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Alignment parameter calibration for IMU using the Taguchi method for image deblurring

机译:使用Taguchi方法对IMU进行对准参数校准以进行图像去模糊

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Inertial measurement units (IMUs) utilized in smartphones can be used to detect camera motion during exposure, in order to improve image quality degraded with blur through long hand-held exposure. Based on the captured camera motion, blur in images can be removed when an appropriate deblurring filter is used. However, two research issues have not been addressed: (a) the calibration of alignment parameters for the IMU has not been addressed. When inappropriate alignment parameters are used for the IMU, the camera motion would not be captured accurately and the deblurring effectiveness can be downgraded. (b) Also selection of an appropriate deblurring filter correlated with the image quality has still not been addressed. Without the use of an appropriate deblurring filter, the image quality could not be optimal. This paper proposes a systematic method, namely the Taguchi method, which is a robust and systematic approach for designing reliable and high-precision devices, in order to perform the alignment parameter calibration for the IMU and filter selection. The Taguchi method conducts a small number of systematic experiments based on orthogonal arrays. It studies the impact of the alignment parameters and appropriate deblurring filter, which attempts to perform an effective deblurring. Several widely adopted image quality metrics are used to evaluate the deblurred images generated by the proposed Taguchi method. Experimental results show that the quality of deblurred images achieved by the proposed Taguchi method is better than those obtained by deblurring methods which are not involved with the alignment parameter calibration and filter selection. Also, much less computational effort is required by the Taguchi method when comparing with the commonly used optimization methods for determining alignment parameters and deblurring filter. (C) 2015 Elsevier Ltd. All rights reserved.
机译:智能手机中使用的惯性测量单元(IMU)可用于检测曝光期间的相机运动,以改善由于长时间手持曝光而导致的因模糊而退化的图像质量。根据捕获的相机运动,当使用适当的去模糊滤镜时,可以消除图像中的模糊。但是,尚未解决两个研究问题:(a)IMU对准参数的校准尚未解决。当IMU使用了不合适的对准参数时,将无法准确捕获摄像机的运动,并且降噪效果可能会降低。 (b)此外,仍未解决与图像质量相关的适当去模糊滤​​波器的选择。如果不使用适当的去模糊滤波器,图像质量将不是最佳的。本文提出了一种系统的方法,即Taguchi方法,这是一种设计可靠,高精度的设备的稳健而系统的方法,以便对IMU和滤波器的选择进行对准参数校准。 Taguchi方法基于正交数组进行少量的系统实验。它研究了对准参数和适当的去模糊滤波器的影响,该滤波器试图执行有效的去模糊。几种被广泛采用的图像质量度量用于评估由提出的Taguchi方法生成的去模糊图像。实验结果表明,提出的Taguchi方法获得的去模糊图像的质量要好于不包含对准参数校准和滤波器选择的去模糊方法所获得的图像。而且,与用于确定对准参数和去模糊滤波器的常用优化方法相比,田口方法所需的计算量要少得多。 (C)2015 Elsevier Ltd.保留所有权利。

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