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Localization with Sampling-Argmax

Authors :
Li, Jiefeng
Chen, Tong
Shi, Ruiqi
Lou, Yujing
Li, Yong-Lu
Lu, Cewu
Publication Year :
2021

Abstract

Soft-argmax operation is commonly adopted in detection-based methods to localize the target position in a differentiable manner. However, training the neural network with soft-argmax makes the shape of the probability map unconstrained. Consequently, the model lacks pixel-wise supervision through the map during training, leading to performance degradation. In this work, we propose sampling-argmax, a differentiable training method that imposes implicit constraints to the shape of the probability map by minimizing the expectation of the localization error. To approximate the expectation, we introduce a continuous formulation of the output distribution and develop a differentiable sampling process. The expectation can be approximated by calculating the average error of all samples drawn from the output distribution. We show that sampling-argmax can seamlessly replace the conventional soft-argmax operation on various localization tasks. Comprehensive experiments demonstrate the effectiveness and flexibility of the proposed method. Code is available at https://github.com/Jeff-sjtu/sampling-argmax<br />Comment: NeurIPS 2021

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2110.08825
Document Type :
Working Paper