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Electrical Asset Intelligence

Operational intelligence for electrical assets, events, and service decisions.

PlantIQ is the monitoring, contextualization, analytics, and service-intelligence layer for electrical assets. It is not a protection-engineering, substation-control, or safety-critical automation platform.

Monitoring and service intelligence for electrical assets, not protection or substation control.

Electrical events · Feeder 3

Illustrative example: sample data, not a customer result.

Problem

Electrical events are recorded. Service decisions still need context.

Transformers, switchgear, breakers, protection devices, and power-quality meters generate valuable signals, but service teams and plant stakeholders often lack a shared operational view across assets and sites.

Without contextualized loading, thermal conditions, event sequences, and recurring fault patterns, maintenance prioritization stays reactive and hard to scale across a fleet.

Electrical events · Feeder 3

Illustrative example: sample data, not a customer result.

Connect & model

What PlantIQ connects and models

The solution supports plant teams, electrical specialists, integrators, and OEMs who need installed-base visibility and service prioritization.

Boundaries stay explicit: PlantIQ does not replace protection engineering or substation control.

  • Transformers, switchgear, breakers, protection relays/IEDs, and power-quality meters
  • Electrical panels, critical substations, and distribution assets
  • Loading, thermal/environmental indicators, and event histories
  • Fleet and customer-portal structures for OEM or service-provider models

Decision questions this solution answers

  1. 1

    Which electrical assets are loaded, drifting, or showing recurring events?

  2. 2

    What sequence of alarms or operations preceded the issue?

  3. 3

    Which sites or fleet assets should service prioritize next?

  4. 4

    Did inspection or maintenance change the observed indicators?

Core experiences

  • Loading and utilization views

    Monitor electrical asset loading and utilization in operational context.

  • Thermal and environmental condition

    Track available thermal and environmental indicators that inform inspection priority.

  • Event and alarm sequence analysis

    Review breaker operations, protection events, and recurring fault patterns chronologically.

  • Power-quality event review

    Surface power-quality events alongside asset and site context where data exists.

  • Fleet and OEM service portals

    Support multi-site or installed-base monitoring with partner or co-branded delivery models where agreed.

Illustrative example: recurring electrical event review

Example workflow

  1. 1.Detect a recurring fault or abnormal loading pattern on a critical asset.
  2. 2.Inspect the event sequence, related measurements, and site context.
  3. 3.Prioritize inspection or service with evidence and confidence notes.
  4. 4.Record the outcome and reuse the pattern across similar fleet assets.

For OEM and service-provider models, the same loop supports customer portals and escalation to field service without inventing autonomous control claims.

Data requirements and realistic limits

Required

  • Asset identity and hierarchy for the electrical scope
  • Relevant loading, status, or event data from meters, IEDs, or monitoring devices
  • Agreed review and escalation rules for service workflows

Helpful

  • Thermal and environmental sensors
  • Power-quality measurements
  • Maintenance and inspection histories
  • Fleet metadata for OEM/service portals

Limits

  • Not a protection-engineering or safety-critical automation platform.
  • Not a substitute for qualified electrical inspection and commissioning practice.
  • Fleet benchmarking requires comparable assets and permissioned data handling.

Guardrails

  • Does not perform substation control or protection logic changes.
  • Does not replace utility SCADA or relay engineering tools.
  • Does not claim autonomous failure prevention.

Business value and measurable KPIs

  • Time to review and prioritize significant electrical events
  • Recurring fault pattern visibility across assets or sites
  • Inspection and service prioritization supported by evidence
  • Fleet coverage and action follow-through for OEM/service models

Personas

Outcomes by role

The same plant model, composed for the decisions each stakeholder owns.

  • Electrical / reliability teams

    • Review asset events with shared evidence
    • Prioritize inspections and maintenance more deliberately
  • OEMs and service providers

    • Monitor installed base across customers or sites
    • Attach recurring digital service to field relationships
  • Facility and plant stakeholders

    • See critical electrical asset status without living in specialist tools
    • Support service decisions with auditable history

Deployment path

  1. 1

    Define asset and service scope

    Select transformers, switchgear, or another critical electrical set.

  2. 2

    Connect monitoring sources

    Integrate meters, IEDs, and event data through approved architecture.

  3. 3

    Operationalize reviews

    Deliver asset views, event sequences, and prioritized service workflows.

  4. 4

    Scale fleet or partner delivery

    Expand to multi-site portals and expert-enabled review where appropriate.

Next step

Start with Electrical Asset Intelligence

Bring us the process, asset, utility system, or production loss that matters. We will assess available data and define a focused first deployment.