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Research of Inverse Synthetic Aperture Imaging Lidar based on Filtered Back-projection Tomography Technique

机译:基于滤波反投影层析成像技术的逆合成孔径成像激光雷达的研究

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In order to obtain clear two-dimensional image under the conditions without using heterodyne interferometry by inverse synthetic aperture lidar(ISAL), designed imaging algorithms based on filtered back projection tomography technique, and the target "A" was reconstructed with simulation algorithm by the system in the turntable model. Analyzed the working process of ISAL, and the function of the reconstructed image was given. Detail analysis of the physical meaning of the various parameters in the process of echo data, and its parameters affect the reconstructed image. The image in test area was reconstructed by the one-dimensional distance information with filtered back projection tomography technique. When the measured target rotated, the sum of the echo light intensity at the same distance was constituted by the different position of the measured target. When the total amount collected is large enough, multiple equations can be solved change. Filtered back-projection image of the ideal image is obtained through MATLAB simulation, and analyzed that the angle intervals affected the reconstruction of image. The ratio of the intensity of echo light and loss light affected the reconstruction of image was analyzed. Simulation results show that, when the sampling angle is smaller, the resolution of the reconstructed image of measured target is higher. And the ratio of the intensity of echo light and loss light is greater, the resolution of the reconstructed image of measured target is higher. In conclusion after some data processing, the reconstructed image basically meets be effective identification requirements.
机译:为了在不使用反合成孔径激光雷达(ISAL)使用外差干涉法的条件下获得清晰的二维图像,设计了基于滤波反投影层析成像技术的成像算法,并通过仿真算法重建了目标“ A”在转盘模型中。分析了ISAL的工作过程,并给出了重建图像的功能。详细分析回波数据处理过程中各种参数的物理含义,其参数影响重建图像。利用滤波后的反投影层析成像技术通过一维距离信息重建测试区域中的图像。当被测目标旋转时,相同距离处的回波光强度之和由被测目标的不同位置构成。当收集的总量足够大时,可以求解多个方程式的变化。通过MATLAB仿真获得了理想图像的滤波后反投影图像,并分析了角度间隔影响了图像的重建。分析了回波和损失光的强度比对图像重建的影响。仿真结果表明,当采样角较小时,被测目标重建图像的分辨率较高。并且,回波光与损失光的强度之比越大,被测物的重建图像的分辨率越高。综上所述,经过一定的数据处理,重建的图像基本满足有效的识别要求。

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