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Homeostatic neuro-metasurfaces for dynamic wireless channel management.


ABSTRACT: The physical basis of a smart city, the wireless channel, plays an important role in coordinating functions across a variety of systems and disordered environments, with numerous applications in wireless communication. However, conventional wireless channel typically necessitates high-complexity and energy-consuming hardware, and it is hindered by lengthy and iterative optimization strategies. Here, we introduce the concept of homeostatic neuro-metasurfaces to automatically and monolithically manage wireless channel in dynamics. These neuro-metasurfaces relieve the heavy reliance on traditional radio frequency components and embrace two iconic traits: They require no iterative computation and no human participation. In doing so, we develop a flexible deep learning paradigm for the global inverse design of large-scale metasurfaces, reaching an accuracy greater than 90%. In a full perception-decision-action experiment, our concept is demonstrated through a preliminary proof-of-concept verification and an on-demand wireless channel management. Our work provides a key advance for the next generation of electromagnetic smart cities.

SUBMITTER: Fan Z 

PROVIDER: S-EPMC9258947 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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Homeostatic neuro-metasurfaces for dynamic wireless channel management.

Fan Zhixiang Z   Qian Chao C   Jia Yuetian Y   Wang Zhedong Z   Ding Yinzhang Y   Wang Dengpan D   Tian Longwei L   Li Erping E   Cai Tong T   Zheng Bin B   Kaminer Ido I   Chen Hongsheng H  

Science advances 20220706 27


The physical basis of a smart city, the wireless channel, plays an important role in coordinating functions across a variety of systems and disordered environments, with numerous applications in wireless communication. However, conventional wireless channel typically necessitates high-complexity and energy-consuming hardware, and it is hindered by lengthy and iterative optimization strategies. Here, we introduce the concept of homeostatic neuro-metasurfaces to automatically and monolithically ma  ...[more]

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