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首页> 外文期刊>Journal of Applied Remote Sensing >Focusing vibrating targets in frequency-modulation continuous-wave-synthetic aperture radar with Doppler keystone transform
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Focusing vibrating targets in frequency-modulation continuous-wave-synthetic aperture radar with Doppler keystone transform

机译:利用多普勒梯形失真校正技术在调频连续波合成孔径雷达中聚焦振动目标

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Vibrating targets generally induce sinusoidal micro-Doppler modulation in high resolution synthetic aperture radar (SAR). They could cause defocused and ghost results by conventional imaging algorithms. This paper proposes a method on vibrating target imaging in frequency-modulation continuous-wave (FMCW) SAR systems. The continuous motion of sensor platform during pulse time is considered in the signal model. Based on Bessel series expansion of the signal in the azimuth direction, the influence of platform motion on the azimuth frequency is eliminated after dechirp and deskew. In addition, the range walk is compensated in the two-dimensional frequency domain by Doppler keystone transform. Next, using range cell migration correction, the azimuth quadratic phase compensation and the range curvature correction are made in range-Doppler domain for the focus of paired echoes. The residual video phase of paired echoes is eliminated, and vibration parameters are estimated to compensate in the sinusoidal modulation phase. Then the deghosted image of vibrating targets can be obtained. The proposed method is applicable to multiple targets with various vibrating states due to no need of a priori knowledge of targets. Finally, simulations are carried out to validate the effectiveness of the method in FMCW-SAR imaging of vibrating targets. (C) The Authors.
机译:振动目标通常会在高分辨率合成孔径雷达(SAR)中引起正弦微多普勒调制。传统的成像算法可能会导致散焦和重影。提出了一种在调频连续波SAR系统中振动目标成像的方法。在信号模型中考虑了传感器平台在脉冲时间内的连续运动。基于信号在方位方向上的Bessel级数展开,消除了去chirp和偏斜后平台运动对方位频率的影响。另外,通过多普勒梯形失真校正在二维频域中补偿距离游走。接下来,使用距离单元偏移校正,在距离多普勒域中对成对回波进行聚焦,进行方位角二次相位补偿和距离曲率校正。消除了成对回波的残留视频相位,并估计了振动参数以补偿正弦调制相位。然后可以获得振动目标的反虚像。由于不需要先验知识,所提出的方法适用于具有各种振动状态的多个目标。最后,进行仿真以验证该方法在振动目标的FMCW-SAR成像中的有效性。 (C)作者。

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