People | Locations | Statistics |
---|---|---|
Ziakopoulos, Apostolos | Athens |
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Vigliani, Alessandro | Turin |
|
Catani, Jacopo | Rome |
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Statheros, Thomas | Stevenage |
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Utriainen, Roni | Tampere |
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Guglieri, Giorgio | Turin |
|
Martínez Sánchez, Joaquín |
| |
Tobolar, Jakub |
| |
Volodarets, M. |
| |
Piwowar, Piotr |
| |
Tennoy, Aud | Oslo |
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Matos, Ana Rita |
| |
Cicevic, Svetlana |
| |
Sommer, Carsten | Kassel |
|
Liu, Meiqi |
| |
Pirdavani, Ali | Hasselt |
|
Niklaß, Malte |
| |
Lima, Pedro | Braga |
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Turunen, Anu W. |
| |
Antunes, Carlos Henggeler |
| |
Krasnov, Oleg A. |
| |
Lopes, Joao P. |
| |
Turan, Osman |
| |
Lučanin, Vojkan | Belgrade |
|
Tanaskovic, Jovan |
|
Wrobel, Krzysztof
Gdynia Maritime University
in Cooperation with on an Cooperation-Score of 37%
Topics
- autonomous vehicle
- driver
- safety
- implementation
- automobile industry
- market
- alertness
- automation
- shipping
- iron
- autonomous vehicle handover
- market survey
- market research
- assessment
- data
- researcher
- financing
- guideline
- sea
- ocean
- algorithm
- forecasting
- weight
- passenger
- indicating instrument
- vehicle occupant
- vehicle fleet
- bridge
- prevention
- big data
- data analysis
- marine safety
- passenger ship
- identification system
- bow
- autonomous ship
- water transportation crash
- planning
- design
- supervision
- environmental policy
- waterway
- hydrography
- water traffic
- ship
- industry
- crash
- density
- decision support system
- routing
- validation
- traffic density
- face
- supporting
- computer science
- mechanical engineering
- software
- profit
- system safety
- recommendation
- safety analysis
- developer
- ocean engineering
- oceanography
- structural engineering
- construction engineering
- risk assessment
- hazard
- transportation safety
- shipbuilding
- economic condition
- autumn
- history
- politics
- collapse
- maritime industry
- shipyard
- 21st century
- infrastructure
- gas
- submarine
- geotechnical engineering
- wind
- expansion
- pipeline
- pipeline transportation
- coast
- fossil fuel
- farm
- underwater pipeline
- oil field
- theory
- computer vision
- vision
- velocity
- intelligence
- artificial intelligence
- positioning
- engineering
- position fixing
- dynamic positioning
- show 71 more
Publications
- 2022A Cross-Domain Scientometric Analysis of Situational Awareness of Autonomous Vehicles With Focus on the Maritime Domaincitations
- 2022Know your safety indicator – A determination of merchant vessels Bow Crossing Range based on big data analyticscitations
- 2021With Regard to the Autonomy in Maritime Operations – Hydrography and Shipping, Interlinkedcitations
- 2020A bibliometric analysis and systematic review of shipboard Decision Support Systems for accident preventioncitations
- 2019Preliminary Results of a System-theoretic Assessment of Maritime Autonomous Surface Ships’ Safetycitations
- 2018Challenges, solution proposals and research directions in safety and risk assessment of autonomous shipping
- 2017Towards the assessment of potential impact of unmanned vessels on maritime transportation safetycitations
- 2016Fall and Rise of Polish Shipbuilding Industry
- 2015Specificity of Geotechnical Measurements and Practice of Polish Offshore Operations
- 2014SLAM - Based Approach to Dynamic Ship Positioning
Places of action
document
Preliminary Results of a System-theoretic Assessment of Maritime Autonomous Surface Ships’ Safety
Abstract
While a system-theoretic approach to the safety analysis of innovative socio-technical systems gains a growing acceptance among academia, safety issues of Maritime Autonomous Surface Ships (MASS) remain largely unexplored. Therefore, we applied a System-Theoretic Process Analysis to develop and analyze a preliminary model of the unmanned shipping system in order to elaborate safety recommendations for future developers of the actual system. Results indicate that certain advancements shall be undertaken in relation to MASS’ software solutions in particular. Peer reviewed
Topics
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