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Visual image quality assessment with sensor motion: effect of recording and presentation velocity

机译:带有传感器运动的视觉图像质量评估:记录和显示速度的影响

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摘要

To assess the effect of motion on observer performance with an undersampled uncooled thermal imager, moving imagery from a static scene was recorded at nine different angular velocities ranging from 0 (static) to 1 pixel/frame by use of a tilted rotating mirror. The scene contained a thermal acuity test chart with triangular test patterns based on the triangle orientation discrimination test method. Visual acuity with the sensor was determined in two playback modes: normal speed and slow motion. In both playback conditions, a slow angular velocity of the test pattern over the sensor focal plane (up to 0.25 pixel/frame) results in a large acuity increase (+50percent) in comparison with the static condition because the observer is able to utilize more phases of the same test pattern. At higher sensor velocities the benefit rapidly decreases due to sensor smear, and above 0.50 pixel/frame the difference with the static condition is marginal. Up to 0.75 pixel/frame, the results for the two playback conditions are similar, indicating that temporal display characteristics and human dynamic acuity are not responsible for the reduction. The results obtained with this laboratory test method correspond well with earlier perception studies on real targets for low and medium camera motion.
机译:为了使用欠采样的未冷却热成像仪评估运动对观察者性能的影响,使用倾斜的旋转镜以从0(静态)到1像素/帧的九种不同角速度记录了来自静态场景的运动图像。场景中包含一个热敏性测试图,其中包含基于三角形方向辨别测试方法的三角形测试图案。传感器的视敏度是通过两种播放模式确定的:正常速度和慢动作。在两种回放条件下,与静态条件相比,测试图案在传感器焦平面上的慢角速度(最高0.25像素/帧)会导致敏锐度大幅提高(+ 50%),因为观察者能够利用更多相同测试模式的阶段。在较高的传感器速度下,由于传感器的拖尾效应,收益会迅速降低,而在0.50像素/帧以上时,与静态条件的差异很小。高达0.75像素/帧时,两种播放条件的结果相似,这表明时间显示特性和人为动态敏锐度对降低效果不负责。用这种实验室测试方法获得的结果与早期对中低摄像机运动的真实目标的感知研究相吻合。

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  • 来源
    《Applied optics》 |2010年第3期|共7页
  • 作者

    Piet Bijl;

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  • 正文语种 eng
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