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Analysis and Modeling of Infrared Solar Rectennas

机译:红外太阳直肠的分析与建模

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In this paper, an investigation is presented into infrared nanoantennas for solar energy harvesting at 10-$mu$m wavelength, where considerable solar energy is available. These antennas have been modeled using both the integral equation model and the circuit model. The method of moments has been utilized to solve Hallen’s and Pocklington’s integral equations to find the current distribution over the antenna surface by considering the conductivity and the dielectric properties of gold at this wavelength, as well as its effect on the antenna performance. For verification of the obtained results, this antenna has been simulated using a finite element method-based electromagnetic simulator and both results were found to be consistent. In addition, the metal/insulator/metal (MIM) diode has been studied and its equivalent circuit is presented. Furthermore, a solar rectenna has been constructed by overlapping the antenna arms over a small area to incorporate the MIM diode. The circuit of the solar rectenna, with mathematical expressions for the elements of the equivalent circuit, is demonstrated. Finally, a parametric study into the effect of the MIM diode on the captured voltage is conducted.
机译:本文针对波长为10- $ mu $ m波长的太阳能捕获的红外纳米天线进行了研究,太阳能可用。这些天线已经使用积分方程模型和电路模型进行了建模。通过考虑金在该波长下的电导率和介电特性及其对天线性能的影响,利用矩量法来求解Hallen和Pocklington的积分方程,以找到天线表面的电流分布。为了验证所获得的结果,已使用基于有限元方法的电磁模拟器对该天线进行了模拟,发现这两个结果是一致的。此外,还对金属/绝缘体/金属(MIM)二极管进行了研究,并提出了等效电路。此外,通过将天线臂重叠在一个很小的区域上来构造一个太阳能整流天线,以合并MIM二极管。用等效电路各元素的数学表达式,说明了太阳能整流天线的电路。最后,对MIM二极管对捕获电压的影响进行了参数研究。

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