jdlph
Operations Research Practitioner in Network Modeling and Optimization. Open-Source Software Developer. C++ and Python Enthusiast.
Norfolk Southern CorporationAtlanta
Pinned Repositories
DTALite
DLSim-MRM
Open-source Python package designed for integration of deep learning (first DL) and traffic simulation, by extending original C++ based structure of DTALite (second DL)
DTALite
A clean and common C++ code base to build both executable and shared library of DTALite across platforms.
MIOCSV
A suite of lightning-fast CSV parsers and writer built upon memory mapping
Path4GMNS
An open-source, cross-platform, lightweight, and fast Python path engine for networks encoded in GMNS.
shortest-path-algorithms
Boost Shortest Path Algorithm Performance using Proper Data Structures
TAP101
A collection of open-source projects on the Traffic Assignment Problem
The-Art-of-Linear-Algebra
Graphic notes on Gilbert Strang's "Linear Algebra for Everyone"
TransOMS
State-of-the-art open-source applications for Transportation Optimization, Modeling, and Simulation
The-Art-of-Linear-Algebra
Graphic notes on Gilbert Strang's "Linear Algebra for Everyone"
jdlph's Repositories
jdlph/Path4GMNS
An open-source, cross-platform, lightweight, and fast Python path engine for networks encoded in GMNS.
jdlph/TAP101
A collection of open-source projects on the Traffic Assignment Problem
jdlph/TransOMS
State-of-the-art open-source applications for Transportation Optimization, Modeling, and Simulation
jdlph/DTALite
A clean and common C++ code base to build both executable and shared library of DTALite across platforms.
jdlph/shortest-path-algorithms
Boost Shortest Path Algorithm Performance using Proper Data Structures
jdlph/MIOCSV
A suite of lightning-fast CSV parsers and writer built upon memory mapping
jdlph/DLSim-MRM
Open-source Python package designed for integration of deep learning (first DL) and traffic simulation, by extending original C++ based structure of DTALite (second DL)
jdlph/The-Art-of-Linear-Algebra
Graphic notes on Gilbert Strang's "Linear Algebra for Everyone"