Power Consumption

Power quality and reactive power compensation

Harmonics, flicker and reactive power can cause losses, equipment stress and interrupted production.

Field systems connected to a common operational model
Conceptual solution architecture; final scope is confirmed through engineering and project acceptance.

Operational problem

Harmonics, flicker and reactive power can cause losses, equipment stress and interrupted production.

Enlogy combines power quality measurements, harmonic and flicker analysis, capacitor-bank supervision and active correction equipment data to prioritise corrective action.

Core capabilities

Enlogy combines power quality measurements, harmonic and flicker analysis, capacitor-bank supervision and active correction equipment data to prioritise corrective action.

Configured according to the project’s data, control, approval and operating boundaries.

Enlogy provides full compliance with the standards below across development, integration and system operation and management.

Configured according to the project’s data, control, approval and operating boundaries.

Operational workflow

From operational context to measured action.

  1. 01Connect equipment and operational context.
  2. 02Analyse conditions and prioritise actions.
  3. 03Track decisions, outcomes and continuous improvement.

Data sources and integrations

Connect the evidence that explains the decision.

  • Equipment measurements, status and events
  • Site context, operating policies and maintenance records

Governance and resilience

Enlogy provides full compliance with the standards below across development, integration and system operation and management.

Protocol roles, OEM compatibility, data retention, control limits and failure behaviour must be confirmed from the engineering-approved release and project documents.

Outcomes and KPI framework

Measure the operating result, not only the software activity.

Enlogy combines power quality measurements, harmonic and flicker analysis, capacitor-bank supervision and active correction equipment data to prioritise corrective action.

Use an agreed baseline, operational definition and evidence source before assigning a target.

Solution architecture

Make responsibility visible from field to enterprise.

Enlogy combines power quality measurements, harmonic and flicker analysis, capacitor-bank supervision and active correction equipment data to prioritise corrective action. The architecture separates observation, recommendation, human-approved action and local execution so that each team can see what it owns.

Field systems connected to a common operational model
Field systems connected to a common operational model. Important control and compliance decisions remain in the project documentation.

Engineering and implementation

Move from architecture to accepted operation.

Enlogy integrates this capability into asset models, field interfaces, operating workflows and customer reporting.

Customer applications

Discuss integration, commissioning and operational support for your equipment and sites.

Standards compliance for this capability

Power quality and reactive power compensation

Enlogy provides full compliance with the standards below across development, integration and system operation and management.

Power quality and reactive power compensation

IEC 61000-4-30 · IEC 61000-4-7 · IEC 61000-4-15 · IEEE 519 · IEC 61921 · IEC 60831 · IEC 63497

Why you need it

Harmonics, flicker and reactive power can cause losses, equipment stress and interrupted production.

What Enlogy provides

Enlogy combines power quality measurements, harmonic and flicker analysis, capacitor-bank supervision and active correction equipment data to prioritise corrective action.

FAQ

Questions to resolve before implementation.

Why you need it

Harmonics, flicker and reactive power can cause losses, equipment stress and interrupted production.

What Enlogy provides

Enlogy combines power quality measurements, harmonic and flicker analysis, capacitor-bank supervision and active correction equipment data to prioritise corrective action.

Next step

Define the right power consumption architecture.

Discuss your project →

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