TDI

Bridge Systems Engineer_ Integrated Bridge & Navigation Aids

Duration

5 Days

Start Date

21-Sep-2026

End Date

25-Sep-2026

Venue

ISTANBUL – TURKEY

price

1590 KD

20% discount for group above 5 attendees

Course Overview

This 5-day intensive training program provides marine engineers and navigation officers with comprehensive expertise in modern Integrated Bridge Systems (IBS) and electronic navigation aids. Participants will gain hands-on experience with bridge system architecture, equipment integration, troubleshooting methodologies, and regulatory compliance requirements for commercial vessels. The course combines theoretical knowledge with practical simulations using industry-standard bridge equipment.

Course Objectives

By the end of this course, participants will be able to:

  • Understand IBS architecture and component interoperability
  • Configure and maintain ECDIS, radar, AIS, and conning displays
  • Implement effective data fusion from multiple navigation sensors
  • Troubleshoot common bridge system failures and alarms
  • Apply cybersecurity principles to bridge networks
  • Ensure compliance with IMO, IEC, and classification society standards
  • Optimize human-machine interface for navigation efficiency
  • Conduct system performance validation and acceptance testing

Who Should Attend

This course is essential for:

  • Marine Electrical/Electronics Engineers
  • Shipboard Navigation Officers
  • Newbuilding Supervision Engineers
  • Vessel Equipment Surveyors
  • Fleet Technical Managers
  • Marine Automation Specialists
  • Navigation System Designers

Course Outlines 

Module 1: Integrated Bridge System Fundamentals

  • IBS evolution and regulatory framework (IMO MSC.252(83))
  • System architecture and redundancy concepts
  • Network topologies and data distribution
  • Classification society requirements (DNV, ABS, LR)

Module 2: Core Navigation Subsystems

  • ECDIS configuration and chart management
  • Radar/ARPA system integration
  • AIS and VDR data interfaces
  • Conning display optimization

Module 3: Sensor Integration & Data Fusion

  • GNSS receivers and position quality indicators
  • Gyrocompass and motion sensor integration
  • Speed log interfaces and data validation
  • Meteorological sensor networks

Module 4: System Troubleshooting & Maintenance

  • Diagnostic tools and software utilities
  • Alarm management strategies
  • Common failure modes and workarounds
  • Preventive maintenance scheduling

Module 5: Cybersecurity & System Hardening

  • IMO MSC-FAL.1/Circ.3 requirements
  • Network segmentation strategies
  • Software update management
  • Access control implementation

Module 6: Human Factors & Operational Optimization

  • Alarm prioritization and filtering
  • Watchkeeper workload analysis
  • Bridge layout ergonomics
  • Training simulator integration