Regressing robust and discriminative 3D morphable models with a very deep neural network

Anh Tuan Tran, Tal Hassner, Iacopo Masi, Gérard Medioni

نتاج البحث: فصل من :كتاب / تقرير / مؤتمرمنشور من مؤتمرمراجعة النظراء

ملخص

The 3D shapes of faces are well known to be discriminative. Yet despite this, they are rarely used for face recognition and always under controlled viewing conditions. We claim that this is a symptom of a serious but often overlooked problem with existing methods for single view 3D face reconstruction: when applied "in the wild", their 3D estimates are either unstable and change for different photos of the same subject or they are over-regularized and generic. In response, we describe a robust method for regressing discriminative 3D morphable face models (3DMM). We use a convolutional neural network (CNN) to regress 3DMM shape and texture parameters directly from an input photo. We overcome the shortage of training data required for this purpose by offering a method for generating huge numbers of labeled examples. The 3D estimates produced by our CNN surpass state of the art accuracy on the MICC data set. Coupled with a 3D-3D face matching pipeline, we show the first competitive face recognition results on the LFW, YTF and IJB-A benchmarks using 3D face shapes as representations, rather than the opaque deep feature vectors used by other modern systems.

اللغة الأصليةالإنجليزيّة
عنوان منشور المضيفProceedings - 30th IEEE Conference on Computer Vision and Pattern Recognition, CVPR 2017
ناشرInstitute of Electrical and Electronics Engineers Inc.
الصفحات1493-1502
عدد الصفحات10
رقم المعيار الدولي للكتب (الإلكتروني)9781538604571
المعرِّفات الرقمية للأشياء
حالة النشرنُشِر - 6 نوفمبر 2017
الحدث30th IEEE Conference on Computer Vision and Pattern Recognition, CVPR 2017 - Honolulu, الولايات المتّحدة
المدة: ٢١ يوليو ٢٠١٧٢٦ يوليو ٢٠١٧

سلسلة المنشورات

الاسمProceedings - 30th IEEE Conference on Computer Vision and Pattern Recognition, CVPR 2017
مستوى الصوت2017-January

!!Conference

!!Conference30th IEEE Conference on Computer Vision and Pattern Recognition, CVPR 2017
الدولة/الإقليمالولايات المتّحدة
المدينةHonolulu
المدة٢١/٠٧/١٧٢٦/٠٧/١٧

ملاحظة ببليوغرافية

Publisher Copyright:
© 2017 IEEE.

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