Alert button
Picture for Alan Edelman

Alan Edelman

Alert button

Locally Regularized Neural Differential Equations: Some Black Boxes Were Meant to Remain Closed!

Add code
Bookmark button
Alert button
Mar 10, 2023
Avik Pal, Alan Edelman, Chris Rackauckas

Figure 1 for Locally Regularized Neural Differential Equations: Some Black Boxes Were Meant to Remain Closed!
Figure 2 for Locally Regularized Neural Differential Equations: Some Black Boxes Were Meant to Remain Closed!
Figure 3 for Locally Regularized Neural Differential Equations: Some Black Boxes Were Meant to Remain Closed!
Figure 4 for Locally Regularized Neural Differential Equations: Some Black Boxes Were Meant to Remain Closed!
Viaarxiv icon

Mixing Implicit and Explicit Deep Learning with Skip DEQs and Infinite Time Neural ODEs (Continuous DEQs)

Add code
Bookmark button
Alert button
Feb 04, 2022
Avik Pal, Alan Edelman, Christopher Rackauckas

Figure 1 for Mixing Implicit and Explicit Deep Learning with Skip DEQs and Infinite Time Neural ODEs (Continuous DEQs)
Figure 2 for Mixing Implicit and Explicit Deep Learning with Skip DEQs and Infinite Time Neural ODEs (Continuous DEQs)
Figure 3 for Mixing Implicit and Explicit Deep Learning with Skip DEQs and Infinite Time Neural ODEs (Continuous DEQs)
Figure 4 for Mixing Implicit and Explicit Deep Learning with Skip DEQs and Infinite Time Neural ODEs (Continuous DEQs)
Viaarxiv icon

High-performance symbolic-numerics via multiple dispatch

Add code
Bookmark button
Alert button
May 12, 2021
Shashi Gowda, Yingbo Ma, Alessandro Cheli, Maja Gwozdz, Viral B. Shah, Alan Edelman, Christopher Rackauckas

Figure 1 for High-performance symbolic-numerics via multiple dispatch
Viaarxiv icon

ACED: Accelerated Computational Electrochemical systems Discovery

Add code
Bookmark button
Alert button
Nov 10, 2020
Rachel C. Kurchin, Eric Muckley, Lance Kavalsky, Vinay Hegde, Dhairya Gandhi, Xiaoyu Sun, Matthew Johnson, Alan Edelman, James Saal, Christopher Vincent Rackauckas, Bryce Meredig, Viral Shah, Venkatasubramanian Viswanathan

Figure 1 for ACED: Accelerated Computational Electrochemical systems Discovery
Viaarxiv icon

Accelerating Simulation of Stiff Nonlinear Systems using Continuous-Time Echo State Networks

Add code
Bookmark button
Alert button
Oct 19, 2020
Ranjan Anantharaman, Yingbo Ma, Shashi Gowda, Chris Laughman, Viral Shah, Alan Edelman, Chris Rackauckas

Figure 1 for Accelerating Simulation of Stiff Nonlinear Systems using Continuous-Time Echo State Networks
Figure 2 for Accelerating Simulation of Stiff Nonlinear Systems using Continuous-Time Echo State Networks
Figure 3 for Accelerating Simulation of Stiff Nonlinear Systems using Continuous-Time Echo State Networks
Figure 4 for Accelerating Simulation of Stiff Nonlinear Systems using Continuous-Time Echo State Networks
Viaarxiv icon

Signal Enhancement for Magnetic Navigation Challenge Problem

Add code
Bookmark button
Alert button
Jul 23, 2020
Albert R. Gnadt, Joseph Belarge, Aaron Canciani, Lauren Conger, Joseph Curro, Alan Edelman, Peter Morales, Michael F. O'Keeffe, Jonathan Taylor, Christopher Rackauckas

Figure 1 for Signal Enhancement for Magnetic Navigation Challenge Problem
Figure 2 for Signal Enhancement for Magnetic Navigation Challenge Problem
Figure 3 for Signal Enhancement for Magnetic Navigation Challenge Problem
Figure 4 for Signal Enhancement for Magnetic Navigation Challenge Problem
Viaarxiv icon

A Differentiable Programming System to Bridge Machine Learning and Scientific Computing

Add code
Bookmark button
Alert button
Jul 18, 2019
Mike Innes, Alan Edelman, Keno Fischer, Chris Rackauckas, Elliot Saba, Viral B Shah, Will Tebbutt

Figure 1 for A Differentiable Programming System to Bridge Machine Learning and Scientific Computing
Figure 2 for A Differentiable Programming System to Bridge Machine Learning and Scientific Computing
Figure 3 for A Differentiable Programming System to Bridge Machine Learning and Scientific Computing
Figure 4 for A Differentiable Programming System to Bridge Machine Learning and Scientific Computing
Viaarxiv icon

Accelerated Convolutions for Efficient Multi-Scale Time to Contact Computation in Julia

Add code
Bookmark button
Alert button
Dec 28, 2016
Alexander Amini, Berthold Horn, Alan Edelman

Figure 1 for Accelerated Convolutions for Efficient Multi-Scale Time to Contact Computation in Julia
Figure 2 for Accelerated Convolutions for Efficient Multi-Scale Time to Contact Computation in Julia
Figure 3 for Accelerated Convolutions for Efficient Multi-Scale Time to Contact Computation in Julia
Figure 4 for Accelerated Convolutions for Efficient Multi-Scale Time to Contact Computation in Julia
Viaarxiv icon