Continuous Driver’s Gaze Zone Estimation Using RGB-D Camera

The driver gaze zone is an indicator of a driver’s attention and plays an important role in the driver’s activity monitoring. Due to the bad initialization of point-cloud transformation, gaze zone systems using RGB-D cameras and ICP (Iterative Closet Points) algorithm do not work...

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Main Authors: Yafei Wang, Guoliang Yuan, Zetian Mi, Jinjia Peng, Xueyan Ding, Zheng Liang, Xianping Fu
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Sensors
Subjects:
ICP
Online Access:http://www.mdpi.com/1424-8220/19/6/1287
id doaj-4ed7426605184702ba2b9c99ee204396
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spelling doaj-4ed7426605184702ba2b9c99ee2043962020-11-24T21:42:21ZengMDPI AGSensors1424-82202019-03-01196128710.3390/s19061287s19061287Continuous Driver’s Gaze Zone Estimation Using RGB-D CameraYafei Wang0Guoliang Yuan1Zetian Mi2Jinjia Peng3Xueyan Ding4Zheng Liang5Xianping Fu6Information Science and Technology College, Dalian Maritime University, Dalian 116026, ChinaInformation Science and Technology College, Dalian Maritime University, Dalian 116026, ChinaInformation Science and Technology College, Dalian Maritime University, Dalian 116026, ChinaInformation Science and Technology College, Dalian Maritime University, Dalian 116026, ChinaInformation Science and Technology College, Dalian Maritime University, Dalian 116026, ChinaInformation Science and Technology College, Dalian Maritime University, Dalian 116026, ChinaInformation Science and Technology College, Dalian Maritime University, Dalian 116026, ChinaThe driver gaze zone is an indicator of a driver’s attention and plays an important role in the driver’s activity monitoring. Due to the bad initialization of point-cloud transformation, gaze zone systems using RGB-D cameras and ICP (Iterative Closet Points) algorithm do not work well under long-time head motion. In this work, a solution for a continuous driver gaze zone estimation system in real-world driving situations is proposed, combining multi-zone ICP-based head pose tracking and appearance-based gaze estimation. To initiate and update the coarse transformation of ICP, a particle filter with auxiliary sampling is employed for head state tracking, which accelerates the iterative convergence of ICP. Multiple templates for different gaze zone are applied to balance the templates revision of ICP under large head movement. For the RGB information, an appearance-based gaze estimation method with two-stage neighbor selection is utilized, which treats the gaze prediction as the combination of neighbor query (in head pose and eye image feature space) and linear regression (between eye image feature space and gaze angle space). The experimental results show that the proposed method outperforms the baseline methods on gaze estimation, and can provide a stable head pose tracking for driver behavior analysis in real-world driving scenarios.http://www.mdpi.com/1424-8220/19/6/1287RGB-D cameraICPhead posegaze estimation
collection DOAJ
language English
format Article
sources DOAJ
author Yafei Wang
Guoliang Yuan
Zetian Mi
Jinjia Peng
Xueyan Ding
Zheng Liang
Xianping Fu
spellingShingle Yafei Wang
Guoliang Yuan
Zetian Mi
Jinjia Peng
Xueyan Ding
Zheng Liang
Xianping Fu
Continuous Driver’s Gaze Zone Estimation Using RGB-D Camera
Sensors
RGB-D camera
ICP
head pose
gaze estimation
author_facet Yafei Wang
Guoliang Yuan
Zetian Mi
Jinjia Peng
Xueyan Ding
Zheng Liang
Xianping Fu
author_sort Yafei Wang
title Continuous Driver’s Gaze Zone Estimation Using RGB-D Camera
title_short Continuous Driver’s Gaze Zone Estimation Using RGB-D Camera
title_full Continuous Driver’s Gaze Zone Estimation Using RGB-D Camera
title_fullStr Continuous Driver’s Gaze Zone Estimation Using RGB-D Camera
title_full_unstemmed Continuous Driver’s Gaze Zone Estimation Using RGB-D Camera
title_sort continuous driver’s gaze zone estimation using rgb-d camera
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2019-03-01
description The driver gaze zone is an indicator of a driver’s attention and plays an important role in the driver’s activity monitoring. Due to the bad initialization of point-cloud transformation, gaze zone systems using RGB-D cameras and ICP (Iterative Closet Points) algorithm do not work well under long-time head motion. In this work, a solution for a continuous driver gaze zone estimation system in real-world driving situations is proposed, combining multi-zone ICP-based head pose tracking and appearance-based gaze estimation. To initiate and update the coarse transformation of ICP, a particle filter with auxiliary sampling is employed for head state tracking, which accelerates the iterative convergence of ICP. Multiple templates for different gaze zone are applied to balance the templates revision of ICP under large head movement. For the RGB information, an appearance-based gaze estimation method with two-stage neighbor selection is utilized, which treats the gaze prediction as the combination of neighbor query (in head pose and eye image feature space) and linear regression (between eye image feature space and gaze angle space). The experimental results show that the proposed method outperforms the baseline methods on gaze estimation, and can provide a stable head pose tracking for driver behavior analysis in real-world driving scenarios.
topic RGB-D camera
ICP
head pose
gaze estimation
url http://www.mdpi.com/1424-8220/19/6/1287
work_keys_str_mv AT yafeiwang continuousdriversgazezoneestimationusingrgbdcamera
AT guoliangyuan continuousdriversgazezoneestimationusingrgbdcamera
AT zetianmi continuousdriversgazezoneestimationusingrgbdcamera
AT jinjiapeng continuousdriversgazezoneestimationusingrgbdcamera
AT xueyanding continuousdriversgazezoneestimationusingrgbdcamera
AT zhengliang continuousdriversgazezoneestimationusingrgbdcamera
AT xianpingfu continuousdriversgazezoneestimationusingrgbdcamera
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