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Assessing uncertainty in simulation-based maritime risk assessment.
Jason R W Merrick1, J Rene van Dorp, Varun Dinesh
1Statistical Sciences and Operations Research, Virginia Commonwealth University, Richmond, VA, USA. jmerrick@vcu.edu
This study introduces Bayesian simulation techniques to model uncertainty in maritime risk assessments. These methods confirm that proposed ferry expansions in San Francisco Bay are robust despite inherent uncertainties.
Area of Science:
- Maritime Transportation
- Risk Assessment
- Computational Science
Background:
- Simulation-based probabilistic risk assessment (PRA) is used in maritime transportation.
- Previous PRA studies lacked uncertainty quantification, hindering decision-making.
- Uncertainty in risk estimates impacts the assessment of specific risks and benefits.
Purpose of the Study:
- To demonstrate the application of Bayesian simulation techniques for propagating uncertainty in maritime risk assessments.
- To address the need for quantifying uncertainty in simulation models used for risk analysis.
- To assess the impact of uncertainty on the conclusions of maritime risk studies.
Main Methods:
- Utilized Bayesian simulation techniques to model and propagate uncertainty.
- Applied these techniques to a case study of proposed ferry service expansions in San Francisco Bay.
- Integrated uncertainty modeling within existing simulation frameworks for risk assessment.
Main Results:
- The study successfully demonstrated the use of Bayesian simulation for uncertainty propagation.
- Conclusions from the original San Francisco Bay ferry expansion study were found to be robust to uncertainties.
- The research provides a method for quantifying the impact of uncertainty in maritime risk analyses.
Conclusions:
- Bayesian simulation techniques offer a robust approach to modeling uncertainty in maritime risk assessment.
- The developed technique represents a state-of-the-art advancement in computational sciences for complex system analysis.
- This work paves the way for more reliable decision-making in maritime transportation by accounting for inherent uncertainties.

