Conducted advanced research on nonsmooth dynamical systems, with a primary focus on Filippov systems, analysing dynamics at discontinuities, including sliding and crossing motions and the formation and evolution of sliding regions.
Investigated local and global discontinuity-induced bifurcations, revealing rich dynamical behaviours, including complex oscillations, chaotic motion, and multistability.
Employed advanced analytical techniques—including geometric singular perturbation theory, blow-up analysis, hidden dynamics, and the Filippov convex method—integrated with extensive numerical simulations to characterise system behaviour across parameter regimes.
Performed large-scale numerical simulations using MATLAB, including GPU acceleration, parallel computing, and high-performance computing (HPC).
Studying rare-event transitions in piecewise-smooth stochastic differential equations using large-scale Monte Carlo simulations and optimisation-based path-finding methods.
Connected mathematical theory with real-world applications through combined analytical and computational modelling of nonsmooth dynamical systems, including stick–slip oscillations in a mechanical earthquake model and a dual-threshold predator–prey system ecosystem in a Seasonally Fluctuating Environment for integrated pest management for integrated pest management.
During my industrial training at Rexroth Bosch Group, I gained hands-on experience and theoretical knowledge in both hydraulics and pneumatics systems. This comprehensive program covered basic and electro hydraulics and basic and electro pneumatics. Through building scaled circuits of industrial systems, I developed a strong understanding of the practical applications of these technologies. This training honed my technical skills and enhanced my ability to analyze and troubleshoot hydraulic and pneumatic systems effectively.
I gained valuable experience in both service and maintenance as well as quality assurance. Working closely with experienced technicians, I developed a strong understanding of automotive mechanical systems and performed tasks such as diagnosing issues and conducting routine maintenance. Additionally, I played an active role in quality assurance by conducting inspections to ensure components and vehicles met rigorous standards.
AM5650 - Nonlinear Dynamics
Faculty: Dr. Ganesh Tamadapu
Spring 2024, Spring 2023
AM5030 - Linear Dynamical Systems
Faculty: Dr. Ganesh Tamadapu
Fall 2021
ID6107 - Perturbation Methods for Engineering Problems
Faculty: Dr. Ganesh Tamadapu
Spring 2020
AM5117 - Analytical Methods in Engineering Mechanics
Faculty: Dr. Ganesh Tamadapu
Spring 2022, Fall 2019
AM5402 - M.Tech Project
Faculty: Dr. Ganesh Tamadapu
Spring 2024
AM2200 - Strength of Materials
Faculty: Dr. Ganesh Tamadapu
Fall 2023
Fall 2022
AM1100 - Engineering Mechanics
Faculty: Dr. Ganesh Tamadapu
Spring 2021
2019-2024: As a teaching assistant, my responsibilities include preparing and grading assignments, conducting tutorial classes, supporting exam invigilation, and ensuring the smooth running of classes.
MATLAB
Mathematica
Python
Basic C
CATIA
Autocad
LATEX
Microsoft Office
Inkscape
Xfig