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A HYBRID ENERGY HARVESTING SYSTEM BASED ON SOLAR RADIATION AND MECHANICAL VIBRATION

机译:一种基于太阳辐射和机械振动的混合能量收集系统

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Hybrid energy harvesting is a concept that can be applied to improve the performance of the conventional stand-alone energy harvesters. In this study, a hybrid energy harvesting device is presented that harvests energy from solar radiation and mechanical vibration by simultaneously combining the photovoltaic, piezoelectric, electrostatic, and electromagnetic mechanisms. The device consists of a bimorph piezoelectric cantilever beam having Lead Zirconate Titanate crystal layers on top and bottom surfaces of an Aluminum substrate. Two sets of comb electrodes (capacitors) are attached on two sides of the substrate. A permanent magnet is attached at the tip which oscillates within a stationary coil inside a casing. The exterior surface of the casing is covered by organic photovoltaic panel that captures energy from illumination. All the segments are interconnected by an electric circuit to generate combined output when subjected to solar radiation and mechanical vibration. Results for power output are obtained at the first resonance frequency of the beam with a common optimum load resistance. As the power outputs of all the mechanisms are combined, a high power efficiency can be achieved by the proposed hybrid energy harvester.
机译:混合能量收集是一种概念,可以应用于改善传统独立能量收割机的性能。在该研究中,通过同时组合光伏,压电,静电和电磁机制,提出了一种混合能量收集装置,从太阳辐射和机械振动收获能量。该装置由双模压电悬臂梁组成,其具有铝基板的顶表面上的引线锆型钛酸盐晶体层。两组梳状电极(电容器)连接在基板的两侧。永磁体在尖端附接到壳体内的固定线圈内振荡。壳体的外表面被有机光伏面板覆盖,其捕获从照明的能量。所有段通过电路互连,以在经过太阳辐射和机械振动时产生组合输出。功率输出的结果是在具有常见最佳负载电阻的光束的第一谐振频率下获得的。随着所有机构的功率输出组合,通过提出的混合能量收割机可以实现高功率效率。

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