A systemic hazard analysis and management process for the concept design phase of an autonomous vessel
•A process to analyse and manage hazards in autonomous vessels is proposed.•Safety management begins at the earliest design phase of the autonomous vessel.•The process provides safety controls for autonomous ferries.•The process produces the foundations for a systematic safety management strategy. A...
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| Veröffentlicht in: | Reliability engineering & system safety Jg. 191; S. 106584 |
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01.11.2019
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| Abstract | •A process to analyse and manage hazards in autonomous vessels is proposed.•Safety management begins at the earliest design phase of the autonomous vessel.•The process provides safety controls for autonomous ferries.•The process produces the foundations for a systematic safety management strategy.
Autonomous vessels have become a topic of high interest for the maritime transport industry. Recent progress in the development of technologies enabling autonomous systems has fostered the idea that autonomous vessels will soon be a reality. However, before the first autonomous vessel can be released into her actual context of operation, it is necessary to ensure that it is safe. This is a major challenge as the experience of autonomous ships is very limited. This study highlights the need for elaborating a systemic and systematic hazard analysis since the earliest design phase of an autonomous vessel. In particular, it proposes a process for elaborating an initial hazard analysis and management that provides coherent, transparent and traceable safety input information for the design of an autonomous vessel. The process is applied to analyse the hazards of two autonomous vessel concepts for urban transport in the city of Turku, Finland. |
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| AbstractList | •A process to analyse and manage hazards in autonomous vessels is proposed.•Safety management begins at the earliest design phase of the autonomous vessel.•The process provides safety controls for autonomous ferries.•The process produces the foundations for a systematic safety management strategy.
Autonomous vessels have become a topic of high interest for the maritime transport industry. Recent progress in the development of technologies enabling autonomous systems has fostered the idea that autonomous vessels will soon be a reality. However, before the first autonomous vessel can be released into her actual context of operation, it is necessary to ensure that it is safe. This is a major challenge as the experience of autonomous ships is very limited. This study highlights the need for elaborating a systemic and systematic hazard analysis since the earliest design phase of an autonomous vessel. In particular, it proposes a process for elaborating an initial hazard analysis and management that provides coherent, transparent and traceable safety input information for the design of an autonomous vessel. The process is applied to analyse the hazards of two autonomous vessel concepts for urban transport in the city of Turku, Finland. Autonomous vessels have become a topic of high interest for the maritime transport industry. Recent progress in the development of technologies enabling autonomous systems has fostered the idea that autonomous vessels will soon be a reality. However, before the first autonomous vessel can be released into her actual context of operation, it is necessary to ensure that it is safe. This is a major challenge as the experience of autonomous ships is very limited. This study highlights the need for elaborating a systemic and systematic hazard analysis since the earliest design phase of an autonomous vessel. In particular, it proposes a process for elaborating an initial hazard analysis and management that provides coherent, transparent and traceable safety input information for the design of an autonomous vessel. The process is applied to analyse the hazards of two autonomous vessel concepts for urban transport in the city of Turku, Finland. |
| ArticleNumber | 106584 |
| Author | Bergström, Martin Goerlandt, Floris Valdez Banda, Osiris A. Kannos, Sirpa van Gelder, Pieter H.A.J.M. Kujala, Pentti |
| Author_xml | – sequence: 1 givenname: Osiris A. orcidid: 0000-0002-7805-8144 surname: Valdez Banda fullname: Valdez Banda, Osiris A. email: osiris.valdez.banda@aalto.fi organization: Aalto University, Department of Mechanical Engineering (Marine Technology), Research Group on Maritime Risk and Safety, P.O. Box 15300, 00076 Aalto, Finland – sequence: 2 givenname: Sirpa surname: Kannos fullname: Kannos, Sirpa organization: NOVIA University of Applied Science, Turku, Finland – sequence: 3 givenname: Floris surname: Goerlandt fullname: Goerlandt, Floris organization: Dalhousie University, Department of Industrial Engineering, Halifax, Nova Scotia B3H 4R2, Canada – sequence: 4 givenname: Pieter H.A.J.M. surname: van Gelder fullname: van Gelder, Pieter H.A.J.M. organization: Delft University of Technology, Faculty of Technology, Policy and Management, Safety and Security Science Group, Delft, the Netherlands – sequence: 5 givenname: Martin surname: Bergström fullname: Bergström, Martin organization: Aalto University, Department of Mechanical Engineering (Marine Technology), Research Group on Maritime Risk and Safety, P.O. Box 15300, 00076 Aalto, Finland – sequence: 6 givenname: Pentti surname: Kujala fullname: Kujala, Pentti organization: Aalto University, Department of Mechanical Engineering (Marine Technology), Research Group on Maritime Risk and Safety, P.O. Box 15300, 00076 Aalto, Finland |
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| Keywords | Autonomous vessels Hazard analysis and management Maritime system safety Maritime safety management strategy STPA Maritime safety controls |
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| Snippet | •A process to analyse and manage hazards in autonomous vessels is proposed.•Safety management begins at the earliest design phase of the autonomous vessel.•The... Autonomous vessels have become a topic of high interest for the maritime transport industry. Recent progress in the development of technologies enabling... |
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| SubjectTerms | Autonomous vessels Design Hazard analysis and management Hazard assessment Marine transportation Maritime safety controls Maritime safety management strategy Maritime system safety Reliability engineering STPA Transportation industry Urban transportation |
| Title | A systemic hazard analysis and management process for the concept design phase of an autonomous vessel |
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