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Exploring the Stability Gap in Continual Learning: The Role of the Classification Head

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arxiv 2411.04723 v2 pith:USBYUJKW submitted 2024-11-06 cs.LG cs.AIcs.CV

Exploring the Stability Gap in Continual Learning: The Role of the Classification Head

classification cs.LG cs.AIcs.CV
keywords learningstabilitycontinualheadclassificationperformanceneuralpartially
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Continual learning (CL) has emerged as a critical area in machine learning, enabling neural networks to learn from evolving data distributions while mitigating catastrophic forgetting. However, recent research has identified the stability gap -- a phenomenon where models initially lose performance on previously learned tasks before partially recovering during training. Such learning dynamics are contradictory to the intuitive understanding of stability in continual learning where one would expect the performance to degrade gradually instead of rapidly decreasing and then partially recovering later. To better understand and alleviate the stability gap, we investigate it at different levels of the neural network architecture, particularly focusing on the role of the classification head. We introduce the nearest-mean classifier (NMC) as a tool to attribute the influence of the backbone and the classification head on the stability gap. Our experiments demonstrate that NMC not only improves final performance, but also significantly enhances training stability across various continual learning benchmarks, including CIFAR100, ImageNet100, CUB-200, and FGVC Aircrafts. Moreover, we find that NMC also reduces task-recency bias. Our analysis provides new insights into the stability gap and suggests that the primary contributor to this phenomenon is the linear head, rather than the insufficient representation learning.

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