Solar Power Plants

Turn solar plant data into accountable operation and control.

Connect solar plant SCADA, field telemetry, PPC, performance analytics, alarms, workflows and engineering in one operational architecture.

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Solar power plant architecture connecting inverters, meters, PPC, EnergyPortal and Scadify
Conceptual architecture; final interfaces, controls and acceptance criteria are confirmed per project.

Who this is for

  • Plant owners and operators
  • Asset managers and O&M teams
  • EPC and control engineers
  • Grid and compliance stakeholders

Typical assets and infrastructure

  • Inverters and combiner equipment
  • Revenue and plant meters
  • Meteorological instruments
  • Protection, communication and SCADA systems

Operational problems

  • Plant data is distributed across inverter, meter, weather and SCADA systems.
  • Actual production, expected production, curtailment and equipment loss are difficult to separate.
  • Central dashboards do not replace local control, field alarms or accountable maintenance workflows.

Data sources

  • Irradiance and module temperature
  • Active/reactive power and voltage
  • Inverter status, alarms and availability
  • Weather, maintenance and point-of-connection measurements

Capabilities

A connected operating model for solar power plants.

Multi-vendor inverter and meter integration after compatibility review

Configured around approved data, control, safety and responsibility boundaries.

Plant hierarchy, alarms, historian and reporting

Configured around approved data, control, safety and responsibility boundaries.

PPC and point-of-connection control where engineered

Configured around approved data, control, safety and responsibility boundaries.

Performance ratio, actual-versus-expected and curtailment context

Configured around approved data, control, safety and responsibility boundaries.

Remote field operation and maintenance workflows

Configured around approved data, control, safety and responsibility boundaries.

Workflow

From field context to accountable action.

  1. 01Map plant and point of connection
  2. 02Acquire and qualify source measurements
  3. 03Supervise alarms, state and performance
  4. 04Execute approved local or PPC action
  5. 05Report production, constraints and evidence

Analytics and reporting

  • Actual versus expected production
  • Performance ratio where definitions and data support it
  • Availability, curtailment and data-quality categories
  • Fleet and site benchmarking
  • Maintenance-priority recommendations with defined data boundaries

Engineering and resilience

Engineering can cover single-line and point-of-connection review, OEM/protocol assessment, control responsibility, network design, FAT/SAT, commissioning, grid tests, training and lifecycle support. Final supply and acceptance responsibilities are project-specific.

Security and operational continuity

Use segmented control networks, governed remote access, authenticated commands, least-privilege roles, local fallback, logging and project-specific backup/recovery. No automatic grid-code or security certification claim is made.

Publication-safe evidence

Evidence without exposing customer details.

Use anonymous solar-plant operating patterns unless customer, OEM, site and outcome approvals are recorded.

Related industries

Next step

Discuss the operating model your industry requires.

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