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EfficientNet×Neuronális Architektúra Keresés×ResNet (Residual Network)×
TudományterületMélytanulásMélytanulásMélytanulás
MódszercsaládMachine learningMachine learningMachine learning
Keletkezés éve201920172016
MegalkotóTan, M. & Le, Q. V.Zoph, B. & Le, Q.V.He, K.; Zhang, X.; Ren, S.; Sun, J.
TípusCompound-scaled convolutional neural network architectureAutomated architecture optimization (deep learning)Deep Convolutional Neural Network with skip connections
AlapműTan, M. & Le, Q. V. (2019). EfficientNet: Rethinking Model Scaling for Convolutional Neural Networks. Proceedings of the 36th International Conference on Machine Learning (ICML 2019), PMLR 97, 6105–6114. link ↗Zoph, B. & Le, Q.V. (2017). Neural Architecture Search with Reinforcement Learning. ICLR. link ↗He, K., Zhang, X., Ren, S., & Sun, J. (2016). Deep Residual Learning for Image Recognition. Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition (CVPR), 770–778. DOI ↗
Alternatív nevekEfficientNet, compound scaling CNN, EfficientNet-B0 through B7, EfficientNetV2Nöral Mimari Arama (NAS), NAS, automated architecture design, differentiable architecture searchResNet, Residual Network, Deep Residual Learning, ResNet-50
Kapcsolódó454
ÖsszefoglalóEfficientNet is a family of convolutional neural network architectures introduced by Mingxing Tan and Quoc V. Le (Google Brain) at ICML 2019 that systematically co-scales network depth, width, and input resolution using a single compound coefficient, achieving state-of-the-art image classification accuracy with substantially fewer parameters and FLOPs than prior networks such as ResNet and Inception.Neural Architecture Search (NAS), introduced by Zoph and Le in 2017, automatically optimizes architectural decisions such as a network's depth, width, and connection structure instead of hand-designing them. Leading methods in the field include DARTS, ENAS, and Once-for-All.ResNet (Residual Network) is a deep convolutional neural network architecture introduced by Kaiming He, Xiangyu Zhang, Shaoqing Ren, and Jian Sun at CVPR 2016. By inserting shortcut (skip) connections that carry the input of a block directly to its output — defining the block's task as learning a residual correction rather than a full mapping — ResNet enabled training of networks with hundreds or even thousands of layers without the vanishing-gradient degradation that had previously made very deep networks impractical. It won the ILSVRC 2015 image recognition competition with a top-5 error of 3.57% and remains the most widely used backbone architecture in computer vision.
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ScholarGateMódszerek összehasonlítása: EfficientNet · Neural Architecture Search · ResNet. Letöltve 2026-06-19, forrás: https://scholargate.app/hu/compare