Wang Si Ran, Dai Jun Yan, Zhou Qun Yan, Ke Jun Chen, Cheng Qiang, Cui Tie Jun
State Key Laboratory of Millimeter Waves, Southeast University, Nanjing, 210096, China.
Institute of Electromagnetic Space, Southeast University, Nanjing, 210096, China.
Nat Commun. 2023 Sep 4;14(1):5377. doi: 10.1038/s41467-023-41031-0.
Manipulations of multiple carrier frequencies are especially important in a variety of fields like radar detection and wireless communications. In conventional radio-frequency architecture, the multi-frequency control is implemented by microwave circuits, which are hard to integrate with antenna apertures, thus bringing the problems of expensive system and high power consumption. Previous studies demonstrate the possibility to jointly control the multiple harmonics using space-time-coding digital metasurface, but suffer from the drawback of inherent harmonic entanglement. To overcome the difficulties, we propose a multi-partition asynchronous space-time-coding digital metasurface (ASTCM) to generate and manipulate multiple frequencies with more flexibility. We further establish an ASTCM-based transmitter to realize wireless communications with frequency-division multiplexing, where the metasurface is responsible for carrier-wave generations and signal modulations. The direct multi-frequency controls with ASTCM provides a new avenue to simplify the traditional wireless systems with reduced costs and low power consumption.
对多个载波频率进行操控在诸如雷达探测和无线通信等众多领域尤为重要。在传统射频架构中,多频控制是通过微波电路实现的,而微波电路难以与天线孔径集成,从而带来系统成本高昂和功耗高的问题。先前的研究表明,利用时空编码数字超表面联合控制多个谐波具有可能性,但存在固有谐波纠缠的缺点。为克服这些困难,我们提出一种多分区异步时空编码数字超表面(ASTCM),以更灵活地生成和操控多个频率。我们进一步建立了一个基于ASTCM的发射机,以实现频分复用的无线通信,其中超表面负责载波生成和信号调制。ASTCM的直接多频控制为简化传统无线系统提供了一条新途径,可降低成本并降低功耗。