Smart City Gnosys

Smart city article details

Title Metasurface-Enabled Multifunctional Single-Frequency Sensors Without External Power
ID_Doc 36791
Authors Tashiro M.; Ide K.; Asano K.; Ishii S.; Sugiura Y.; Uchiyama A.; Wakatsuchi H.
Year 2024
Published NPG Asia Materials, 16, 1
DOI http://dx.doi.org/10.1038/s41427-024-00574-4
Abstract IoT sensors are crucial for visualizing multidimensional and multimodal information and enabling future IT applications/services such as cyber-physical spaces, digital twins, autonomous driving, smart cities and virtual/augmented reality (VR or AR). However, IoT sensors need to be battery-free to realistically manage and maintain the growing number of available sensing devices. Here, we provide a novel sensor design approach that employs metasurfaces to enable multifunctional sensing without requiring an external power source. Importantly, unlike existing metasurface-based sensors, our metasurfaces can sense multiple physical parameters even at a fixed frequency by breaking classic harmonic oscillations in the time domain, making the proposed sensors viable for usage with limited frequency resources. Moreover, we provide a method for predicting physical parameters via the machine learning-based approach of random forest regression. The sensing performance was confirmed by estimating the temperature and light intensity, and excellent determination coefficients larger than 0.96 were achieved. Our study affords new opportunities for sensing multiple physical properties without relying on an external power source or requiring multiple frequencies, which markedly simplifies and facilitates the design of next-generation wireless communication systems. © The Author(s) 2024.
Author Keywords


Similar Articles


Id Similarity Authors Title Published
31836 View0.86Wu B.; Liu T.; Wang G.; Cui X.; Jia Y.; Wang Y.; Zhai H.Integrated Electromagnetic Sensing System Based On A Deep-Neural-Network-Intervened Genetic AlgorithmPhotonics Research, 13, 2 (2025)
7327 View0.853Mu Y.; Han J.; Liu H.; Li L.Amplitude Phase Co Modulation Radiation Type Programmable Metasurface For Intelligent Iot ApplicationsIEEE Internet of Things Journal (2025)
29227 View0.85Liu H.X.; Li Y.C.; Cheng F.J.; Wang X.; Chang M.Y.; Xue H.; Zhang S.; Han J.Q.; Li G.X.; Li L.; Cui T.J.Holographic Tensor Metasurface For Simultaneous Wireless Powers And Information Transmissions Using Polarization DiversityAdvanced Functional Materials, 34, 2 (2024)