🎓 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.
- Attitude Dynamics • Orbital Mechanics • Nonlinear Control
- MPC • LQR • PID • Quaternion Feedback
- Convex Optimization • Semi-Definite Programming • Optimization-Based Control
- Autonomous Systems • Multi-Agent Coordination
- 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.
- 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.
- 📮 Email : shavykashyap@gmail.com
- 🔗 Github : https://github.com/shavykashyap
- 💼 LinkedIn: https://www.linkedin.com/in/shavy/