Liu Baiyang, He Yejun, Wong Sai-Wai, Li Yin
Opt Express. 2021 Jan 18;29(2):740-750. doi: 10.1364/OE.414408.
By generating an artificial Doppler shift, a Doppler cloak can compensate for the Doppler shift from a moving object. An object covered by a Doppler cloak will be detected as a static object, even if it is actually moving. Herein, we experimentally demonstrate the Doppler cloak in a radar system using a time-domain digital-coding metasurface. We theoretically illustrate an active metasurface with a modulated reflection phase that can imitate the motion of moving, thereby generating an artificial Doppler shift for a Doppler cloak. Moreover, a reflective metasurface composed of voltage-controlled varactor diodes with a 3-bit reflection phase was designed and fabricated. Finally, we experimentally demonstrate that an artificial Doppler shift for a Doppler cloak is obtained from the proposed metasurface using a discrete time-varying bias voltage. Simulation and measurement results show that the proposed time-domain digital-coding metasurface can cancel the Doppler shift and serve as a Doppler cloak. The proposed metasurface may have potential applications in a Doppler radar illusion, Doppler cancellation in vehicle-to-vehicle communications, and wireless communications.
通过产生人工多普勒频移,多普勒隐身衣可以补偿来自移动物体的多普勒频移。即使一个物体实际上在移动,被多普勒隐身衣覆盖的物体也会被检测为静止物体。在此,我们在雷达系统中使用时域数字编码超表面通过实验证明了多普勒隐身衣。我们从理论上说明了一种具有调制反射相位的有源超表面,它可以模仿移动的运动,从而为多普勒隐身衣产生人工多普勒频移。此外,设计并制造了一种由具有3位反射相位的压控变容二极管组成的反射超表面。最后,我们通过实验证明,使用离散时变偏置电压可以从所提出的超表面获得用于多普勒隐身衣的人工多普勒频移。仿真和测量结果表明,所提出的时域数字编码超表面可以消除多普勒频移并用作多普勒隐身衣。所提出的超表面可能在多普勒雷达错觉、车对车通信中的多普勒消除以及无线通信中具有潜在应用。