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Transfer Learning with Kernel Methods

delete2023-09-09
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A
Adityanarayanan Radhakrishnan
M
Max Ruiz Luyten
N
Neha Prasad
C
Caroline Uhler *
DOI:10.1038/s41467-023-41215-8delete
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摘要

摘要

En 中文
Transfer learning refers to the process of adapting a model trained on a source task to a target task. While kernel methods are conceptually and computationally simple models that are competitive on a variety of tasks, it has been unclear how to develop scalable kernel-based transfer learning methods across general source and target tasks with possibly differing label dimensions. In this work, we propose a transfer learning framework for kernel methods by projecting and translating the source model to the target task. We demonstrate the effectiveness of our framework in applications to image classification and virtual drug screening. For both applications, we identify simple scaling laws that characterize the performance of transfer-learned kernels as a function of the number of target examples. We explain this phenomenon in a simplified linear setting, where we are able to derive the exact scaling laws. Transfer learning can be applied in computer vision and natural language processing to utilize knowledge from a source task to improve performance on a target task. The authors propose a framework for transfer learning with kernel methods for improved image classification and virtual drug screening.
Keyword:
MULTIPLE TASKS
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Nature Communications
IF:
15.7
论文数:
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被引数:
91.2W

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