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Visual Quality Improvement of Digital Video by Stabilization Using Adaptive CMAC Filtering

机译:通过使用自适应CMAC滤波进行稳定化来提高数字视频的视觉质量

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摘要

A Digital Video Stabilization (DVS) system removes the unwanted shaking in the videos acquired by hand-held cameras and preserves the panning. In this thesis work, a digital video stabilization model is proposed based upon adaptive cerebellar model articulation controller (CMAC) filtering. A CMAC is a manifestation of the associative memory learning structure present in the cerebellum of human being. Adaptive CMAC filtering has favorable properties of small size, good generalization, rapid learning and dynamic response. So, it is more suitable for high-speed signal processing applications. The adaptive CMAC is used to adjust the coefficients of IIR filter employed in the proposed model. The training of CMAC is based upon a fuzzy rule. The efficiency of the proposed adaptive CMAC filtering has been validated by evaluating it on a set of test videos sequences. We have done performance comparison of CMAC algorithm with already existing algorithms such Kalman filter, Modified proportional integrated (MPI) controller and adaptive fuzzy filtering in terms of smooth index (SI), peak signal to noise ratio (PSNR), mean square error (MSE) and point spread function (PSF).
机译:数字视频稳定(DVS)系统可消除手持摄像机采集的视频中不必要的抖动,并保持平移。在本文工作中,提出了一种基于自适应小脑模型关节控制器滤波的数字视频稳定模型。 CMAC是人类小脑中存在的联想记忆学习结构的体现。自适应CMAC过滤具有以下优点:体积小,通用性好,学习速度快和动态响应。因此,它更适合于高速信号处理应用。自适应CMAC用于调整所提出模型中使用的IIR滤波器的系数。 CMAC的训练基于模糊规则。通过对一组测试视频序列进行评估,可以验证所提出的自适应CMAC滤波的效率。我们已经从平滑指数(SI),峰值信噪比(PSNR),均方误差(MSE)方面对CMAC算法与卡尔曼滤波器,改进比例积分(MPI)控制器和自适应模糊滤波等现有算法进行了性能比较)和点扩散函数(PSF)。

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