实时视频监控系统的性能评估

S. Muller-Schneiders, T. Jager, H. Loos, W. Niem
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引用次数: 59

摘要

本文全面介绍了实时视频监控系统,该系统是由博世公司研究开发的,以鲁棒性为主要设计目标。一个强大的监控系统应该以低误报率为目标,因为监控人员可能会被太多的警报分散注意力,例如,移动的树木、下雨、小摄像机运动或不同的照明条件。由于错过的安全相关事件可能会对安装站点造成严重威胁,因此前面提到的标准显然不足以设计健壮的系统,因此应该同时实现低数量的假阴性。由于理想情况下假阴性率应该等于零,因此监视系统应该能够应对不同的照明条件,低对比度和遮挡情况。本文除了介绍了我们的视频监控系统的组成部分外,还说明了实现鲁棒性的措施。由于我们的系统基于视频运动检测算法,例如在M. Mayer等人(1996)中已经描述过,因此必须扩展之前的一组算法以提供完整的视频内容分析系统。下面还将讨论从简单的运动检测到视频内容分析的转变。为了测量系统的性能,给出了各种pet序列的质量度量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance evaluation of a real time video surveillance system
This paper presents a thorough introduction to the real time video surveillance system which has been developed at Bosch Corporate Research considering robustness as the major design goal. A robust surveillance system should especially aim for a low number of false positives since surveillance guards might get distracted by too many alarms caused by, e.g., moving trees, rain, small camera motion, or varying illumination conditions. Since a missed security related event could cause a serious threat for an installation site, the before mentioned criterion is obviously not sufficient for designing a robust system and thus a low number of false negatives should simultaneously be achieved. Due to the fact that the false negative rate should ideally be equal to zero, the surveillance system should be able to cope with varying illumination conditions, low contrast and occlusion situations. Besides presenting the building blocks of our video surveillance system, the measures taken to achieve robustness is illustrated in this paper. Since our system is based on algorithms for video motion detection, which has been described e.g. in M. Mayer et al., (1996), the previous set of algorithms had to be extended to feature a complete video content analysis system. This transition from simple motion detection to video content analysis is also discussed in the following. In order to measure the performance of our system, quality measures calculated for various PETS sequences is presented.
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