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Hi there 👋

I'm currently a PhD Candidate in the Dept. of Electrical Engineering at Texas A&M in College Station. Additionally I'm working with the Army Research Lab on projects of interest to the DoD.

Research Interests

Other Interests

I'm interested in a swath of areas of computer science that aren't directly related to my research, notable examples are:

  • Distributed computing - I love working in distributed environments. The Army Research Lab has granted me an Nvidia DGX Station for my research, which is a platform I use heavily to experiment and build in distributed environments
  • Compilers/IRs - I just find the intersection of hardware and software fascinating. Recently I have been digging into LLVM, MLIR, as well as implementation of assembly in various architectures to include MIPS, x86, and ARM. I'm mostly a high-level programming language guy (Python, R, etc) but I love learning more about the hardware interface, as well as how to take deep-learning implementations to the edge on 'micro' computing devices. Oftentimes these implementations must be executed eithout operating system oversight, and require creative programming
  • Computer Vision - early in my PhD I worked heavily in computer vision with applications in materials informatics, and learned a lot about CV.
  • Writing - Recently, I have been contributing to d2l.ai with this knowledge of CV, Tensorflow, Distributed Computing, etc. The d2l.ai project is an open-source general purpose deep learning textbook covering topics from MLPs to attention mechanisms and online video processing. The textbook is being used at 140+ universities worldwide and is endorsed by high-profiles individuals to include Jensen Huang, CEO of Nvidia. Specifically, I have been contributing code snippets to the Tensorflow implementation of the concepts in the text, as well as contributing technical content on differences between code implementation in Tensorflow, Pytorch, and MXNet.
  • Reviewing - I have taken part in many technical reviews of Manning Publishing books, to include texts on distributed computing and tensorflow, amongst others. Many are in early-stage writing, and technical reviews are anonymous, so I forgo listing specific texts for now.

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Levi D McClenny's Projects

d2l-en icon d2l-en

Interactive deep learning book with code, math, and discussions. Available in multi-frameworks. Adopted at 175 universities.

devtools icon devtools

Tools to make an R developer's life easier

diffeqflux.jl icon diffeqflux.jl

Universal neural differential equations with O(1) backprop, GPUs, and stiff+non-stiff DE solvers, demonstrating scientific machine learning (SciML) and physics-informed machine learning methods

meta icon meta

Planning and Collaborative Space for Executable Book Project

moose icon moose

Multiphysics Object Oriented Simulation Environment

sa-pinns icon sa-pinns

Implementation of the paper "Self-Adaptive Physics-Informed Neural Networks using a Soft Attention Mechanism" [AAAI-MLPS 2021]

tensordiffeq icon tensordiffeq

Efficient and Scalable Physics-Informed Deep Learning and Scientific Machine Learning on top of Tensorflow for multi-worker distributed computing

udemy-beginning-cuda icon udemy-beginning-cuda

Scratch Directory for Udemy Beginning CUDA course - https://www.udemy.com/course/introduction-to-parallel-programming-using-gpgpu-and-cuda/

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