ENERGY & PERFORMANCE MONITORING
Turn vessel data into operational insight.
Monitor fuel consumption, engine performance, electrical power and vessel operating conditions through a unified performance monitoring environment designed for marine applications.
01 — FROM DATA TO INFORMATION
Know how the vessel is actually performing.
Modern vessels generate large amounts of operational data. The challenge is turning that data into information that engineers, operators and management can actually use.
Fuel flow, engine load, torque, power, RPM, operating hours and electrical consumption become significantly more useful when they are collected, correlated and presented together.
We integrate these data sources into practical monitoring solutions built around the vessel’s existing automation infrastructure.
02 — MONITORING CAPABILITIES
Measure what matters.
Performance monitoring can be tailored to the vessel, machinery configuration and available instrumentation.
Fuel Consumption
Main engine and generator fuel consumption monitoring, flowmeter integration, fuel trends and consumption analysis for different operating conditions and fuel types.
Engine Performance
Monitor engine load, RPM, torque, power, operating hours and other available engine parameters to understand real operating performance.
SFOC & Efficiency
Combine fuel consumption with actual operating power to calculate and trend specific fuel oil consumption and evaluate engine efficiency.
Electrical Energy
Monitor generator output, electrical load, power demand, energy consumption and load profiles across the vessel.
Trends & History
Historical data, trends and operating profiles help identify changes in performance and provide a basis for engineering and operational decisions.
Performance Reporting
Transform collected operational data into practical reports and performance indicators for engineers, operators and vessel management.
03 — VESSEL DATA
Connect the signals that describe vessel performance.
A performance monitoring system becomes powerful when different sources of operational data can be viewed together rather than in isolation.
Fuel Flow
Flowmeter data from main engines and auxiliary engines for continuous consumption monitoring.
Power & Load
Actual engine and generator power, load and operating conditions.
Torque & RPM
Propulsion performance data for analysing engine operating conditions and vessel demand.
Electrical Parameters
Generator load, voltage, current, frequency, active power and energy-related measurements.
Operating Conditions
Operating hours, machinery status, alarms and other vessel data available through the automation system.
04 — DATA INTEGRATION
Built around the data already available onboard.
Performance monitoring does not always require replacing the existing automation system. We can integrate available vessel data and build the monitoring layer around the existing architecture.
Integrated Automation
Use existing IAS data such as machinery status, alarms, measurements and operating conditions as a foundation for performance monitoring.
Power Management
Integrate generator load, synchronisation data, power measurements and electrical operating conditions.
Engine Interfaces
Collect available engine parameters through existing communication interfaces and automation systems.
Flowmeters
Integrate fuel flow measurements to calculate and monitor real-time and historical fuel consumption.
Torque Measurement
Combine shaft or engine torque information with RPM, power and fuel data for deeper propulsion analysis.
Control & Data Systems
Connect PLCs, SCADA systems and other data sources using appropriate industrial communication interfaces.
05 — PERFORMANCE ANALYSIS
Numbers become useful when they are compared.
A single fuel consumption value tells only part of the story. Combining consumption with actual power, load and operating conditions provides a much clearer picture of vessel performance.
06 — INTEGRATED MONITORING
From vessel signals to a complete performance picture.
Energy and performance monitoring can operate as part of the existing IAS environment or as a dedicated monitoring layer connected to multiple vessel systems.
The architecture can be adapted to the vessel’s existing PLC, HMI, SCADA, IAS and PMS infrastructure.
07 — WHY DOKSAL
Performance monitoring engineered for real vessels.
Existing Systems
We can work with the automation infrastructure already installed onboard instead of assuming a completely new system.
Practical Data
We focus on meaningful operational information rather than collecting data simply because it is available.
Scalable Architecture
Start with a focused monitoring application and expand toward a wider vessel performance environment when required.
08 — LET’S TALK PERFORMANCE
Make better use of the data your vessel already generates.
Whether you are looking for fuel consumption monitoring, engine performance analysis, energy monitoring or a complete vessel performance solution, we can develop the right architecture around your requirements.
Tell us what data is available onboard and what you want to measure.
CONTACT DOKSAL