Papers › Efficient Computation of Hessian Matrices in TensorFlow

Efficient Computation of Hessian Matrices in TensorFlow

14 May 2019arXiv:1905.05559archive 2025-07-28

Geir K. Nilsen, Antonella Z. Munthe-Kaas, Hans J. Skaug, Morten Brun

The Hessian matrix has a number of important applications in a variety of different fields, such as optimzation, image processing and statistics. In this paper we focus on the practical aspects of efficiently computing Hessian matrices in the context of deep learning using the Python scripting language and the TensorFlow library. We define a general feed-forward neural network model and show how to efficiently compute two quantities: the cost function's exact Hessian matrix, and the cost function's approximate Hessian matrix, known as the Outer Product of Gradients (OPG) matrix. Furthermore, as the number of parameters (weights and biases) in deep learning usually is very large, we show how to reduce the quadratic space complexity by an efficient implementation based on approximate eigendecompositions.

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