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Study of image motion compensation in spectral imaging system

机译:光谱成像系统中图像运动补偿的研究

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In the spectral imaging system, random jitter and posture change of the aircraft generated random image motion, and flight of aircraft caused forward image motion. Both of image motion can cause image blur in a longer exposure time, which need for image motion compensation. Due to limited field of view of the optical system, limited size and weight, a stable FSM (Fast Steering Mirror) was used for random image motion compensation and a compensation FSM was used for forward image motion compensation. In the random image motion compensation, inertial sensors were used for measuring the random jitter and the posture change of the aircraft. As the advantages and disadvantages for the gyroscope and inclinometer, we used data fusion of the two sensors to complementary advantages with closed-loop mode filter data based on the frequency domain. In this way, we got high linearity, little drift, high bandwidth and little electrical noise inertial measurement sensors. On the other hand, the motion of the compensation mirror was broken down to the amount of displacement within the time required for each interrupt movement. Under strict timing control, macro forward image motion compensation was realized in the exposure time. The above image motion compensation methods were applied to actual spectral imaging systems, aerial experiment results show that image motion compensation obtained good results and met the remaining image motion compensation image error was not more than 1/3 pixel.
机译:在光谱成像系统中,飞机的随机抖动和姿态变化会产生随机的图像运动,而飞机的飞行会导致向前的图像运动。两种图像运动都可能在较长的曝光时间内导致图像模糊,这需要图像运动补偿。由于光学系统的视野有限,尺寸和重量有限,因此将稳定的FSM(快速转向镜)用于随机图像运动补偿,并使用补偿FSM进行前向图像运动补偿。在随机图像运动补偿中,惯性传感器用于测量飞机的随机抖动和姿态变化。由于陀螺仪和测斜仪的优缺点,我们使用了两个传感器的数据融合,以基于频域的闭环模式滤波器数据来补充优势。这样,我们获得了高线性度,小漂移,高带宽和电噪声惯性测量传感器。另一方面,补偿镜的运动在每次中断运动所需的时间内分解为位移量。在严格的定时控制下,在曝光时间内实现了宏正向图像运动补偿。将上述图像运动补偿方法应用于实际的光谱成像系统,航拍实验结果表明,图像运动补偿取得了良好的效果,并满足剩余图像运动补偿图像误差不超过1/3像素的要求。

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