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Surrogate-Assisted Hybrid-Model Estimation of Distribution Algorithm for Mixed-Variable Hyperparameters Optimization in Convolutional Neural Networks

Authors
Li, Jian-YuZhan, Zhi-HuiXu, JinKwong, SamZhang, Jun
Issue Date
May-2023
Publisher
IEEE Computational Intelligence Society
Keywords
Optimization; Convolutional neural networks; Estimation; Computational modeling; Brain modeling; Probabilistic logic; Feature extraction; Aortic dissection (AD) diagnosis; convolutional neural network (CNN); deep learning; estimation of distribution algorithm (EDA); evolutionary computation (EC); hybrid model; hyperparameters optimization; mixed variable
Citation
IEEE Transactions on Neural Networks and Learning Systems, v.34, no.5, pp 2338 - 2352
Pages
15
Indexed
SCIE
SCOPUS
Journal Title
IEEE Transactions on Neural Networks and Learning Systems
Volume
34
Number
5
Start Page
2338
End Page
2352
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/118933
DOI
10.1109/TNNLS.2021.3106399
ISSN
2162-237X
2162-2388
Abstract
The performance of a convolutional neural network (CNN) heavily depends on its hyperparameters. However, finding a suitable hyperparameters configuration is difficult, challenging, and computationally expensive due to three issues, which are 1) the mixed-variable problem of different types of hyperparameters; 2) the large-scale search space of finding optimal hyperparameters; and 3) the expensive computational cost for evaluating candidate hyperparameters configuration. Therefore, this article focuses on these three issues and proposes a novel estimation of distribution algorithm (EDA) for efficient hyperparameters optimization, with three major contributions in the algorithm design. First, a hybrid-model EDA is proposed to efficiently deal with the mixed-variable difficulty. The proposed algorithm uses a mixed-variable encoding scheme to encode the mixed-variable hyperparameters and adopts an adaptive hybrid-model learning (AHL) strategy to efficiently optimize the mixed-variables. Second, an orthogonal initialization (OI) strategy is proposed to efficiently deal with the challenge of large-scale search space. Third, a surrogate-assisted multi-level evaluation (SME) method is proposed to reduce the expensive computational cost. Based on the above, the proposed algorithm is named surrogate-assisted hybrid-model EDA (SHEDA). For experimental studies, the proposed SHEDA is verified on widely used classification benchmark problems, and is compared with various state-of-the-art methods. Moreover, a case study on aortic dissection (AD) diagnosis is carried out to evaluate its performance. Experimental results show that the proposed SHEDA is very effective and efficient for hyperparameters optimization, which can find a satisfactory hyperparameters configuration for the CIFAR10, CIFAR100, and AD diagnosis with only 0.58, 0.97, and 1.18 GPU days, respectively.
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ERICA 공학대학 (SCHOOL OF ELECTRICAL ENGINEERING)
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