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Vehicle Vibration Analysis: Mathematical Modeling, MATLAB Simulation, and Experimental Validation presents a practical and research-oriented approach to analyzing vehicle vibration behavior. The book covers the development of a mathematical model of a vehicle system, derivation of equations of motion, numerical solution using the Newmark-Beta method in MATLAB, and experimental validation using FFT-based vibration measurements.
Designed for undergraduate and postgraduate students, researchers, and practicing engineers, this book bridges the gap between theoretical vibration analysis and real-world automotive applications. Through simulation and experimental investigations, readers gain a comprehensive understanding of vehicle dynamic response and vibration characteristics.
The methodologies presented in this book can be applied to the design, analysis, and optimization of automotive systems for improved ride comfort, durability, and performance.
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