基于频率分集的逆合成孔径二维成像

Yi Du, Kefei Liao, S. Ouyang, Gaojian Huang, Jingjing Li, Ningbo Xie
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引用次数: 0

摘要

本文提出了一种结合频率分集和逆合成孔径的新型帧。在该帧中,从不同观测时间的不同频率中选择发射的单频信号。这些选定的频率可以合成宽带信号,从而实现高距离分辨率。在方位角方向上,通过雷达与目标的相对运动来获得分辨率。因此,该框架具有对目标进行二维成像的能力。在此基础上,建立了基于合成宽带信号的ISAR成像模型,提出了一种改进的基于BP成像算法的二维ISAR成像算法。仿真结果表明,改进的二维ISAR成像算法可以获得多个运动目标的二维成像。因此,从应用的角度来看,与现有的ISAR成像系统相比,所提出的框架可以降低硬件复杂性和发送/接收成本。
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Two-Dimensional Imaging Using Frequency Diversity with Inverse Synthetic Aperture
In this paper, a novel frame combining frequency diversity with inverse synthetic aperture is proposed. In this frame, the transmitted single frequency signals is selected among diverse frequencies at different observed time. These selected frequencies can synthesize a wideband signal, thus achieving a high distance resolution. And in the azimuth direction, the resolution can be obtained by the relative motion between the radar and the target. Therefore, the proposed frame has the ability of two-dimensional imaging for targets. For the proposed frame, furthermore, an ISAR imaging model based on synthetic wide-band signals is established, and an improved two-dimensional ISAR imaging algorithm based on the backward projection (BP) imaging algorithm is proposed. Simulation show that the improved two-dimensional ISAR imaging algorithm can obtain two-dimensional imaging of multiple moving targets. Therefore, from the perspective of applications, the proposed frame can reduce the hardware complexity and cost of transmitter/receiver when compared with the existing ISAR imaging systems.
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