Xu Yirong, Li Shangyuan, Zhu Zhengyuan, Xue Xiaoxiao, Zheng Xiaoping, Zhou Bingkun
Opt Express. 2022 Aug 15;30(17):31017-31028. doi: 10.1364/OE.460295.
Existing photonic compressive receivers have the problem of resolution deterioration when applied in wide-range radar detection. In this study, we propose a photonic-assisted space-frequency two-dimensional (2D) compressive radar receiver capable of achieving high-resolution detection in wide-range scenarios. For the space dimension, the compression process is realized by employing a spatially adaptive photonic projection basis, which guarantees complete mapping of arbitrarily delayed echoes-the key to high-resolution wide-range detection. For the frequency dimension, photonic compressive sensing is employed to further compress the bandwidth of the projected sparse signal. Therefore, the proposed system can achieve wide-range radar detection without resolution deterioration with compressed output. Herein, with two channels of 630 MHz outputs, high-resolution distance detection within a range of 21 km with a resolution of up to 2.3 cm is achieved. Moreover, inverse synthetic aperture radar (ISAR) imaging of two sets of four-point turntables distributed within the range of 21 km with a resolution of 2.3 cm × 5.7 cm is realized. The proposed photonic-assisted 2D compressive radar receiver is a viable solution to overcome the tradeoff between detection resolution and range of existing photonic compressive receivers, which indicates a path for the further development of high-resolution wide-range radar detection.
现有的光子压缩接收机在应用于宽范围雷达探测时存在分辨率恶化的问题。在本研究中,我们提出了一种光子辅助的空频二维(2D)压缩雷达接收机,其能够在宽范围场景中实现高分辨率探测。对于空间维度,压缩过程通过采用空间自适应光子投影基来实现,这保证了任意延迟回波的完整映射——这是高分辨率宽范围探测的关键。对于频率维度,采用光子压缩感知来进一步压缩投影稀疏信号的带宽。因此,所提出的系统能够在压缩输出的情况下实现宽范围雷达探测而不会出现分辨率恶化。在此,通过两路630 MHz输出,实现了在21 km范围内的高分辨率距离探测,分辨率高达2.3 cm。此外,实现了对分布在21 km范围内的两组四点转盘的逆合成孔径雷达(ISAR)成像,分辨率为2.3 cm×5.7 cm。所提出的光子辅助2D压缩雷达接收机是克服现有光子压缩接收机在探测分辨率和探测范围之间权衡的可行解决方案,这为高分辨率宽范围雷达探测的进一步发展指明了一条道路。