Zheng Jibin, Liu Hongwei, Liu Zheng, Liu Qing Huo
National Laboratory of Radar Signal Processing, Xidian University, Xi'an 710071, China.
Collaborative Innovation Center of Information Sensing and Understanding, Xidian University, Xi'an 710071, China.
Sensors (Basel). 2017 Mar 3;17(3):498. doi: 10.3390/s17030498.
For inverse synthetic aperture radar (ISAR) imaging of a ship target moving with ocean waves, the image constructed with the standard range-Doppler (RD) technique is blurred and the range-instantaneous-Doppler (RID) technique has to be used to improve the image quality. In this paper, azimuth echoes in a range cell of the ship target are modeled as noisy multicomponent cubic phase signals (CPSs) after the motion compensation and a RID ISAR imaging algorithm is proposed based on the integrated cubic phase bilinear autocorrelation function (ICPBAF). The ICPBAF is bilinear and based on the two-dimensionally coherent energy accumulation. Compared to five other estimation algorithms, the ICPBAF can acquire higher cross term suppression and anti-noise performance with a reasonable computational cost. Through simulations and analyses with the synthetic model and real radar data, we verify the effectiveness of the ICPBAF and corresponding RID ISAR imaging algorithm.
对于随海浪运动的舰船目标的逆合成孔径雷达(ISAR)成像,采用标准距离-多普勒(RD)技术构建的图像会出现模糊,因此必须使用距离-瞬时-多普勒(RID)技术来提高图像质量。本文在运动补偿后,将舰船目标距离单元内的方位回波建模为含噪多分量立方相位信号(CPS),并基于积分立方相位双线性自相关函数(ICPBAF)提出了一种RID ISAR成像算法。ICPBAF是双线性的,基于二维相干能量积累。与其他五种估计算法相比,ICPBAF能以合理的计算代价获得更高的交叉项抑制能力和抗噪声性能。通过对合成模型和实际雷达数据的仿真与分析,验证了ICPBAF及相应的RID ISAR成像算法的有效性。