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E-grāmata: In-Time Aviation Safety Management: Challenges and Research for an Evolving Aviation System

  • Formāts: 84 pages
  • Izdošanas datums: 12-Mar-2018
  • Izdevniecība: National Academies Press
  • Valoda: eng
  • ISBN-13: 9780309468817
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  • Formāts: 84 pages
  • Izdošanas datums: 12-Mar-2018
  • Izdevniecība: National Academies Press
  • Valoda: eng
  • ISBN-13: 9780309468817
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Decades of continuous efforts to address known hazards in the national airspace system (NAS) and to respond to issues illuminated by analysis of incidents and accidents have made commercial airlines the safest mode of transportation. The task of maintaining a high level of safety for commercial airlines is complicated by the dynamic nature of the NAS. The number of flights by commercial transports is increasing; air traffic control systems and procedures are being modernized to increase the capacity and efficiency of the NAS; increasingly autonomous systems are being developed for aircraft and ground systems, and small aircraftmost notably unmanned aircraft systemsare becoming much more prevalent. As the NAS evolves to accommodate these changes, aviation safety programs will also need to evolve to ensure that changes to the NAS do not inadvertently introduce new risks.



Real-time system-wide safety assurance (RSSA) is one of six focus areas for the National Aeronautics and Space Administration (NASA) aeronautics program. NASA envisions that an RSSA system would provide a continuum of information, analysis, and assessment that supports awareness and action to mitigate risks to safety. Maintaining the safety of the NAS as it evolves will require a wide range of safety systems and practices, some of which are already in place and many of which need to be developed. This report identifies challenges to establishing an RSSA system and the high-priority research that should be implemented by NASA and other interested parties in government, industry, and academia to expedite development of such a system.

Table of Contents



Front Matter Summary 1 Introduction 2 IASMS Concept of Operations and Risk Prioritization 3 System Monitoring 4 System Analytics 5 Mitigation and Implementation 6 Findings, Recommendations, and Organizational Roles and Resources Appendixes Appendix A: Statement of Task Appendix B: Committee Member Biographies Appendix C: Acronyms
Summary 1(8)
1 Introduction
9(8)
A Real-Time Aviation Safety Assurance System
10(1)
In-time Aviation Safety Management System (IASMS)
11(2)
Safety Data
13(2)
Prioritization Process
15(2)
2 Iasms Concept of Operations and Risk Prioritization
17(12)
Challenges
17(9)
IASMS Concept of Operations
17(2)
Identifying and Prioritizing Risks
19(4)
National Airspace System Evolution
23(3)
Research Projects
26(3)
IASMS Concept of Operations and National Airspace System Evolution
26(1)
Identifying and Prioritizing Risks
27(2)
3 System Monitoring
29(7)
Challenges
30(3)
Data Completeness and Quality
30(1)
Data Fusion
31(1)
Collecting Data on the Performance of Operators
32(1)
Research Projects
33(3)
Data Fusion, Completeness, and Quality
33(1)
Protecting Personally Identifiable Information
34(2)
4 System Analytics
36(8)
Challenges
37(3)
In-time Algorithms
37(1)
Emergent Risks
38(1)
Computational Architectures
38(2)
Research Projects
40(4)
In-time Algorithms
40(1)
Emergent Risks
41(1)
Computational Architectures
41(3)
5 Mitigation and Implementation
44(9)
Challenges
45(5)
In-time Mitigation Techniques
45(1)
Unintended Consequences of IASMS Actions
45(1)
Trust in IASMS Safety Assurance Actions
46(1)
System Verification, Validation, and Certification
47(2)
Operators' Costs and Benefits
49(1)
Research Projects
50(3)
In-time Mitigation Techniques
50(1)
Trust in IASMS Safety Assurance Actions
51(1)
System Verification, Validation, and Certification
51(2)
6 Findings, Recommendations, and Organizational Roles and Resources
53(6)
Findings and Recommendations
53(3)
Roles and Resources
56(3)
APPENDIXES
A Statement of Task
59(1)
B Committee Member Biographies
60(6)
C Acronyms
66