论文标题

透明的超材料吸收器,宽带RCS减少太阳能电池阵列

Transparent Metamaterial Absorber with Broadband RCS Reduction for Solar Arrays

论文作者

Kong, Xiangkun, Jiang, Shunliu, Kong, Lingqi, Wang, Qi, Hu, Haobin, Zhang, Xiang, Zhao, Xing

论文摘要

太阳阵列是卫星的主要能源。在本文中,提出了同时具有高光学透明度和宽带微波吸收的太阳阵列的超材料吸收器。通过调整元原子的反射反应,获得了6.8GHz至18GHz的85%吸收性能。同时,通过采用透明的底物,包括二锡氧化物(ITO)膜和抗反流玻璃,最多可以实现87%的光传递。模拟并通过实验测量了所提出的超材料吸收器的吸收性。还测量了光传递以及透明超材料吸收器对太阳阵列转化效率的影响。这些结果充分证明了我们对太阳阵列的设计的可靠性,这也满足结构强度,原子氧侵蚀性,重量限制等的要求。

Solar arrays are the primary energy source of the satellite. In this paper, a metamaterial absorber for solar arrays with simultaneous high optical transparency and broadband microwave absorption is presented. By tailoring the reflection response of meta-atoms, 85% absorption performance from 6.8GHz to 18GHz is obtained. In the meantime, by employing transparent substrates, including indium tin oxide (ITO) film and anti-reflection glass, a maximum of 87% light transmittance is achieved. The absorptivity of the proposed metamaterial absorber is simulated and measured experimentally. Light transmittance and the effect of transparent metamaterial absorber on the conversion efficiency of the solar array have also been measured. These results fully demonstrate the reliability of our design for solar arrays, which also meet the requirements of structural strength, atomic oxygen erosion resistance, weight limitation, etc.

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