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Choudhary, T., Mishra, V., Goswami, A., & Sarangapani, J. (2020). A comprehensive survey on model compression and acceleration. Artificial Intelligence Review, 1–43. 
Added by: SijanLibrarian (2021-06-02 08:16:58)   Last edited by: SijanLibrarian (2021-06-02 08:18:47)
Resource type: Journal Article
BibTeX citation key: Choudhary2020
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Categories: Artificial Intelligence, Complexity Science, Computer Science, Data Sciences, Decision Theory, General, Mathematics
Subcategories: Autonomous systems, Big data, Decision making, Deep learning, Edge AI, Machine learning, Neurosymbolic
Creators: Choudhary, Goswami, Mishra, Sarangapani
Collection: Artificial Intelligence Review
Views: 46/75
Views index: 27%
Popularity index: 6.75%
Abstract
In recent years, machine learning (ML) and deep learning (DL) have shown remarkable improvement in computer vision, natural language processing, stock prediction, forecasting, and audio processing to name a few. The size of the trained DL model is large for these complex tasks, which makes it difficult to deploy on resource-constrained devices. For instance, size of the pre-trained VGG16 model trained on the ImageNet dataset is more than 500 MB. Resource-constrained devices such as mobile phones and internet of things devices have limited memory and less computation power. For real-time applications, the trained models should be deployed on resource-constrained devices. Popular convolutional neural network models have millions of parameters that leads to increase in the size of the trained model. Hence, it becomes essential to compress and accelerate these models before deploying on resource-constrained devices while making the least compromise with the model accuracy. It is a challenging task to retain the same accuracy after compressing the model. To address this challenge, in the last couple of years many researchers have suggested different techniques for model compression and acceleration. In this paper, we have presented a survey of various techniques suggested for compressing and accelerating the ML and DL models. We have also discussed the challenges of the existing techniques and have provided future research directions in the field.
  
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