电磁、静电和热电机制进行了大量的能量收集研究工作。在这项工作中,我们提出了一种具有宽工作频率范围的微型压电能量采集器。该装置由一个可移动的圆体和三组双层铝线圈、一个包含永磁体的圆环和一个支撑梁组成。收割机能够在多种振动模式下利用各种三维(3-D)激励频率的能量。对该装置的三维动力特性和性能进行了分析,结果表明该装置的第一振动模态为面外运动,第二和第三振动模态分别为与水平轴成60°和150°角的面内运动。对于特定的激励加速度,在不同的三维振动模式下可以获得最大的功率密度。实验结果与仿真结果吻合较好,表明该装置具有发展成为多种三维振动模式下能量利用的实用工具的潜力。
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