SOTAVerified

Model Compression

Model Compression is an actively pursued area of research over the last few years with the goal of deploying state-of-the-art deep networks in low-power and resource limited devices without significant drop in accuracy. Parameter pruning, low-rank factorization and weight quantization are some of the proposed methods to compress the size of deep networks.

Source: KD-MRI: A knowledge distillation framework for image reconstruction and image restoration in MRI workflow

Papers

Showing 10811090 of 1356 papers

TitleStatusHype
Lottery Hypothesis based Unsupervised Pre-training for Model Compression in Federated Learning0
Extending DeepSDF for automatic 3D shape retrieval and similarity transform estimation0
Training with Quantization Noise for Extreme Model CompressionCode1
Knowledge Distillation and Student-Teacher Learning for Visual Intelligence: A Review and New OutlooksCode2
KD-MRI: A knowledge distillation framework for image reconstruction and image restoration in MRI workflowCode1
GeneCAI: Genetic Evolution for Acquiring Compact AI0
LadaBERT: Lightweight Adaptation of BERT through Hybrid Model Compression0
Orthant Based Proximal Stochastic Gradient Method for _1-Regularized OptimizationCode1
Introducing Pose Consistency and Warp-Alignment for Self-Supervised 6D Object Pose Estimation in Color Images0
A Survey on Contextual Embeddings0
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Benchmark Results

#ModelMetricClaimedVerifiedStatus
1MobileBERT + 2bit-1dim model compression using DKMAccuracy82.13Unverified
2MobileBERT + 1bit-1dim model compression using DKMAccuracy63.17Unverified