Reliability of Optical Fibres and Components reports the findings of COST 246 (1993-1998) - European research initiative in the field of optical telecommunications. Experts in the materials and reliability field of optical fibres and components have contributed to this unique study programme. The results, conclusions and achievements of their work have been obtained through joint experimentation and discussion with representatives from manufacturing and research groups. Topics covered include: Lifetime estimation; Failure mechanisms; Ageing test methods; Field data and service environments for…mehr
Reliability of Optical Fibres and Components reports the findings of COST 246 (1993-1998) - European research initiative in the field of optical telecommunications. Experts in the materials and reliability field of optical fibres and components have contributed to this unique study programme. The results, conclusions and achievements of their work have been obtained through joint experimentation and discussion with representatives from manufacturing and research groups. Topics covered include: Lifetime estimation; Failure mechanisms; Ageing test methods; Field data and service environments for components. For the first time the reader can explore the reliability of products and examine the results and conclusions in published form. This comprehensive volume is intended to provide a deeper understanding of the reliability of optical fibres and components. The book will be extremely useful to all scientists and practitioners involved in the industry.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
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Inhaltsangabe
1. Introduction and General Information about COST and the COST 246 Action.- 1.1. COST Framework.- 1.2. Technical Description of COST 246 Action.- 1.3. Objectives.- 1.4. Working Groups, Study Groups and Their Tasks.- 1.5. Methods of Working.- 1.6. Meetings and Workshops.- 1.7. Dissemination of the Results and Achievements.- 1.8. Economic Dimension.- 2. Reliability of Optical Fibres and Components.- 2.1. Introduction, Reliability.- 2.2. How to Study Reliability and Estimate Lifetime of New Components.- 2.3. Standards for Optical Fibre, Component and Network Reliability.- 2.4. References.- Annex 2.A Impact of Fibre Lifetime on Network Reliability.- 3. Optical Fibres (WG1.1).- 3.1. Contributors.- 3.2. Introduction.- 3.3. Objectives.- 3.4. Working Methods.- 3.5. Output of WG1.1.- 3.6. Presentations at WG1.1 Meetings.- 3.7. Achievements and Conclusions.- 3.8. Prospects and Future Work.- Annex 3.A Strength Degradation of Lightguide Fibres in Room Temperature Water.- Annex 3.B Influence of the Coating in Mechanical Behaviour of Aged Optical Fibres.- 4. Handleability of Aged Fibres (WG1.1 SG1).- 4.1. Contributors.- 4.2. Introduction.- 4.3. Objectives.- 4.4. Working Methods.- 4.5. Output of SG1.- 4.6. Achievements and Conclusions.- 4.7. References.- Annex 4.A Handleability of Aged Optical Fibres.- 5. Ageing Tests (WG1.1 SG2).- 5.1. Contributors.- 5.2. Introduction.- 5.3. Objectives.- 5.4. Working Methods.- 5.5. Output of SG2.- 5.6. Presentations at SG2 Meetings.- 5.7. Achievements and Conclusions.- 5.8. References.- Annex 5.A Effect of Water Quality and Quantity on Strength Degradation of Fused Silica Fibre in Water Tests.- Annex 5.B High-Temperature Ageing of Modern Polymer-Coated Optical Fibers.- 6. Fusion Splices Reliability(WG1.1 SG3).- 6.1. Contributors.- 6.2. Introduction.- 6.3. Objectives.- 6.4. Working Methods.- 6.5 Output of SG3.- 6.6. Presentations at SG3 Meetings.- 6.7. Achievements and Conclusions.- 6.9. References.- Annex 6.A Measurements on 8 Fibres Ribbons and Fusion Splices.- Annex 6.B Effect of Mechanical Stripping and Arc-Fusion on the Strength and Ageing of a Spliced Recoated Optical Fiber.- 7. Lifetime Estimation and B-Value (WG1.1 SG4).- 7.1. Contributors.- 7.2. Introduction.- 7.3. Objectives.- 7.4. Working Methods.- 7.5. Output of SG4.- 7.6. Presentations at SG4 Meetings.- 7.7. Achievements and Conclusions.- 7.8. Prospects and Future Work.- 7.9. References.- Annex 7.A A Compression Proposal to IEC Power-Law Document (IEC SC86A/WG1 Document No-17).- Annex 7.B Mechanical Behavior and B-Value of an Abraded Optical Fiber.- Annex 7.C Modelling of Proof Test Level Flaws using Cube Corner Indents.- 8. Cables and Outside- Plant Components (WG1.2).- 8.1. Contributors.- 8.2. Introduction.- 8.3. Objectives.- 8.4. Working Methods.- 8.5. Output of WG1.2.- 8.6 Presentations at WG1.2 Meetings.- 8.7. Achievements and Conclusions.- 8.8. Prospects and Future Work.- 8.9. References.- Annex 8.A Results from Questionnaire, Outside Plant Configurations and Weakest Points.- Annex 8.B Results from Questionnaire, Service Environmental Conditions for Fibres and Optical Components in Cable Networks.- 9. Connecting and Branching Components (WG2).- 9.1. Contributors.- 9.2. Introduction.- 9.3. Objectives.- 9.4. Working Methods.- 9.5. Output of WG2.- 9.6. Presentations at WG2 Meetings.- 9.7. Achievements and Conclusions.- 9.8. Prospects and Future work.- 9.9. References.- 10. Fibre Bragg Grating Components (WG4).- 10.1. Contributors.- 10.2. Introduction.- 10.3. Objectives.- 10.4. Working Methods.- 10.5. Output of WG4.- 10.6. Achievements and Conclusions.- 10.7. Prospects for the Bragg Gratings Activities.- 10.8. References.- App. 1 List of publications of COST 246.- App. 2 COST 246 Participant Index with contact addresses.- App. 3 MoU of COST 246.- App. 4 Information of COST Framework and Telecommunications.
1. Introduction and General Information about COST and the COST 246 Action.- 1.1. COST Framework.- 1.2. Technical Description of COST 246 Action.- 1.3. Objectives.- 1.4. Working Groups, Study Groups and Their Tasks.- 1.5. Methods of Working.- 1.6. Meetings and Workshops.- 1.7. Dissemination of the Results and Achievements.- 1.8. Economic Dimension.- 2. Reliability of Optical Fibres and Components.- 2.1. Introduction, Reliability.- 2.2. How to Study Reliability and Estimate Lifetime of New Components.- 2.3. Standards for Optical Fibre, Component and Network Reliability.- 2.4. References.- Annex 2.A Impact of Fibre Lifetime on Network Reliability.- 3. Optical Fibres (WG1.1).- 3.1. Contributors.- 3.2. Introduction.- 3.3. Objectives.- 3.4. Working Methods.- 3.5. Output of WG1.1.- 3.6. Presentations at WG1.1 Meetings.- 3.7. Achievements and Conclusions.- 3.8. Prospects and Future Work.- Annex 3.A Strength Degradation of Lightguide Fibres in Room Temperature Water.- Annex 3.B Influence of the Coating in Mechanical Behaviour of Aged Optical Fibres.- 4. Handleability of Aged Fibres (WG1.1 SG1).- 4.1. Contributors.- 4.2. Introduction.- 4.3. Objectives.- 4.4. Working Methods.- 4.5. Output of SG1.- 4.6. Achievements and Conclusions.- 4.7. References.- Annex 4.A Handleability of Aged Optical Fibres.- 5. Ageing Tests (WG1.1 SG2).- 5.1. Contributors.- 5.2. Introduction.- 5.3. Objectives.- 5.4. Working Methods.- 5.5. Output of SG2.- 5.6. Presentations at SG2 Meetings.- 5.7. Achievements and Conclusions.- 5.8. References.- Annex 5.A Effect of Water Quality and Quantity on Strength Degradation of Fused Silica Fibre in Water Tests.- Annex 5.B High-Temperature Ageing of Modern Polymer-Coated Optical Fibers.- 6. Fusion Splices Reliability(WG1.1 SG3).- 6.1. Contributors.- 6.2. Introduction.- 6.3. Objectives.- 6.4. Working Methods.- 6.5 Output of SG3.- 6.6. Presentations at SG3 Meetings.- 6.7. Achievements and Conclusions.- 6.9. References.- Annex 6.A Measurements on 8 Fibres Ribbons and Fusion Splices.- Annex 6.B Effect of Mechanical Stripping and Arc-Fusion on the Strength and Ageing of a Spliced Recoated Optical Fiber.- 7. Lifetime Estimation and B-Value (WG1.1 SG4).- 7.1. Contributors.- 7.2. Introduction.- 7.3. Objectives.- 7.4. Working Methods.- 7.5. Output of SG4.- 7.6. Presentations at SG4 Meetings.- 7.7. Achievements and Conclusions.- 7.8. Prospects and Future Work.- 7.9. References.- Annex 7.A A Compression Proposal to IEC Power-Law Document (IEC SC86A/WG1 Document No-17).- Annex 7.B Mechanical Behavior and B-Value of an Abraded Optical Fiber.- Annex 7.C Modelling of Proof Test Level Flaws using Cube Corner Indents.- 8. Cables and Outside- Plant Components (WG1.2).- 8.1. Contributors.- 8.2. Introduction.- 8.3. Objectives.- 8.4. Working Methods.- 8.5. Output of WG1.2.- 8.6 Presentations at WG1.2 Meetings.- 8.7. Achievements and Conclusions.- 8.8. Prospects and Future Work.- 8.9. References.- Annex 8.A Results from Questionnaire, Outside Plant Configurations and Weakest Points.- Annex 8.B Results from Questionnaire, Service Environmental Conditions for Fibres and Optical Components in Cable Networks.- 9. Connecting and Branching Components (WG2).- 9.1. Contributors.- 9.2. Introduction.- 9.3. Objectives.- 9.4. Working Methods.- 9.5. Output of WG2.- 9.6. Presentations at WG2 Meetings.- 9.7. Achievements and Conclusions.- 9.8. Prospects and Future work.- 9.9. References.- 10. Fibre Bragg Grating Components (WG4).- 10.1. Contributors.- 10.2. Introduction.- 10.3. Objectives.- 10.4. Working Methods.- 10.5. Output of WG4.- 10.6. Achievements and Conclusions.- 10.7. Prospects for the Bragg Gratings Activities.- 10.8. References.- App. 1 List of publications of COST 246.- App. 2 COST 246 Participant Index with contact addresses.- App. 3 MoU of COST 246.- App. 4 Information of COST Framework and Telecommunications.
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