Resource-Constrained Human Presence Detection for Indirect Time-of-Flight Sensors

Caterina Nahler, H. Plank, C. Steger, N. Druml
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引用次数: 1

Abstract

Face recognition with LiDAR and Time-of-Flight sensors is increasingly used in smartphones to automatically unlock devices when the user is present. The problem is that the presence of the user has to be detected before the energy-intensive face recognition can be started. This work presents a solution by introducing an energy-efficient measurement method for indirect Time-of-Flight sensors, which includes an on-chip processing method to detect the user's presence directly on a Time-of-Flight image sensor. The presented method is based on histogram analysis of direct reflectance images. The unique use of direct reflectance images is a significant enabler as it reduces histogram variations. Therefore our method outperforms conventional histogram detection methods and enables low-power on-chip face detection. It further enables the Time-of-Flight sensor to notify the smartphone application processor to perform the actual face recognition for device unlocking. We show in our evaluation that our method just has a false-positive rate of 17%, while all faces were detected. This is very promising since our measurement method reduces the processing cost which might lead to vast power savings in a future smartphone generation.
间接飞行时间传感器的资源约束人的存在检测
随着激光雷达和飞行时间传感器的人脸识别越来越多地用于智能手机,当用户在场时自动解锁设备。问题在于,在启动能量密集的面部识别之前,必须先检测到用户的存在。这项工作通过引入间接飞行时间传感器的节能测量方法提出了一种解决方案,该方法包括一种片上处理方法,可直接在飞行时间图像传感器上检测用户的存在。该方法基于直接反射图像的直方图分析。直接反射图像的独特使用是一个重要的促成因素,因为它减少了直方图的变化。因此,我们的方法优于传统的直方图检测方法,实现了低功耗的片上人脸检测。它进一步使飞行时间传感器能够通知智能手机应用程序处理器,以执行设备解锁的实际面部识别。在我们的评估中,我们的方法只有17%的假阳性率,而所有的人脸都被检测到。这是非常有前途的,因为我们的测量方法降低了处理成本,这可能会在未来的智能手机一代中节省大量的电力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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