论文标题

带有增强锚的标签传播:无监督域适应的简单半监督学习基线

Label Propagation with Augmented Anchors: A Simple Semi-Supervised Learning baseline for Unsupervised Domain Adaptation

论文作者

Zhang, Yabin, Deng, Bin, Jia, Kui, Zhang, Lei

论文摘要

受到无监督的域适应性(UDA)和半监督学习(SSL)之间的问题相关性的动机,许多最先进的UDA方法采用SSL原理(例如群集假设)作为其学习成分。但是,他们倾向于忽略UDA的域移动性质。在这项工作中,我们迈出了一步,以研究UDA的SSL技术的适当扩展。以标签传播算法(LP)为例,我们分析了对UDA采用LP的挑战,理论上分析了亲和力图/矩阵构建的条件,以便更好地传播真实标签以无标记的实例。我们的分析表明,具有增强锚($^2 $ lp)的标签传播算法的新算法,可以通过产生具有高信心标签预测的未标记的虚拟实例(即增强的锚)来改善LP。为了使建议的$^2 $ LP对UDA有用,我们提出了经验方案来生成此类虚拟实例。拟议的方案还通过通过$^2 $ LP和域内不变的功能学习在伪标签之间进行交替来应对UDA的域变化挑战。实验表明,这种简单的SSL扩展可以改善域 - 不变特征学习的代表性UDA方法,并且可以在基准UDA数据集中增强两种最新方法。我们的结果表明,针对UDA问题的SSL技术进一步研究的价值。

Motivated by the problem relatedness between unsupervised domain adaptation (UDA) and semi-supervised learning (SSL), many state-of-the-art UDA methods adopt SSL principles (e.g., the cluster assumption) as their learning ingredients. However, they tend to overlook the very domain-shift nature of UDA. In this work, we take a step further to study the proper extensions of SSL techniques for UDA. Taking the algorithm of label propagation (LP) as an example, we analyze the challenges of adopting LP to UDA and theoretically analyze the conditions of affinity graph/matrix construction in order to achieve better propagation of true labels to unlabeled instances. Our analysis suggests a new algorithm of Label Propagation with Augmented Anchors (A$^2$LP), which could potentially improve LP via generation of unlabeled virtual instances (i.e., the augmented anchors) with high-confidence label predictions. To make the proposed A$^2$LP useful for UDA, we propose empirical schemes to generate such virtual instances. The proposed schemes also tackle the domain-shift challenge of UDA by alternating between pseudo labeling via A$^2$LP and domain-invariant feature learning. Experiments show that such a simple SSL extension improves over representative UDA methods of domain-invariant feature learning, and could empower two state-of-the-art methods on benchmark UDA datasets. Our results show the value of further investigation on SSL techniques for UDA problems.

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