Žižys Darius, Gaidys Rimvydas, Ostaševičius Vytautas, Narijauskaitė Birutė
Faculty of Mechanical Engineering and Design, Kaunas University of Technology, Studentu 56, Kaunas LT-51368, Lithuania.
Institute of Mechatronics, Kaunas University of Technology, Studentu 56-123, Kaunas LT-51368, Lithuania.
Sensors (Basel). 2017 Apr 27;17(5):970. doi: 10.3390/s17050970.
Frequency up-conversion is a promising technique for energy harvesting in low frequency environments. In this approach, abundantly available environmental motion energy is absorbed by a Low Frequency Resonator (LFR) which transfers it to a high frequency Piezoelectric Vibration Energy Harvester (PVEH) via impact or magnetic coupling. As a result, a decaying alternating output signal is produced, that can later be collected using a battery or be transferred directly to the electric load. The paper reports an impact-coupled frequency up-converting tandem setup with different LFR to PVEH natural frequency ratios and varying contact point location along the length of the harvester. RMS power output of different frequency up-converting tandems with optimal resistive values was found from the transient analysis revealing a strong relation between power output and LFR-PVEH natural frequency ratio as well as impact point location. Simulations revealed that higher power output is obtained from a higher natural frequency ratio between LFR and PVEH, an increase of power output by one order of magnitude for a doubled natural frequency ratio and up to 150% difference in power output from different impact point locations. The theoretical results were experimentally verified.
频率上转换是一种在低频环境中进行能量收集的很有前景的技术。在这种方法中,大量可用的环境运动能量被低频谐振器(LFR)吸收,该谐振器通过冲击或磁耦合将能量传递给高频压电振动能量收集器(PVEH)。结果,产生一个衰减的交流输出信号,该信号随后可使用电池收集或直接传输到电负载。本文报道了一种冲击耦合频率上转换串联装置,其具有不同的LFR与PVEH固有频率比以及沿收集器长度变化的接触点位置。通过瞬态分析得出了具有最佳电阻值的不同频率上转换串联装置的均方根功率输出,揭示了功率输出与LFR - PVEH固有频率比以及冲击点位置之间的密切关系。模拟结果表明,LFR与PVEH之间较高的固有频率比可获得更高的功率输出,固有频率比翻倍时功率输出增加一个数量级,不同冲击点位置的功率输出差异高达150%。理论结果得到了实验验证。