Department of information and Command Automation, Wuhan Radar Academy, Wuhan 430019, China.
IEEE Trans Image Process. 2010 May;19(5):1269-79. doi: 10.1109/TIP.2009.2039374. Epub 2009 Dec 28.
This paper presents a system model and method for the 2-D imaging application via a narrowband multiple-input multiple-output (MIMO) radar system with two perpendicular linear arrays. Furthermore, the imaging formulation for our method is developed through a Fourier integral processing, and the parameters of antenna array including the cross-range resolution, required size, and sampling interval are also examined. Different from the spatial sequential procedure sampling the scattered echoes during multiple snapshot illuminations in inverse synthetic aperture radar (ISAR) imaging, the proposed method utilizes a spatial parallel procedure to sample the scattered echoes during a single snapshot illumination. Consequently, the complex motion compensation in ISAR imaging can be avoided. Moreover, in our array configuration, multiple narrowband spectrum-shared waveforms coded with orthogonal polyphase sequences are employed. The mainlobes of the compressed echoes from the different filter band could be located in the same range bin, and thus, the range alignment in classical ISAR imaging is not necessary. Numerical simulations based on synthetic data are provided for testing our proposed method.
本文提出了一种利用两个垂直线性阵列的窄带多输入多输出(MIMO)雷达系统进行 2-D 成像的系统模型和方法。此外,通过傅里叶积分处理为我们的方法开发了成像公式,并且还检查了天线阵列的参数,包括横向分辨率、所需尺寸和采样间隔。与逆合成孔径雷达(ISAR)成像中在多次快照照明期间顺序采样散射回波的空间顺序过程不同,所提出的方法利用单次快照照明期间的空间并行过程来采样散射回波。因此,可以避免 ISAR 成像中的复杂运动补偿。此外,在我们的阵列配置中,使用了多个用正交多相序列编码的窄带共享频谱波形。来自不同滤波器频带的压缩回波的主瓣可以位于相同的距离单元中,因此,不需要经典 ISAR 成像中的距离对准。基于合成数据的数值模拟用于测试我们提出的方法。