Lossless Compression of Deep Neural Networks
January 01, 2020 ยท Declared Dead ยท ๐ Integration of AI and OR Techniques in Constraint Programming
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Authors
Thiago Serra, Abhinav Kumar, Srikumar Ramalingam
arXiv ID
2001.00218
Category
cs.LG: Machine Learning
Cross-listed
cs.DS,
math.OC,
stat.ML
Citations
61
Venue
Integration of AI and OR Techniques in Constraint Programming
Last Checked
5 months ago
Abstract
Deep neural networks have been successful in many predictive modeling tasks, such as image and language recognition, where large neural networks are often used to obtain good accuracy. Consequently, it is challenging to deploy these networks under limited computational resources, such as in mobile devices. In this work, we introduce an algorithm that removes units and layers of a neural network while not changing the output that is produced, which thus implies a lossless compression. This algorithm, which we denote as LEO (Lossless Expressiveness Optimization), relies on Mixed-Integer Linear Programming (MILP) to identify Rectified Linear Units (ReLUs) with linear behavior over the input domain. By using L1 regularization to induce such behavior, we can benefit from training over a larger architecture than we would later use in the environment where the trained neural network is deployed.
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