Picture for Zhenbin Wu

Zhenbin Wu

hls4ml: An Open-Source Codesign Workflow to Empower Scientific Low-Power Machine Learning Devices

Add code
Mar 23, 2021
Figure 1 for hls4ml: An Open-Source Codesign Workflow to Empower Scientific Low-Power Machine Learning Devices
Figure 2 for hls4ml: An Open-Source Codesign Workflow to Empower Scientific Low-Power Machine Learning Devices
Figure 3 for hls4ml: An Open-Source Codesign Workflow to Empower Scientific Low-Power Machine Learning Devices
Figure 4 for hls4ml: An Open-Source Codesign Workflow to Empower Scientific Low-Power Machine Learning Devices
Viaarxiv icon

Fast convolutional neural networks on FPGAs with hls4ml

Add code
Jan 13, 2021
Figure 1 for Fast convolutional neural networks on FPGAs with hls4ml
Figure 2 for Fast convolutional neural networks on FPGAs with hls4ml
Figure 3 for Fast convolutional neural networks on FPGAs with hls4ml
Figure 4 for Fast convolutional neural networks on FPGAs with hls4ml
Viaarxiv icon

Accelerated Charged Particle Tracking with Graph Neural Networks on FPGAs

Add code
Nov 30, 2020
Figure 1 for Accelerated Charged Particle Tracking with Graph Neural Networks on FPGAs
Figure 2 for Accelerated Charged Particle Tracking with Graph Neural Networks on FPGAs
Figure 3 for Accelerated Charged Particle Tracking with Graph Neural Networks on FPGAs
Figure 4 for Accelerated Charged Particle Tracking with Graph Neural Networks on FPGAs
Viaarxiv icon

Distance-Weighted Graph Neural Networks on FPGAs for Real-Time Particle Reconstruction in High Energy Physics

Add code
Aug 08, 2020
Figure 1 for Distance-Weighted Graph Neural Networks on FPGAs for Real-Time Particle Reconstruction in High Energy Physics
Figure 2 for Distance-Weighted Graph Neural Networks on FPGAs for Real-Time Particle Reconstruction in High Energy Physics
Figure 3 for Distance-Weighted Graph Neural Networks on FPGAs for Real-Time Particle Reconstruction in High Energy Physics
Figure 4 for Distance-Weighted Graph Neural Networks on FPGAs for Real-Time Particle Reconstruction in High Energy Physics
Viaarxiv icon

Compressing deep neural networks on FPGAs to binary and ternary precision with HLS4ML

Add code
Mar 11, 2020
Figure 1 for Compressing deep neural networks on FPGAs to binary and ternary precision with HLS4ML
Figure 2 for Compressing deep neural networks on FPGAs to binary and ternary precision with HLS4ML
Figure 3 for Compressing deep neural networks on FPGAs to binary and ternary precision with HLS4ML
Figure 4 for Compressing deep neural networks on FPGAs to binary and ternary precision with HLS4ML
Viaarxiv icon

Fast inference of Boosted Decision Trees in FPGAs for particle physics

Add code
Feb 19, 2020
Figure 1 for Fast inference of Boosted Decision Trees in FPGAs for particle physics
Figure 2 for Fast inference of Boosted Decision Trees in FPGAs for particle physics
Figure 3 for Fast inference of Boosted Decision Trees in FPGAs for particle physics
Figure 4 for Fast inference of Boosted Decision Trees in FPGAs for particle physics
Viaarxiv icon

Fast inference of deep neural networks in FPGAs for particle physics

Add code
Jun 28, 2018
Figure 1 for Fast inference of deep neural networks in FPGAs for particle physics
Figure 2 for Fast inference of deep neural networks in FPGAs for particle physics
Figure 3 for Fast inference of deep neural networks in FPGAs for particle physics
Figure 4 for Fast inference of deep neural networks in FPGAs for particle physics
Viaarxiv icon