- Columbus, OH
- https://yuyichang.github.io
Stars
Input device for flight simulator that imitates Garmin G1000 glass cockpit system
Code for RelCon: Relative Contrastive Learning for a Motion Foundation Model for Wearable Data (ICLR 2025)
Python interface for MSFS2020 SimConnect.dll
Code for the ICML 2021 (long talk) paper: "ViLT: Vision-and-Language Transformer Without Convolution or Region Supervision"
Project page for End-to-end Recovery of Human Shape and Pose
MultiPort Antenna Data Acquisition for automatic MIMO S-parameter measurements with Vector Network Analyzer
U8glib library for monochrome displays, version 2
An open-source joystick with force-feedback. Using 3d printed parts, Arduino based firmware. This will encompass all aspects of building your own joystick that can be customized to your liking.
FIles needed to use Kav Simulations LCD Devices.
The A32NX & A380X Project are community driven open source projects to create free Airbus aircraft in Microsoft Flight Simulator that are as close to reality as possible.
A repository with open source panel designs for flight simulation.
Computational Tomography in PyTorch with Mod
Official code for "Boundary loss for highly unbalanced segmentation", runner-up for best paper award at MIDL 2019. Extended version in MedIA, volume 67, January 2021.
Building a full-fledged code editor for iPad
PyTorch implementation of normalizing flow models
VehicleX: Simulating Content Consistent Vehicle Datasets with Attribute Descent (ECCV 2020, TPAMI 2023)
MalcolmRobb / dump1090
Forked from antirez/dump1090Dump1090 is a simple Mode S decoder for RTLSDR devices
Dump1090 is a simple Mode S decoder for RTLSDR devices
Implementation related to the Deep Complex Networks
Latex code for making neural networks diagrams
free finite-difference time-domain (FDTD) software for electromagnetic simulations
Semantic segmentation models with 500+ pretrained convolutional and transformer-based backbones.
gprMax is open source software that simulates electromagnetic wave propagation using the Finite-Difference Time-Domain (FDTD) method for numerical modelling of Ground Penetrating Radar (GPR)