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Drone Mounted Thermal Imaging for Solar Farm Inspection

2026年04月21日

Drone-mounted thermal imaging accelerates solar farm inspection with IEC TS 62446-3 compliance and defect...

Why Aerial Thermography Wins

Walking a 50 MW solar farm with a handheld thermal imager takes weeks. A drone-mounted camera covers the same area in two days, captures geo-tagged thermal images, and feeds AI-based defect classification engines that produce a complete fault map automatically. For O&M teams, the ROI on aerial thermography is typically less than one inspection cycle.

Camera and Drone Requirements

  • Detector: 640x512 minimum for module-level resolution at 30 m altitude.
  • NETD: under 0.05 K to distinguish bypass diode failures from soiling.
  • Lens: 19-25 mm focal length matches standard PV string spacing.
  • Drone payload: 1-2 kg class with at least 25 minutes endurance.
  • GPS sync: required for georeferencing each frame.

Defect Categories per IEC TS 62446-3

  • Hot spot single cell: typically 20-40 K above ambient module.
  • Diode failure: one third of the module appears uniformly warm.
  • String fault: entire string warmer or cooler than neighbors.
  • Junction box hot: localized hot spot at module corner.

Flight Workflow

Fly at altitudes between 25 and 60 m, perpendicular to the modules, with 80% forward overlap and 60% side overlap. Time the flight for clear-sky conditions with irradiance above 600 W/m^2 to ensure thermal contrast.

Reporting

Output a complete defect inventory linked to module serial numbers, with severity ratings and recommended actions. Modern thermal cameras integrate directly with photogrammetry suites that produce the final report in a single workflow.