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Progressive Identification of True Labels for Partial-Label Learning

About

Partial-label learning (PLL) is a typical weakly supervised learning problem, where each training instance is equipped with a set of candidate labels among which only one is the true label. Most existing methods elaborately designed learning objectives as constrained optimizations that must be solved in specific manners, making their computational complexity a bottleneck for scaling up to big data. The goal of this paper is to propose a novel framework of PLL with flexibility on the model and optimization algorithm. More specifically, we propose a novel estimator of the classification risk, theoretically analyze the classifier-consistency, and establish an estimation error bound. Then we propose a progressive identification algorithm for approximately minimizing the proposed risk estimator, where the update of the model and identification of true labels are conducted in a seamless manner. The resulting algorithm is model-independent and loss-independent, and compatible with stochastic optimization. Thorough experiments demonstrate it sets the new state of the art.

Jiaqi Lv, Miao Xu, Lei Feng, Gang Niu, Xin Geng, Masashi Sugiyama• 2020

Related benchmarks

TaskDatasetResultRank
Image ClassificationFashion MNIST (test)
Accuracy89.72
592
Image ClassificationCIFAR-10
Accuracy86.04
507
Image ClassificationCIFAR-100
Accuracy67.77
435
Image ClassificationMNIST
Accuracy98.39
417
Image ClassificationFashion MNIST
Accuracy83.77
300
Image ClassificationFashion MNIST
Accuracy89.79
240
Image ClassificationOxford-IIIT Pet
Accuracy52.77
219
Image ClassificationCIFAR-100 standard (test)
Top-1 Accuracy62.87
141
Named Entity RecognitionMSRA (test)
F1 Score92.46
63
Named Entity RecognitionWeibo (test)--
50
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