Sustainable Manufacturing for Industry 4.0
An Augmented Approach
Herausgeber: Jayakrishna, K.; Raj, S. Aravind; K. E. K., Vimal
Sustainable Manufacturing for Industry 4.0
An Augmented Approach
Herausgeber: Jayakrishna, K.; Raj, S. Aravind; K. E. K., Vimal
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This book is a contemporary tool to identify the importance of Industry 4.0 and its allied areas in the field of manufacturing and industrial systems engineering, in the context of sustainable manufacturing. It allows the readers to pursue applied research in the field and will be most beneficial to researchers, practitioners, and research labs.
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This book is a contemporary tool to identify the importance of Industry 4.0 and its allied areas in the field of manufacturing and industrial systems engineering, in the context of sustainable manufacturing. It allows the readers to pursue applied research in the field and will be most beneficial to researchers, practitioners, and research labs.
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Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: CRC Press
- Seitenzahl: 282
- Erscheinungstermin: 19. Oktober 2020
- Englisch
- Abmessung: 240mm x 161mm x 20mm
- Gewicht: 592g
- ISBN-13: 9781138606845
- ISBN-10: 1138606847
- Artikelnr.: 60009008
- Verlag: CRC Press
- Seitenzahl: 282
- Erscheinungstermin: 19. Oktober 2020
- Englisch
- Abmessung: 240mm x 161mm x 20mm
- Gewicht: 592g
- ISBN-13: 9781138606845
- ISBN-10: 1138606847
- Artikelnr.: 60009008
K. Jayakrishna, Vimal K.E.K., S. Aravind Raj, Asela K. Kulatunga, M.T.H. Sultan, J. Paulo Davim
Section 1: Concept of Industry 4.0. 1. Introduction and Evolution of
Industry 4.0. 2. Characteristics and Design Principles of Industry 4.0. 3.
Applications and Impact of Industry 4.0 on Manufacturing. Section 2:
Sustainable Manufacturing and Industry 4.0. 4. Environmentally Conscious
Manufacturing and its Need. 5. Design for Sustainability and its Framework.
6. Orientation of Sustainable Product Development. 7. Influence of
Sustainability on Industry 4.0. Section 3: Innovation in Manufacturing for
Sustainable Smart Factories. 8. Role of Industrial Internet of Things
(IIoT) in Manufacturing. 9. Big data and its Importance in Manufacturing.
10. Intelligent Manufacturing using Cyber Physical Systems (CPS). 11.
Networking for Industry 4.0. 12. Cloud Manufacturing and Importance of
Cyber-Security. 13. Adoption of Information and Communication Technology
(ICT) for Industry 4.0. Section 4: Decision Making to Achieve
Sustainability in Factories. 14. Expert Decision Support System for
Industry 4.0. 15. Data Analytics and Industry 4.0. 16. Artificial
Intelligence and Industry 4.0. 17. Role of Machine Learning in Industry
4.0. 18. Software Development for Industry 4.0. 19 Applications of
Augmented Reality, Simulation, Optimization. Section 5: Sustainable SMART
Factories: Compliance to Environmental Standards. 20. Smart Eco Conscious
Manufacturing and Clean Development Mechanism. 21. Industrial Symbiosis and
Circular Economy for Future Factories. 22. Resource Conservation and
Recycling in Industry 4.0. 23. Monitoring Manufacturing Process Parameters
for Negative Environmental impacts. 24. ERP Systems and Supply Chain
Management in Industry 4.0. 25. Importance of Additive Manufacturing:
Factories of the Future. 26. End of Life Disposal and Sustainable
Industrial Waste Management in Industry 4.0. Section 6: Ensuring
Sustainability in Industry 4.0: Implementation Framework. 27. Understanding
Manufacturing Sustainability Characteristics. 28. Guidelines for Ensuring
Sustainability in Industry 4.0. 29. Development of Process Based Framework
Model for Industry 4.0. 30. Case Studies: Sustaining the Global
Competiveness with Industry 4.0.
Industry 4.0. 2. Characteristics and Design Principles of Industry 4.0. 3.
Applications and Impact of Industry 4.0 on Manufacturing. Section 2:
Sustainable Manufacturing and Industry 4.0. 4. Environmentally Conscious
Manufacturing and its Need. 5. Design for Sustainability and its Framework.
6. Orientation of Sustainable Product Development. 7. Influence of
Sustainability on Industry 4.0. Section 3: Innovation in Manufacturing for
Sustainable Smart Factories. 8. Role of Industrial Internet of Things
(IIoT) in Manufacturing. 9. Big data and its Importance in Manufacturing.
10. Intelligent Manufacturing using Cyber Physical Systems (CPS). 11.
Networking for Industry 4.0. 12. Cloud Manufacturing and Importance of
Cyber-Security. 13. Adoption of Information and Communication Technology
(ICT) for Industry 4.0. Section 4: Decision Making to Achieve
Sustainability in Factories. 14. Expert Decision Support System for
Industry 4.0. 15. Data Analytics and Industry 4.0. 16. Artificial
Intelligence and Industry 4.0. 17. Role of Machine Learning in Industry
4.0. 18. Software Development for Industry 4.0. 19 Applications of
Augmented Reality, Simulation, Optimization. Section 5: Sustainable SMART
Factories: Compliance to Environmental Standards. 20. Smart Eco Conscious
Manufacturing and Clean Development Mechanism. 21. Industrial Symbiosis and
Circular Economy for Future Factories. 22. Resource Conservation and
Recycling in Industry 4.0. 23. Monitoring Manufacturing Process Parameters
for Negative Environmental impacts. 24. ERP Systems and Supply Chain
Management in Industry 4.0. 25. Importance of Additive Manufacturing:
Factories of the Future. 26. End of Life Disposal and Sustainable
Industrial Waste Management in Industry 4.0. Section 6: Ensuring
Sustainability in Industry 4.0: Implementation Framework. 27. Understanding
Manufacturing Sustainability Characteristics. 28. Guidelines for Ensuring
Sustainability in Industry 4.0. 29. Development of Process Based Framework
Model for Industry 4.0. 30. Case Studies: Sustaining the Global
Competiveness with Industry 4.0.
Section 1: Concept of Industry 4.0. 1. Introduction and Evolution of
Industry 4.0. 2. Characteristics and Design Principles of Industry 4.0. 3.
Applications and Impact of Industry 4.0 on Manufacturing. Section 2:
Sustainable Manufacturing and Industry 4.0. 4. Environmentally Conscious
Manufacturing and its Need. 5. Design for Sustainability and its Framework.
6. Orientation of Sustainable Product Development. 7. Influence of
Sustainability on Industry 4.0. Section 3: Innovation in Manufacturing for
Sustainable Smart Factories. 8. Role of Industrial Internet of Things
(IIoT) in Manufacturing. 9. Big data and its Importance in Manufacturing.
10. Intelligent Manufacturing using Cyber Physical Systems (CPS). 11.
Networking for Industry 4.0. 12. Cloud Manufacturing and Importance of
Cyber-Security. 13. Adoption of Information and Communication Technology
(ICT) for Industry 4.0. Section 4: Decision Making to Achieve
Sustainability in Factories. 14. Expert Decision Support System for
Industry 4.0. 15. Data Analytics and Industry 4.0. 16. Artificial
Intelligence and Industry 4.0. 17. Role of Machine Learning in Industry
4.0. 18. Software Development for Industry 4.0. 19 Applications of
Augmented Reality, Simulation, Optimization. Section 5: Sustainable SMART
Factories: Compliance to Environmental Standards. 20. Smart Eco Conscious
Manufacturing and Clean Development Mechanism. 21. Industrial Symbiosis and
Circular Economy for Future Factories. 22. Resource Conservation and
Recycling in Industry 4.0. 23. Monitoring Manufacturing Process Parameters
for Negative Environmental impacts. 24. ERP Systems and Supply Chain
Management in Industry 4.0. 25. Importance of Additive Manufacturing:
Factories of the Future. 26. End of Life Disposal and Sustainable
Industrial Waste Management in Industry 4.0. Section 6: Ensuring
Sustainability in Industry 4.0: Implementation Framework. 27. Understanding
Manufacturing Sustainability Characteristics. 28. Guidelines for Ensuring
Sustainability in Industry 4.0. 29. Development of Process Based Framework
Model for Industry 4.0. 30. Case Studies: Sustaining the Global
Competiveness with Industry 4.0.
Industry 4.0. 2. Characteristics and Design Principles of Industry 4.0. 3.
Applications and Impact of Industry 4.0 on Manufacturing. Section 2:
Sustainable Manufacturing and Industry 4.0. 4. Environmentally Conscious
Manufacturing and its Need. 5. Design for Sustainability and its Framework.
6. Orientation of Sustainable Product Development. 7. Influence of
Sustainability on Industry 4.0. Section 3: Innovation in Manufacturing for
Sustainable Smart Factories. 8. Role of Industrial Internet of Things
(IIoT) in Manufacturing. 9. Big data and its Importance in Manufacturing.
10. Intelligent Manufacturing using Cyber Physical Systems (CPS). 11.
Networking for Industry 4.0. 12. Cloud Manufacturing and Importance of
Cyber-Security. 13. Adoption of Information and Communication Technology
(ICT) for Industry 4.0. Section 4: Decision Making to Achieve
Sustainability in Factories. 14. Expert Decision Support System for
Industry 4.0. 15. Data Analytics and Industry 4.0. 16. Artificial
Intelligence and Industry 4.0. 17. Role of Machine Learning in Industry
4.0. 18. Software Development for Industry 4.0. 19 Applications of
Augmented Reality, Simulation, Optimization. Section 5: Sustainable SMART
Factories: Compliance to Environmental Standards. 20. Smart Eco Conscious
Manufacturing and Clean Development Mechanism. 21. Industrial Symbiosis and
Circular Economy for Future Factories. 22. Resource Conservation and
Recycling in Industry 4.0. 23. Monitoring Manufacturing Process Parameters
for Negative Environmental impacts. 24. ERP Systems and Supply Chain
Management in Industry 4.0. 25. Importance of Additive Manufacturing:
Factories of the Future. 26. End of Life Disposal and Sustainable
Industrial Waste Management in Industry 4.0. Section 6: Ensuring
Sustainability in Industry 4.0: Implementation Framework. 27. Understanding
Manufacturing Sustainability Characteristics. 28. Guidelines for Ensuring
Sustainability in Industry 4.0. 29. Development of Process Based Framework
Model for Industry 4.0. 30. Case Studies: Sustaining the Global
Competiveness with Industry 4.0.