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Optical energy harvesting in a smart materials-based micro-actuator using a vertical multi-junction PV cell

机译:使用垂直多结PV电池在基于智能材料的微执行器中收集光能

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This paper illustrates the energy harvesting principle established in an optical micro-electro-mechanical system (MEMS) using a vertical multi-junction photovoltaic cell (PV cell: 3*3*0.1 mm). The micro-system is a bistable micro-actuator which includes two active shape memory alloy elements (SMA: 3*1*0.1 mm), heated by a laser beam. The SMA elements are used as a biasing spring to activate the micro-system, In this study, the focus is only on actuating the SMA while harvesting energy converted from laser lighting. First, the laser is homogenized using an N-BK7 light pipe homogenizing rod (75*2 mm). Then, the uniformity is verified experimentally using an optoelectronic system able to measure the power on every 800 μm of the surface; resulting an average output power of 100 mW with a variation of ±9%. Next, the current/voltage (IV) curve of the PV cell is extracted, for an irradiance of 1.05 W/cm2, giving a maximum electric power of 32.5 mW. The set-up for the system is modelled using Creo software and executed by resin 3D printing. Finally, the actuation of each SMA element is done alternately (period = 6 sec) using a MEMS active mirror which steers the homogenized laser onto them. While cycling, the unused optical energy from the laser is detected by the PV cell resulting to harvest around 60 mJ per cycle. This energy is stored in a solid state thin film micro-battery. In the future work, the SMA elements will actuate the bistable micro-actuator and the quantity of energy harvested will be extracted.
机译:本文阐述了在使用垂直多结光伏电池(PV电池:3 * 3 * 0.1 mm)的光学微机电系统(MEMS)中建立的能量收集原理。该微系统是一个双稳态微执行器,它包括两个被激光束加热的活性形状记忆合金元素(SMA:3 * 1 * 0.1 mm)。 SMA元件用作偏置弹簧以激活微系统。在本研究中,重点仅在于激活SMA并同时收集从激光照明转换而来的能量。首先,使用N-BK7导光管均化棒(75 * 2 mm)均化激光器。然后,使用能够测量每800μm表面功率的光电系统,通过实验验证均匀性。产生的平均输出功率为100 mW,变化幅度为±9%。接下来,提取PV电池的电流/电压(IV)曲线,辐照度为1.05 W / cm2,最大功率为32.5 mW。该系统的设置使用Creo软件建模,并通过树脂3D打印执行。最后,使用MEMS主动镜交替操作每个SMA元件(周期= 6秒),该镜将均质化的激光引导到它们上。在循环过程中,PV电池会检测到来自激光器的未使用的光能,从而每个循环收获约60 mJ。该能量存储在固态薄膜微电池中。在未来的工作中,SMA元件将驱动双稳态微执行器,并提取所收集的能量。

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