
Electric Utilities
Connect grid, SCADA, AMI, OMS, GIS, asset, weather and field data to improve situational awareness, reliability, outage response and network planning.

Power Generation & Renewables
Bring plant, equipment, weather, forecast, market and maintenance data together to support availability, performance and coordinated operations across conventional and renewable assets.
Operational intelligence for every type of utility.
Each utility manages different assets, services and risks. D4CoreAI connects the data and workflows required for each environment while providing one reusable operational intelligence foundation.
UTILITY & ENERGY ENVIRONMENTS

Water & Wastewater Utilities
Relate flow, pressure, quality, meter, asset, weather and work data to identify changing conditions, prioritize leaks or equipment issues and coordinate field response.

Distributed Energy & Storage
Connect solar, batteries, microgrids, EV charging and flexible loads with forecasts and operating constraints to improve visibility, scenario analysis and approved coordination.

Gas & District Energy
Connect pressure, temperature, flow, demand, asset and maintenance information to monitor network performance, investigate anomalies and plan capacity.

Municipal & Multi-Utility Operations
Create a governed view across electricity, water, wastewater, gas and district-energy services while preserving the workflows, permissions and context required by each team.

Network & Control Systems
SCADA, EMS, DMS, ADMS, DERMS, plant controls, substations, historians and network telemetry.

GIS & Field Operations
Network topology, spatial data, mobile workforces, crews, vehicles, field observations and surveys.
CONNECTED OPERATIONS
Control, meter, outage, asset, GIS, customer and enterprise systems each hold part of the operating picture. D4CoreAI connects these sources and relates them to the networks, assets, events and decisions they describe.
Bring the whole utility environment into one operating view.
D4CoreAI extends the existing utility technology environment without replacing the operational and enterprise systems already in place.

Metering, Demand & Supply
AMI, interval data, load, flow, generation, storage, consumption and demand forecasts.

Outage, Customer & Service
OMS, CIS, service interruptions, customer contacts, service requests, notifications and restoration info.

Assets, Maintenance & Work
Asset registers, EAM, CMMS, inspections, condition data, service history and work orders.

Enterprise & environmental context
ERP, finance, procurement, weather, wildfire, hydrology, tariffs, markets and regulatory info.
PRIORITY USE CASES
Apply intelligence to the utility decisions that matter most.
Start with one operational problem, then reuse the connected foundation across additional assets, workflows, networks and service territories.

Unified Network & Operations Visibility
Create a shared view of network, plant, asset and field conditions while preserving the detail required by each operating team.

Predictive Maintenance & Asset Health
Connect telemetry, alarms, inspections, operating conditions and maintenance history to identify emerging issues and improve maintenance decisions.

Outage & Restoration Coordination
Connect events, affected services, network context, customers, crews, resources and procedures to support a coordinated restoration process.

Demand, Supply & Distributed Resources
Relate demand, generation, flow, storage, weather and distributed resources to support forecasting, balancing and resource decisions.

Wildfire & Environmental Risk
Combine weather, remote sensing, inspections, GIS and asset context to identify and prioritize conditions that may threaten infrastructure or service.

Planning & Capital Investment
Use operational history, forecasts, network models and capacity constraints to compare modernization, resilience and investment scenarios.
FROM DATA TO ACTION
Turn changing conditions into coordinated response.
D4CoreAI connects each event to operational context before presenting recommendations, notifying people or routing work.

Example Workflow: From Abnormal Asset Behavior to Coordinated Intervention
A transformer begins showing abnormal temperature and load behavior. D4CoreAI connects the telemetry to the asset, feeder, weather, current demand, maintenance history and downstream critical services. Operators receive prioritized context, supporting evidence and a traceable path into an inspection or approved operating workflow.
01
Connect & Govern
Bring together the required network, asset, meter, spatial, environmental and enterprise information while preserving permissions, lineage and provenance.
02
Understand & Predict
Relate changing conditions to the affected assets, network segments, services, customers and dependencies. Apply rules, analytics, models and governed AI.
03
Coordinate & Act
Prioritize the issue, present supporting evidence and connect the finding to the appropriate operator, crew, procedure or approved workflow.

Control Room & System Operations
Monitor network conditions, alarms, demand, constraints, active events and service priorities through one role-specific operating view.

Field Operations & Emergency Response
Connect crews with locations, asset context, hazards, procedures, assignments and operational updates before and during field work.

Deployment & Control
Integrate existing OT and enterprise technology while supporting cloud, private-cloud, hybrid, on-premises and edge architectures. Keep critical operational information within the required organizational, geographic and deployment boundaries.
Support every role from control room to field and enterprise.
ROLE-SPECIFIC INTELLIGENCE

Asset, Maintenance & Engineering
Investigate asset condition with telemetry, inspections, operating history, documentation and maintenance information available together.

Planning, Customer & Leadership
Understand service performance, customer impact, capacity, risk and investment priorities across networks and operating regions.
Real world EXPERIENCE
Built through real operational work.
D4CoreAI builds on operational living-lab work, applied research and prior delivery experience.

Operational living lab
TMU Smart Campus
TMU provides a real-world smart-campus environment to connect operational, building, infrastructure, and sensor information.

Early-stage partner project
Major Civic Centre
Exploring connected-building data, analytics, applications and operational-intelligence for a major civic facility.

Prior project experience
Prior Delivery Experience
Governed cloud services, facility analytics, asset and workforce systems, monitoring and operational resilience.

Prior project experience
London Cycle Hire
Applied operational intelligence for a large-scale urban micro-mobility asset network and recovery service.
PRACTICAL DEPLOYMENT
Start with one utility decision. Scale from there.
Validate a focused use case before extending the foundation across additional systems, applications, networks and service territories.
1
Define
Identify the operational problem, responsible users and desired outcome.
2
Connect
Integrate the minimum systems and information required for the initial use case.
3
Configure & Validate
Configure the context, analytics, interface and workflow with the people who will use them.
4
Reuse & Scale
Extend the validated foundation to additional assets, use cases, buildings and sites.

