Fuel Control
Monitor fuel use, fills, drains and efficiency using sensor and vehicle data.
What this capability solves
Fuel Control converts fragmented operational signals into an accountable digital workflow so teams can detect risk earlier, optimize resources and improve safety or productivity without losing human operational control.
Technology is implemented as an operating capability: architecture, integration, governance, assurance, people, procedures and measurable outcomes are designed together.
Capability model
Modular building blocks allow the scope to start with a focused pilot and expand into an enterprise operating model.
Fuel Level
Tank sensor or vehicle-derived measurements.
Fill / Drain
Detect material changes and location/time context.
Consumption
Compare fuel with distance, load and operating mode.
Anomaly
Identify suspicious or inefficient patterns.
Reconciliation
Compare receipts, cards and vehicle consumption.
Reporting
Fuel intensity by vehicle, route and driver.
How the capability fits together
Final topology, control placement and deployment model are validated during discovery and detailed design.
Controls & governance
- Authorized and purpose-bound data collection
- Safety-first operational boundaries and human override
- Role-based access and asset ownership
- Data-quality and calibration controls
- Event/audit history and investigation evidence
- Cybersecurity for devices, edge and enterprise integration
Priority use cases
- Logistics fleet
- Mining/industrial transport
- Delivery fleet
- Heavy equipment
Key deliverables
- Operational/process assessment
- Reference architecture
- Pilot design/configuration
- Integration and data map
- SOP / escalation model
- KPI baseline and scale roadmap
Integration considerations
- Fuel sensor
- CAN
- Telematics
- Fuel card/ERP
- Dispatch
- BI
Phased delivery
Each phase ends with evidence, acceptance criteria and a decision gate before broader scale-out.
