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Vibration is undesirable in most engineering systems. The ill effects of vibration include fatigue failure, severe damages due to resonance, malfunctioning of sensitive instruments/systems, loss of accuracy of workpiece due to vibration of machine tools and so on. The aim of this course is to give a brief overview about the various strategies to control such vibrations in systems and principle behind them.


This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.


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Course Credit: NPTEL

Course Curriculum

Module: 01
Principles of Vibration Control – Introduction 00:15:00
Coulomb & Hysteretic damping model 00:32:00
Introduction to Vibration control 00:37:00
Strategies & Steps in Vibration Control 00:33:00
Strategies, Active control, Detuning & Decoupling 00:32:00
Viscous damping model 00:39:00
Complex modulus & Applications of VEM 00:30:00
Module: 02
Maxwell & 3-Parameter Models 00:38:00
Linear Viscoelastic Materials & Models 00:35:00
Design for Enhanced Material Damping 00:25:00
Energy Dissipation in Structural Materials 00:32:00
Material Selection Criterion against Damping 00:25:00
Modelling of Dynamic Vibration Absorber 00:34:00
Basics of Dynamic Vibration Absorber 00:26:00
Module: 03
Springs for Vibration Isolation 00:28:00
Proof mass Actuator 00:31:00
SMSS Laboratory Demonstration 00:10:00
Full State Feedback Control 00:19:00
Controllability & Observability of System 00:29:00
Basics of State Space Control 00:31:00
Introduction to Active Vibration Control 00:32:00
Basics of Classical Control System 00:42:00
Submit Your Assignment 00:00:00
Certification 00:00:00

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