
ROV Operator Course
Get the hands-on technical knowledge you need to work as a professional ROV operator in the offshore industry. This course covers everything from vehicle systems and subsea physics to piloting, inspection, and maintenance. Whether you're entering the field or formalizing your skills, this is the training that gets you job-ready.
What you will learn:
You'll build a complete understanding of ROV hardware, control systems, and the regulatory framework governing offshore operations. The course covers subsea physics, buoyancy, pressure, and hydrodynamics so you can predict how a vehicle behaves at depth. You'll develop real piloting skills across all six degrees of freedom and learn how to plan and execute inspection missions to industry standards. Maintenance and fault diagnosis are covered in depth, including thrusters, seals, electrical systems, and hydraulics. You'll also study navigation and positioning systems, work-class intervention techniques, and emergency procedures used on live offshore projects.
How you study in a practical way ROV Operator Course
How you practice ROV Operator Course
For companies who want to train their team
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to ROV Systems
Introduction to ROV Systems
Lesson 1 • Electrical and Power Architecture
Explains topside power supply, voltage conversion, and onboard power distribution. Provides the electrical baseline needed for fault diagnosis in later chapters.
Lesson 2 • Core ROV Hardware Components
Identifies the frame, thrusters, tether, cameras, and payload systems that make up a standard ROV. Connects hardware knowledge to later piloting and maintenance tasks.
Lesson 3 • Control System Overview
Introduces the control architecture linking the pilot console, telemetry, and vehicle actuators. Sets the stage for hands-on piloting instruction.
Lesson 4 • Regulatory and Safety Framework
Outlines international maritime safety standards, dive regulations, and operator certification requirements. Ensures compliance awareness before any practical operations begin.
Lesson 5 • ROV Classification and Industry Use
Covers observation, work-class, and trenching ROV categories and their deployment contexts. Establishes the operational vocabulary used throughout the course.
Chapter 2HideHide detailsSee detailsSubsea Environment and Physics
Subsea Environment and Physics
Lesson 1 • Corrosion and Material Compatibility
Explains galvanic corrosion, cathodic protection, and material selection for subsea environments. Supports maintenance and inspection decisions in subsequent chapters.
Lesson 2 • Hydrostatic Pressure and Depth
Explains pressure increase with depth and its effects on housings, seals, and electronics. Directly informs depth-rating decisions covered in equipment chapters.
Lesson 3 • Buoyancy and Trim Principles
Covers Archimedes' principle, neutral buoyancy, and center-of-buoyancy vs. center-of-gravity relationships. Prepares students for vehicle ballasting tasks.
Lesson 4 • Underwater Visibility and Acoustics
Addresses light attenuation, turbidity, and acoustic propagation in seawater. Connects to camera selection and sonar use in later piloting chapters.
Lesson 5 • Currents, Tides, and Hydrodynamics
Examines tidal cycles, current profiles, and drag forces acting on the vehicle and tether. Builds situational awareness essential for mission planning.
Chapter 3HideHide detailsSee detailsROV Piloting Fundamentals
ROV Piloting Fundamentals
Lesson 1 • Six Degrees of Freedom Control
Teaches surge, sway, heave, roll, pitch, and yaw control inputs and their combined effects. Provides the motor-skill foundation for all subsequent piloting tasks.
Lesson 2 • Navigation in Confined Spaces
Covers slow-speed maneuvering, obstacle avoidance, and proximity awareness in restricted environments. Prepares students for pipeline and structure inspection tasks.
Lesson 3 • Pilot Console Familiarization
Introduces joystick axes, function buttons, and display layout of a standard pilot console. Establishes muscle memory before in-water exercises.
Lesson 4 • Camera Piloting and Framing
Teaches pan-tilt camera control, zoom use, and framing techniques for inspection-quality imagery. Directly supports the inspection chapter that follows.
Lesson 5 • Station Keeping and Hovering
Develops the ability to maintain a fixed position against currents using manual and assisted modes. Critical for inspection and intervention work covered later.
Chapter 4HideHide detailsSee detailsLaunch, Recovery, and Deck Operations
Launch, Recovery, and Deck Operations
Lesson 1 • Rigging and Handling Procedures
Covers lifting points, sling angles, shackle selection, and safe working load calculations. Ensures personnel and equipment safety during deck handling.
Lesson 2 • Launch and Recovery System Overview
Describes A-frame, crane, and over-the-side LARS configurations and their operational limits. Provides context for the rigging and handling tasks that follow.
Lesson 3 • Recovery and Post-Dive Procedures
Covers vehicle retrieval, deck landing, power-down sequence, and post-dive inspection. Completes the operational cycle and transitions to maintenance tasks.
Lesson 4 • In-Water Launch and Splash Zone
Details the sequence from deck to water, including splash-zone hazard management and umbilical control. Builds competency for real vessel operations.
Lesson 5 • Pre-Dive Checks and System Verification
Establishes a systematic pre-dive checklist covering power, thrusters, sensors, and tether integrity. Prevents equipment failures during in-water operations.
Chapter 5HideHide detailsSee detailsNavigation and Positioning Systems
Navigation and Positioning Systems
Lesson 1 • Acoustic Positioning Fundamentals
Explains USBL, SBL, and LBL acoustic positioning principles and their accuracy trade-offs. Establishes the theoretical basis for system configuration tasks.
Lesson 2 • Mission Navigation Planning
Teaches waypoint planning, track-line design, and position fix scheduling for structured missions. Prepares students for the inspection and survey chapters ahead.
Lesson 3 • Inertial Navigation and DVL Integration
Covers Doppler velocity log operation, inertial measurement units, and sensor fusion for dead reckoning. Supports navigation in GPS-denied subsea environments.
Lesson 4 • Sonar Systems for Navigation
Introduces forward-looking sonar, multibeam, and scanning sonar for obstacle avoidance and mapping. Connects sensor data interpretation to piloting decisions.
Lesson 5 • Heading and Depth Sensors
Addresses magnetic compass, gyrocompass, and pressure-based depth sensor operation and calibration. Ensures accurate vehicle state data for piloting and logging.
Chapter 6HideHide detailsSee detailsInspection Techniques and Data Capture
Inspection Techniques and Data Capture
Lesson 1 • Inspection Planning and Scope Definition
Covers client requirements, inspection scope documents, and acceptance criteria for subsea assets. Aligns data capture activities with deliverable standards.
Lesson 2 • Pipeline and Riser Inspection
Addresses free-span measurement, coating condition assessment, and anode inspection along pipelines. Applies piloting skills to a high-value inspection task.
Lesson 3 • Inspection Data Management
Covers video annotation, still image cataloging, anomaly logging, and report generation workflows. Connects field data capture to client deliverable production.
Lesson 4 • Visual Inspection Methods
Teaches general visual inspection, close visual inspection, and structured survey patterns for structures. Builds systematic observation skills critical for anomaly detection.
Lesson 5 • Measurement and Metrology Tools
Introduces laser scaling, structured light, and acoustic measurement tools for dimensional data capture. Ensures students can produce quantitative inspection deliverables.
Chapter 7HideHide detailsSee detailsROV Maintenance and Troubleshooting
ROV Maintenance and Troubleshooting
Lesson 1 • Thruster and Propulsion Maintenance
Covers thruster disassembly, blade inspection, seal replacement, and performance testing. Directly addresses the most common cause of ROV operational failure.
Lesson 2 • Electrical Fault Diagnosis
Teaches systematic use of multimeters, insulation testers, and diagnostic software to isolate electrical faults. Builds on the electrical architecture introduced in Chapter 1.
Lesson 3 • Tether and Umbilical Care
Covers tether inspection, termination integrity, bend radius management, and spooling procedures. Prevents the most common cause of signal and power loss at depth.
Lesson 4 • Hydraulic System Maintenance
Addresses hydraulic fluid sampling, filter replacement, pressure testing, and leak detection for work-class ROVs. Supports safe operation of manipulator and tooling systems.
Lesson 5 • Preventive Maintenance Schedules
Establishes interval-based maintenance tasks for thrusters, seals, connectors, and hydraulics. Prevents unplanned downtime and extends equipment service life.
Chapter 8HideHide detailsSee detailsWork-Class ROV Operations and Intervention
Work-Class ROV Operations and Intervention
Lesson 1 • Tooling Systems and Interfaces
Covers torque tools, cutting tools, hot-stab panels, and tool change-out procedures. Connects manipulator skills to specific subsea intervention tasks.
Lesson 2 • Lifting and Object Recovery
Covers rigging attachment, load estimation, and controlled lift procedures for subsea object recovery. Addresses safety-critical load management at depth.
Lesson 3 • Manipulator Systems and Control
Introduces seven-function and five-function manipulator kinematics, grip force, and control modes. Provides the foundation for all tooling and intervention tasks.
Lesson 4 • Valve and Equipment Intervention
Teaches valve actuation, override procedures, and equipment panel operation on subsea structures. Applies manipulator and tooling skills to real intervention scenarios.
Lesson 5 • Intervention Mission Planning
Integrates navigation, tooling, and safety planning into a structured intervention mission brief. Prepares students to lead pre-dive briefings and execute complex tasks.
Your valid completion certificate
This course is for you:
Offshore technician: ready to add ROV operation to their skillset.
Military diver: transitioning into civilian subsea technology roles.
Marine engineering student: seeking specialized credentials before entering the workforce.
Deck crew member: aiming to move into ROV support or pilot positions.
Underwater drone hobbyist: serious about turning a passion into a profession.
Oil and gas inspector: looking to extend their work into subsea asset assessment.
What our students say
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