Dynamic Modeling and Simulation of a Coupled SpringāPendulum System in MATLAB
š Project Description
This professional engineering project presents a complete dynamic modeling and simulation of a Coupled SpringāPendulum System, developed in MATLAB with full theoretical derivation and visual validation.
The package includes MATLAB source codes, a detailed PDF covering equations and background theory, and a high-quality simulation video of the final system behaviorāmaking it ideal for academic submissions, learning, and demonstrations.
šÆ What This Project Covers
ā Full mathematical modeling of the coupled springāpendulum system
ā Step-by-step derivation of nonlinear equations of motion
ā Implementation using MATLAB ODE solvers
ā Clear explanation of system physics and coupling effects
ā Accurate time-domain simulation results
ā Professional visual validation through simulation video
š¦ Deliverables (Included Files)
š MATLAB (.m) Codes
⢠Clean, well-commented, modular scripts
⢠Ready-to-run and easy to modify
š Technical PDF (Theory + Equations)
⢠System description and assumptions
⢠Complete mathematical derivation
⢠Governing equations and parameters
⢠Explanation of simulation methodology
š„ Simulation Video
⢠Visual demonstration of system motion
⢠Final validated system response
⢠Ideal for presentations and viva/demo
š§ Engineering Concepts Included
⢠System Dynamics
⢠Mechanical Vibrations
⢠Coupled Oscillatory Systems
⢠Nonlinear Dynamics
⢠Energy Transfer Mechanisms
⢠Numerical Methods in MATLAB
š§āš Best Suited For
ā
Mechanical Engineering Students
ā
Dynamics & Vibrations Courses
ā
Final Year / Semester Projects
ā
MATLAB & Simulation Learners
ā
Researchers & Educators
š Customization & Add-Ons (Optional)
ā Add damping or external forcing
ā Convert model to Simulink
ā Include animation inside MATLAB
ā Modify parameters for your project
ā Prepare formatted academic report
š© Contact before purchase for custom requests.
š Why This Project Stands Out
ā Complete theory + code + visualization package
ā Saves significant modeling & derivation time
ā Academic-ready and presentation-friendly
ā Clean, professional engineering work
ā Easy to understand and extend
š» Software Requirements
⢠MATLAB R2018 or newer (recommended)
š License & Usage
ā Personal & academic use permitted
ā Redistribution or resale not allowed