Liu Yong Han, Li Xu Hang, Zhang Ze Tong, Qi Kai Nan, Lu Lan, Wang Shi Yu, Li Yun Bo
State Key Laboratory of Millimeter Waves, Southeast University, Nanjing, 210096, China.
Science and Technology on Electromagnetic Scattering Laboratory, Beijing, 100854, China.
Adv Sci (Weinh). 2024 Oct;11(40):e2406841. doi: 10.1002/advs.202406841. Epub 2024 Aug 29.
The passive sensing and active control of electromagnetic (EM) waves have always been attractive in electronic and information areas, especially during the intelligent era. Here a new method is presented to achieve the angle sensing of incident wave and adaptive control of backward scattering using the intelligent metasurface. The proposed unit cells have the ability to dynamically manipulate the receiving and reflection of the EM energy respectively. The angle sensing of incident waves can be actualized using the method of compressive sensing based on multiple receiving patterns, which are generated by randomly switching the receiving and reflection states of the unit cells. Afterward, the customized performances of backward scattering waves according to the cognitive incident angle can be realized by controlling the programmable reflective phases of unit cells correspondingly. One prototype composed of the metasurface and the module for sensing and adaptive feedback control is fabricated. The whole intelligent metasurface with customizing the function of retro-reflection or low scattering is measured without human intervention and the good results acquired can verify the validity of the proposed concept and design.
电磁(EM)波的被动传感和主动控制在电子和信息领域一直具有吸引力,尤其是在智能时代。本文提出了一种利用智能超表面实现入射波角度传感和后向散射自适应控制的新方法。所提出的单元结构能够分别动态地操纵电磁能量的接收和反射。基于多个接收模式的压缩感知方法可以实现入射波的角度传感,这些接收模式是通过随机切换单元结构的接收和反射状态产生的。随后,通过相应地控制单元结构的可编程反射相位,可以实现根据认知入射角定制后向散射波的性能。制作了一个由超表面以及传感和自适应反馈控制模块组成的原型。整个具有定制后向反射或低散射功能的智能超表面在无人干预的情况下进行了测量,获得的良好结果可以验证所提出概念和设计的有效性。