Ou Zhan, Liang Yuan, Cai Hua, Wang Guangjian
Huawei Technologies Co., Ltd., Chengdu 610000, China.
Sensors (Basel). 2025 Jan 6;25(1):280. doi: 10.3390/s25010280.
Metasurface-based imaging is attractive due to its low hardware costs and system complexity. However, most of the current metasurface-based imaging systems require stochastic wavefront modulation, complex computational post-processing, and are restricted to 2D imaging. To overcome these limitations, we propose a scanning virtual aperture imaging system. The system first uses a focused beam to achieve near-field focal plane scanning, meanwhile forming a virtual aperture. Secondly, an adapted range migration algorithm (RMA) with a pre-processing step is applied to the virtual aperture to achieve a 3D high-resolution reconstruction. The pre-processing step fully exploits the feature of near-field beamforming that only a time delay is added on the received signal, which introduces ignorable additional calculation time. We build a compact prototype system working at a frequency from 38 to 40 GHz. Both the simulations and the experiments demonstrate that the proposed system can achieve high-quality imaging without complex implementations. Our method can be widely used for single-transceiver coherent systems to significantly improve the imaging depth of field (DOF).
基于超表面的成像因其硬件成本低和系统复杂度低而颇具吸引力。然而,当前大多数基于超表面的成像系统需要随机波前调制、复杂的计算后处理,并且仅限于二维成像。为了克服这些限制,我们提出了一种扫描虚拟孔径成像系统。该系统首先使用聚焦光束实现近场焦平面扫描,同时形成一个虚拟孔径。其次,将一种带有预处理步骤的适配距离徙动算法(RMA)应用于虚拟孔径,以实现三维高分辨率重建。预处理步骤充分利用了近场波束形成的特性,即在接收信号上仅添加一个时间延迟,这引入的额外计算时间可忽略不计。我们构建了一个工作频率在38至40吉赫兹的紧凑型原型系统。仿真和实验均表明,所提出的系统无需复杂的实现方式就能实现高质量成像。我们的方法可广泛应用于单收发器相干系统,以显著提高成像景深(DOF)。