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4 months ago

Fine-Grained Head Pose Estimation Without Keypoints

Nataniel Ruiz; Eunji Chong; James M. Rehg

Fine-Grained Head Pose Estimation Without Keypoints

Abstract

Estimating the head pose of a person is a crucial problem that has a large amount of applications such as aiding in gaze estimation, modeling attention, fitting 3D models to video and performing face alignment. Traditionally head pose is computed by estimating some keypoints from the target face and solving the 2D to 3D correspondence problem with a mean human head model. We argue that this is a fragile method because it relies entirely on landmark detection performance, the extraneous head model and an ad-hoc fitting step. We present an elegant and robust way to determine pose by training a multi-loss convolutional neural network on 300W-LP, a large synthetically expanded dataset, to predict intrinsic Euler angles (yaw, pitch and roll) directly from image intensities through joint binned pose classification and regression. We present empirical tests on common in-the-wild pose benchmark datasets which show state-of-the-art results. Additionally we test our method on a dataset usually used for pose estimation using depth and start to close the gap with state-of-the-art depth pose methods. We open-source our training and testing code as well as release our pre-trained models.

Benchmarks

BenchmarkMethodologyMetrics
head-pose-estimation-on-aflwRuiz et al.
MAE: 5.324
head-pose-estimation-on-aflw2000Hopenet
Geodesic Error (GE): 9,93
MAE: 6.15
head-pose-estimation-on-aflw2000Multi-Loss ResNet50 (a=2)
MAE: 6.155
head-pose-estimation-on-biwihopenet
Geodesic Error (GE): 9.53
Geodesic Error - aligned (GE): 6.6
MAE (trained with other data): 4.89
MAE-aligned (trained with other data): 3.48
head-pose-estimation-on-biwiMulti-Loss ResNet50
MAE (trained with BIWI data): 4.895

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Fine-Grained Head Pose Estimation Without Keypoints | Papers | HyperAI