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Research on blurred image restoration algorithm based on best iteration for vision guidance vehicle

机译:基于最佳迭代的视觉引导车模糊图像恢复算法研究

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摘要

In order to solve the problem of blurred image when the visual guidance vehicle used to locate a two-dimensional code to acquire images, a blurred image restoration algorithm based on the optimal number of iterations for visual guidance vehicles was proposed. Firstly, the process of image blurring was modeled according to the above method. The Lucy-Richardson algorithm based on the optimal number of iterations was designed and the experimental results were verified by the independently developed visual guidance vehicle. The experimental results show that the algorithm based on best iteration number of visual guidance vehicle blurred image restoration algorithm is superior to the traditional Wiener filter algorithm in suppressing noise, improving the quality of the restored image and enhancing the fastness, the best number of restores is 20 times, it improves the speed of correcting and control precision of the visual guide vehicle, the vision tracking vehicle tracking accuracy is stabilized at 3.5 mm or less.
机译:为了解决视觉导引车定位二维码获取图像时图像模糊的问题,提出了一种基于最优迭代次数的视觉导引车模糊图像恢复算法。首先,根据上述方法对图像模糊过程进行了建模。设计了基于最优迭代次数的Lucy-Richardson算法,并通过独立开发的视觉导航工具验证了实验结果。实验结果表明,基于最优导引次数的视觉导引车辆模糊图像恢复算法在抑制噪声,提高恢复图像质量,提高图像牢度方面优于传统的维纳滤波算法,最佳恢复次数为20倍提高了视觉引导车的校正速度和控制精度,视觉跟踪车的跟踪精度稳定在3.5mm以下。

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