首页> 外文会议>International Conference on Smart Systems and Inventive Technology >Performance Analysis of Video Magnification Methods
【24h】

Performance Analysis of Video Magnification Methods

机译:视频放大方法的性能分析

获取原文

摘要

Video is a huge source of information and the only way to extract that information is video processing. Depending upon the information to be retrieved or analyzed, the video processing techniques are applied. Some of the information consists of imperceptibly small motion, color changes, or sound changes. To estimate the small motions, which are not visible to naked eyes, various video magnification techniques are used. In this paper, various video magnification techniques- Eulerian video magnification, Phase-based video magnification with both Laplacian and Gaussian pyramid are implemented and their comparative performance analysis is presented. The various performance metrics used are PSNR, amplification factor, execution time, intensity of color and motion magnification. The effect of changing the level of pyramid and amplification factor on the performance of particular method is also analyzed. With increase in the level of pyramid quality of magnification reduced, while for higher amplification factor (>200) output exploited drastically. Results reveal that the Eulerian video magnification method is fast and simple but supports small amplification factors while the phase-based method is very slow and complex but supports the large amplification factors. To get better performance of the video magnification method, it is required to develop a new method using hybrid approach and its scope can be further extended in biomedical field to measure the biological parameters.
机译:视频是巨大的信息源,提取信息的唯一方法是视频处理。根据要检索或分析的信息,可以应用视频处理技术。其中一些信息包括不明显的小动作,颜色变化或声音变化。为了估计肉眼看不到的小动作,使用了各种视频放大技术。在本文中,实现了各种视频放大技术,包括欧拉视频放大,基于拉普拉斯和高斯金字塔的基于相位的视频放大,并对其进行了比较性能分析。使用的各种性能指标是PSNR,放大系数,执行时间,颜色强度和运动放大率。还分析了改变金字塔的水平和放大因子对特定方法性能的影响。随着金字塔等级的提高,放大倍数的质量降低,而对于更高的放大倍数(> 200),则大幅利用了输出。结果表明,欧拉视频放大方法快速,简单,但支持较小的放大因子,而基于相位的方法非常慢,复杂,但支持较大的放大因子。为了使视频放大方法具有更好的性能,需要开发一种使用混合方法的新方法,并且其范围可以在生物医学领域进一步扩展以测量生物学参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号