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Knowledge Distillation and Student-Teacher Learning for Visual Intelligence: A Review and New Outlooks

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arxiv 2004.05937 v7 pith:ZDVY66IT submitted 2020-04-13 cs.CV cs.AIcs.LG

classification cs.CVcs.AIcs.LG
keywords beenlearningknowledgerecentresearchdatadistillationmethods
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Deep neural models in recent years have been successful in almost every field, including extremely complex problem statements. However, these models are huge in size, with millions (and even billions) of parameters, thus demanding more heavy computation power and failing to be deployed on edge devices. Besides, the performance boost is highly dependent on redundant labeled data. To achieve faster speeds and to handle the problems caused by the lack of data, knowledge distillation (KD) has been proposed to transfer information learned from one model to another. KD is often characterized by the so-called `Student-Teacher' (S-T) learning framework and has been broadly applied in model compression and knowledge transfer. This paper is about KD and S-T learning, which are being actively studied in recent years. First, we aim to provide explanations of what KD is and how/why it works. Then, we provide a comprehensive survey on the recent progress of KD methods together with S-T frameworks typically for vision tasks. In general, we consider some fundamental questions that have been driving this research area and thoroughly generalize the research progress and technical details. Additionally, we systematically analyze the research status of KD in vision applications. Finally, we discuss the potentials and open challenges of existing methods and prospect the future directions of KD and S-T learning.

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  1. ATMS-KD: Adaptive Temperature and Mixed Sample Knowledge Distillation for a Lightweight Residual CNN in Agricultural Embedded Systems

    cs.CV 2025-08 reject novelty 4.0 of 10

    ATMS-KD, a knowledge distillation recipe using adaptive temperature and Mixup/CutMix, reports 97.11% accuracy on Damask rose maturity classification with a 1.3M-parameter student.

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