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Impact detection for smart automotive damage mitigation systems
Saravanan M. Peelamedu
,
Constantin Ciocanel
, Nagi G. Naganathan
Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
19
Scopus citations
Overview
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Dive into the research topics of 'Impact detection for smart automotive damage mitigation systems'. Together they form a unique fingerprint.
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Keyphrases
Frequency Change
100%
Actuator
100%
Reissner-Mindlin Plate Theory
100%
Generalized Algorithm
100%
Modal Analysis
100%
Mitigation System
100%
Damage Location
100%
Static Loading
100%
Smart Automobiles
100%
Damage Mitigation
100%
Motivation
100%
Damage Size
100%
Frequency Analysis
100%
Impact Loading
100%
Automotive Structures
100%
Damaged Plate
100%
Impact Detection
100%
Impact Location
100%
Energy Approach
100%
Simply Supported Rectangular Plate
100%
Smart Materials
100%
Impact Magnitude
100%
Vehicle Engineering
100%
Hamilton's Principle
100%
Rayleigh-Ritz
100%
Automotive Vehicles
100%
Vehicle Damage
100%
Deconvolution
100%
Performance Level
100%
Mode Shape
100%
Lagrangian
100%
Occupant Safety
100%
Material Science
Actuator
100%
Impact Loads
100%
Modal Analysis
100%
Static Loading
100%
Contact Area
100%
Intelligent Material
100%
Engineering
Automotives
100%
Energy Engineering
33%
Contact Area
33%
Reissner-Mindlin Plate Theory
33%
Deconvolution
33%
Mode Shape
33%
Damaged Plate
33%
Rectangular Plate
33%
Sensor Material
33%
Hamilton's Principle
33%
Modal Analysis
33%
Impact Loads
33%
Damage Location
33%
Vehicle Design
33%
Frequency Analysis
33%
Static Loading
33%