Skip to content

Navigation Menu

Sign in
Appearance settings

Search code, repositories, users, issues, pull requests...

Provide feedback

We read every piece of feedback, and take your input very seriously.

Saved searches

Use saved searches to filter your results more quickly

Sign up
Appearance settings
@shavykashyap
shavykashyap
Follow

Shavy Kashyap shavykashyap

MS in Aeronautics and Astronautics Engineering, specialization in Control at the University of Washington - RAINLab

Block or report shavykashyap

Block user

Prevent this user from interacting with your repositories and sending you notifications. Learn more about blocking users.

You must be logged in to block users.

Maximum 250 characters. Please don't include any personal information such as legal names or email addresses. Markdown supported. This note will be visible to only you.
Report abuse

Contact GitHub support about this user’s behavior. Learn more about reporting abuse.

Report abuse
shavykashyap /README.md

Hi, I'm Shavy Kashyap

🎓 Master’s student in Aeronautics & Astronautics at the University of Washington specializing in control systems and driven by a deep interest in spacecraft dynamics, control theory, and autonomous systems.

Interests

  • Attitude Dynamics • Orbital Mechanics • Nonlinear Control
  • MPC • LQR • PID • Quaternion Feedback
  • Convex Optimization • Semi-Definite Programming • Optimization-Based Control
  • Autonomous Systems • Multi-Agent Coordination

Current Projects

  • Building a nonlinear quadcopter modeling and control framework to explore feedback strategies for stable and responsive flight.
  • Applied Semi-Definite Programming to synthesize attitude controllers that satisfy operational constraints, including exclusion and inclusion zones for sensitive payloads.
  • Implemented a quaternion-based attitude control system for real-time satellite orientation, geographic pointing, and target tracking in MATLAB/Simulink.
  • Developed a drag-augmentation concept for small satellites and used Ansys STK simulations to assess de-orbit performance and analyze design tradeoffs.

Toolbox

  • MATLAB/Simulink and Python for modeling, simulation, and control system development.
  • YALMIP, MOSEK, and CVX for convex optimization and semidefinite programming.
  • LaTeX and Mathematica for mathematical modeling and documentation.
  • Ansys (Fluent, Mechanical), STK, and GMAT for aerospace simulation and orbital analysis.

Let’s Connect

Pinned Loading

  1. satellite-attitude-feedback-quaternion satellite-attitude-feedback-quaternion Public

    MATLAB/Simulink project for satellite attitude regulation using quaternion-based feedback control.

    MATLAB 3

  2. satellite-attitude-sdp satellite-attitude-sdp Public

    MATLAB/Simulink project for constrained satellite attitude control using semidefinite programming.

    MATLAB 2 2

AltStyle によって変換されたページ (->オリジナル) /