Alert button
Picture for Mitja Kleider

Mitja Kleider

Alert button

A Scalable Approach to Modeling on Accelerated Neuromorphic Hardware

Add code
Bookmark button
Alert button
Mar 21, 2022
Eric Müller, Elias Arnold, Oliver Breitwieser, Milena Czierlinski, Arne Emmel, Jakob Kaiser, Christian Mauch, Sebastian Schmitt, Philipp Spilger, Raphael Stock, Yannik Stradmann, Johannes Weis, Andreas Baumbach, Sebastian Billaudelle, Benjamin Cramer, Falk Ebert, Julian Göltz, Joscha Ilmberger, Vitali Karasenko, Mitja Kleider, Aron Leibfried, Christian Pehle, Johannes Schemmel

Figure 1 for A Scalable Approach to Modeling on Accelerated Neuromorphic Hardware
Figure 2 for A Scalable Approach to Modeling on Accelerated Neuromorphic Hardware
Figure 3 for A Scalable Approach to Modeling on Accelerated Neuromorphic Hardware
Figure 4 for A Scalable Approach to Modeling on Accelerated Neuromorphic Hardware
Viaarxiv icon

Inference with Artificial Neural Networks on Analog Neuromorphic Hardware

Add code
Bookmark button
Alert button
Jul 01, 2020
Johannes Weis, Philipp Spilger, Sebastian Billaudelle, Yannik Stradmann, Arne Emmel, Eric Müller, Oliver Breitwieser, Andreas Grübl, Joscha Ilmberger, Vitali Karasenko, Mitja Kleider, Christian Mauch, Korbinian Schreiber, Johannes Schemmel

Figure 1 for Inference with Artificial Neural Networks on Analog Neuromorphic Hardware
Figure 2 for Inference with Artificial Neural Networks on Analog Neuromorphic Hardware
Figure 3 for Inference with Artificial Neural Networks on Analog Neuromorphic Hardware
Figure 4 for Inference with Artificial Neural Networks on Analog Neuromorphic Hardware
Viaarxiv icon

Inference with Artificial Neural Networks on the Analog BrainScaleS-2 Hardware

Add code
Bookmark button
Alert button
Jun 23, 2020
Johannes Weis, Philipp Spilger, Sebastian Billaudelle, Yannik Stradmann, Arne Emmel, Eric Müller, Oliver Breitwieser, Andreas Grübl, Joscha Ilmberger, Vitali Karasenko, Mitja Kleider, Christian Mauch, Korbinian Schreiber, Johannes Schemmel

Figure 1 for Inference with Artificial Neural Networks on the Analog BrainScaleS-2 Hardware
Figure 2 for Inference with Artificial Neural Networks on the Analog BrainScaleS-2 Hardware
Figure 3 for Inference with Artificial Neural Networks on the Analog BrainScaleS-2 Hardware
Figure 4 for Inference with Artificial Neural Networks on the Analog BrainScaleS-2 Hardware
Viaarxiv icon

The Operating System of the Neuromorphic BrainScaleS-1 System

Add code
Bookmark button
Alert button
Mar 30, 2020
Eric Müller, Sebastian Schmitt, Christian Mauch, Sebastian Billaudelle, Andreas Grübl, Maurice Güttler, Dan Husmann, Joscha Ilmberger, Sebastian Jeltsch, Jakob Kaiser, Johann Klähn, Mitja Kleider, Christoph Koke, José Montes, Paul Müller, Johannes Partzsch, Felix Passenberg, Hartmut Schmidt, Bernhard Vogginger, Jonas Weidner, Christian Mayr, Johannes Schemmel

Figure 1 for The Operating System of the Neuromorphic BrainScaleS-1 System
Figure 2 for The Operating System of the Neuromorphic BrainScaleS-1 System
Figure 3 for The Operating System of the Neuromorphic BrainScaleS-1 System
Figure 4 for The Operating System of the Neuromorphic BrainScaleS-1 System
Viaarxiv icon

Versatile emulation of spiking neural networks on an accelerated neuromorphic substrate

Add code
Bookmark button
Alert button
Dec 30, 2019
Sebastian Billaudelle, Yannik Stradmann, Korbinian Schreiber, Benjamin Cramer, Andreas Baumbach, Dominik Dold, Julian Göltz, Akos F. Kungl, Timo C. Wunderlich, Andreas Hartel, Eric Müller, Oliver Breitwieser, Christian Mauch, Mitja Kleider, Andreas Grübl, David Stöckel, Christian Pehle, Arthur Heimbrecht, Philipp Spilger, Gerd Kiene, Vitali Karasenko, Walter Senn, Mihai A. Petrovici, Johannes Schemmel, Karlheinz Meier

Figure 1 for Versatile emulation of spiking neural networks on an accelerated neuromorphic substrate
Figure 2 for Versatile emulation of spiking neural networks on an accelerated neuromorphic substrate
Figure 3 for Versatile emulation of spiking neural networks on an accelerated neuromorphic substrate
Figure 4 for Versatile emulation of spiking neural networks on an accelerated neuromorphic substrate
Viaarxiv icon

Generative models on accelerated neuromorphic hardware

Add code
Bookmark button
Alert button
Jul 11, 2018
Akos F. Kungl, Sebastian Schmitt, Johann Klähn, Paul Müller, Andreas Baumbach, Dominik Dold, Alexander Kugele, Nico Gürtler, Luziwei Leng, Eric Müller, Christoph Koke, Mitja Kleider, Christian Mauch, Oliver Breitwieser, Maurice Güttler, Dan Husmann, Kai Husmann, Joscha Ilmberger, Andreas Hartel, Vitali Karasenko, Andreas Grübl, Johannes Schemmel, Karlheinz Meier, Mihai A. Petrovici

Figure 1 for Generative models on accelerated neuromorphic hardware
Figure 2 for Generative models on accelerated neuromorphic hardware
Figure 3 for Generative models on accelerated neuromorphic hardware
Figure 4 for Generative models on accelerated neuromorphic hardware
Viaarxiv icon

Pattern representation and recognition with accelerated analog neuromorphic systems

Add code
Bookmark button
Alert button
Jul 03, 2017
Mihai A. Petrovici, Sebastian Schmitt, Johann Klähn, David Stöckel, Anna Schroeder, Guillaume Bellec, Johannes Bill, Oliver Breitwieser, Ilja Bytschok, Andreas Grübl, Maurice Güttler, Andreas Hartel, Stephan Hartmann, Dan Husmann, Kai Husmann, Sebastian Jeltsch, Vitali Karasenko, Mitja Kleider, Christoph Koke, Alexander Kononov, Christian Mauch, Eric Müller, Paul Müller, Johannes Partzsch, Thomas Pfeil, Stefan Schiefer, Stefan Scholze, Anand Subramoney, Vasilis Thanasoulis, Bernhard Vogginger, Robert Legenstein, Wolfgang Maass, René Schüffny, Christian Mayr, Johannes Schemmel, Karlheinz Meier

Figure 1 for Pattern representation and recognition with accelerated analog neuromorphic systems
Figure 2 for Pattern representation and recognition with accelerated analog neuromorphic systems
Figure 3 for Pattern representation and recognition with accelerated analog neuromorphic systems
Viaarxiv icon

Neuromorphic Hardware In The Loop: Training a Deep Spiking Network on the BrainScaleS Wafer-Scale System

Add code
Bookmark button
Alert button
Mar 06, 2017
Sebastian Schmitt, Johann Klaehn, Guillaume Bellec, Andreas Gruebl, Maurice Guettler, Andreas Hartel, Stephan Hartmann, Dan Husmann, Kai Husmann, Vitali Karasenko, Mitja Kleider, Christoph Koke, Christian Mauch, Eric Mueller, Paul Mueller, Johannes Partzsch, Mihai A. Petrovici, Stefan Schiefer, Stefan Scholze, Bernhard Vogginger, Robert Legenstein, Wolfgang Maass, Christian Mayr, Johannes Schemmel, Karlheinz Meier

Figure 1 for Neuromorphic Hardware In The Loop: Training a Deep Spiking Network on the BrainScaleS Wafer-Scale System
Figure 2 for Neuromorphic Hardware In The Loop: Training a Deep Spiking Network on the BrainScaleS Wafer-Scale System
Figure 3 for Neuromorphic Hardware In The Loop: Training a Deep Spiking Network on the BrainScaleS Wafer-Scale System
Figure 4 for Neuromorphic Hardware In The Loop: Training a Deep Spiking Network on the BrainScaleS Wafer-Scale System
Viaarxiv icon