OSE Port Simulation Suite
Simulation-based analysis of vessel arrivals, berth operations, port congestion, waiting time and port capacity.
Simulation • AI • Optimization for Ports & Logistics
OSE transforms engineering research, mathematical models and advanced simulation methods into practical decision-support software for ports, logistics and infrastructure systems.
From Research to Engineering Software
OSE bridges scientific research and engineering practice by transforming quantitative models into practical simulation and optimization tools.
Frame the question and examine the evidence.
Translate the system into variables, relationships and constraints.
Test scenarios and explore uncertainty.
Turn methods into practical, usable tools.
Compare trade-offs and select an informed course of action.
From individual operations to entire networks,
explore the science behind better systems.
Simulate vessel arrivals, berth operations, port congestion, navigation channels, vessel traffic and VTS strategies.
Engineering tools for quay walls, caisson structures, mooring loads and port infrastructure design.
Forecast demand and operational variables using ARIMA, regression, AI and data-driven predictive models.
Explore M/M/1, M/M/c, Poisson processes, stochastic systems and discrete-event simulation fundamentals.
Analyze inventory policies, safety stock, service levels, warehouses and supply-chain performance.
Plan logistics hubs, distribution centers, container flows and networks using optimization, MILP and MCDM.
Simulation-based analysis of vessel arrivals, berth operations, port congestion, waiting time and port capacity.
Evaluate navigation channel capacity, vessel traffic interactions and VTS operating strategies through simulation.
Decision-support software for logistics hub location, infrastructure planning and logistics network configuration.
Simulation and optimization of inventory policies, safety stock, service levels and supply-chain performance.
AI-assisted forecasting platform for model comparison, validation and data-driven prediction.
Port Engineering • Seaport Simulation • Engineering Technology
Dr. Nguyen Minh Quy is a port engineering specialist, researcher, consultant and engineering software developer with more than 33 years of professional consultancy experience.
He received his PhD in Port Engineering from Delft University of Technology (TU Delft), The Netherlands, and spent three years as a Visiting Lecturer at the University of British Columbia Okanagan (UBCO), Kelowna, Canada.
His research and professional work focus on seaport simulation, navigation channels, maritime risk, port planning, optimization and simulation-based engineering decision support.
His work has been published in international scientific journals and technical publications.
Through OSE, he focuses on transforming research, mathematical models and engineering knowledge into practical simulation and decision-support software for ports and logistics.
OSE combines engineering theory, practical problems, simulation models and interactive software to help students, researchers and professionals understand complex systems and apply quantitative methods in real-world decision making.
Queueing theory, probability distributions, stochastic systems and simulation fundamentals.
Forecasting, model validation, safety stock, inventory simulation and optimization.
Logistics hubs, network planning, MILP, MCDM and infrastructure optimization.
Port operations, berth capacity, navigation channels, VTS, UKC and maritime simulation.
OSE supports engineers, consultants, universities, port authorities and logistics organizations through professional software, specialized training and research-driven engineering solutions.
Simulation, optimization and decision-support software for ports, logistics and engineering applications.
Explore Professional Software ↗Specialized training in simulation, optimization, logistics analytics, port engineering and OSE software applications.
Explore Training ↗Research-driven simulation studies, engineering analysis and customized decision-support solutions for real-world projects.
Discuss a Project ↗Let’s discuss how simulation, optimization and data-driven engineering can support your project.
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