论文标题

步态识别的基于视觉的技术

Vision-based techniques for gait recognition

论文作者

Lee, Tracey K. M., Belkhatir, Mohammed, Sanei, Saeid

论文摘要

全球安全问题引发了视频监视设备的扩散。智能监视系统旨在自动发现可能的威胁并提高警报。能够识别被调查的对象可以帮助确定其威胁水平。当前的设备提供了数字视频数据,以分析时间变化的功能以帮助标识过程。通常,人们排队以访问设施,并在全面视图中访问摄像机。在这种环境中,可以使用多种生物识别技术 - 例如,步态包括步步时间等时间特征。步态可以在距离上毫不显着地测量。视频数据还将包括面部功能,这些功能是短距离生物识别技术。这样,可以使用一组数据自然地组合生物识别技术。在本文中,我们调查了进行步态识别和建模的当前技术,该技术与进行研究的环境有关。我们还详细讨论了通过得出步态数据(例如透视和遮挡效应)引起的问题,以及可靠跟踪人类运动的相关计算机视觉挑战。然后,在强调了与步态处理相关的这些问题和挑战之后,我们开始讨论将步态与其他生物识别技术结合在一起的框架。然后,我们为基于生物识别的人类识别的新型范式提供了动机,即使用步态的额正常视图作为远距离生物识别技术,结合了在近距离运行的生物识别技术。

Global security concerns have raised a proliferation of video surveillance devices. Intelligent surveillance systems seek to discover possible threats automatically and raise alerts. Being able to identify the surveyed object can help determine its threat level. The current generation of devices provide digital video data to be analysed for time varying features to assist in the identification process. Commonly, people queue up to access a facility and approach a video camera in full frontal view. In this environment, a variety of biometrics are available - for example, gait which includes temporal features like stride period. Gait can be measured unobtrusively at a distance. The video data will also include face features, which are short-range biometrics. In this way, one can combine biometrics naturally using one set of data. In this paper we survey current techniques of gait recognition and modelling with the environment in which the research was conducted. We also discuss in detail the issues arising from deriving gait data, such as perspective and occlusion effects, together with the associated computer vision challenges of reliable tracking of human movement. Then, after highlighting these issues and challenges related to gait processing, we proceed to discuss the frameworks combining gait with other biometrics. We then provide motivations for a novel paradigm in biometrics-based human recognition, i.e. the use of the fronto-normal view of gait as a far-range biometrics combined with biometrics operating at a near distance.

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