
Embedded Mechatronic Systems, Volume 2
Analysis of Failures, Modeling, Simulation and Optimization
ISTE Press - Elsevier
Published on 16. July 2015
Book
Hardback
272 pages
978-1-78548-014-0 (ISBN)
Article exhausted; check for reprint
Description
In operation, mechatronics embedded systems are stressed by loads of different causes: climate (temperature, humidity), vibration, electrical and electromagnetic. These stresses in components induce failure mechanisms should be identified and modeled for better control. AUDACE is a collaborative project of the cluster Mov'eo that address issues specific to mechatronic reliability embedded systems. AUDACE means analyzing the causes of failure of components of mechatronic systems onboard. The goal of the project is to optimize the design of mechatronic devices by reliability.
The project brings together public sector laboratories that have expertise in analysis and modeling of failure, major groups of mechatronics (Valeo and Thales) in the automotive and aerospace and small and medium enterprises that have skills in characterization and validation tests.
The project brings together public sector laboratories that have expertise in analysis and modeling of failure, major groups of mechatronics (Valeo and Thales) in the automotive and aerospace and small and medium enterprises that have skills in characterization and validation tests.
More details
Language
English
Place of publication
United Kingdom
Target group
Professional and scholarly
Academics and students (masters and doctoral students), teachers and researchers, industry Major Groups and SMEs in the automotive and aerospace sectors.
Dimensions
Height: 229 mm
Width: 152 mm
Weight
540 gr
ISBN-13
978-1-78548-014-0 (9781785480140)
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Abdelkhalak El Hami | Philippe Pougnet
Embedded Mechatronic Systems 2
Analysis of Failures, Modeling, Simulation and Optimization
Book
03/2020
2nd Edition
ISTE Press - Elsevier
€97.80
Shipment within 3-4 weeks
Additional editions

Abdelkhalak El Hami | Philippe Pougnet
Embedded Mechatronic Systems, Volume 2
Analysis of Failures, Modeling, Simulation and Optimization
E-Book
07/2015
Elsevier
€92.95
Available for download
Persons
Abdelkhalak El Hami is Professeur des universites at the Institut National des Sciences Appliquees (INSA-Rouen) in France and is in charge of the Normandy Conservatoire National des Arts et Metiers (CNAM) Chair of Mechanics and Head of the department of mechanical engineering of INSA Normandy, as well as several European pedagogical projects. He is an expert in fluid-structure interaction studies, reliability and optimization.
Editor
Institut National des Sciences Appliquees (INSA-Rouen), France
Reliability Expert, Valeo, Paris, France
Content
Chapter 10 Reliability Based Optimization of radar and automotive Mechatronic Systems Design
Chapter 11 Highly Accelerated Testing Combining Temperature, Vibrations and Humidity
Chapter 12 Experimental Characterization of the Robustness and of the Reliability Radio Frequency Components Ageing and Current versus Voltage Characterization
Chapter 13 Mechatronic Systems Physical Defects Analysis
Chapter 14 Defect Analysis of the Chemical Constituents of Electronic Components Moldings
Chapter 15 Electro-Thermo-Mechanical Modeling of Mechatronic Systems
Chapter 16 Development of Mechatronic Systems Metamodels
Chapter 17 Reliability Based Optimization of Embedded Mechatronic Systems
Chapter18 High Yield Architecture of a Mechatronic System
Chapter 11 Highly Accelerated Testing Combining Temperature, Vibrations and Humidity
Chapter 12 Experimental Characterization of the Robustness and of the Reliability Radio Frequency Components Ageing and Current versus Voltage Characterization
Chapter 13 Mechatronic Systems Physical Defects Analysis
Chapter 14 Defect Analysis of the Chemical Constituents of Electronic Components Moldings
Chapter 15 Electro-Thermo-Mechanical Modeling of Mechatronic Systems
Chapter 16 Development of Mechatronic Systems Metamodels
Chapter 17 Reliability Based Optimization of Embedded Mechatronic Systems
Chapter18 High Yield Architecture of a Mechatronic System