Detect panel failures and equipment faults weeks before costly shutdowns

Deploy continuous aerial monitoring across your portfolio at a fraction of quarterly crew mobilization costs—automated docks eliminate travel, setup, and coordination overhead.

A large solar farm with many rows of blue solar panels on grassy land surrounded by trees and hills under a clear sky.

Trusted by leading solar operators worldwide

Purpose-built for solar asset management operations

Solar PV field aerial showing module rows, representative of sites FlytBase scans autonomously for hotspots and soiling.

Panel health monitoring

Detect soiling, micro-cracks, hot cells, and physical damage before SCADA shows efficiency losses across entire farm.

Utility-scale solar farm panels arrayed across a field, a site type FlytBase inspects with autonomous drone thermal missions.

EPC construction monitoring

Track daily progress, document underground cabling before burial, and catch installation defects supporting change orders and accurate commissioning handoffs.

Thermal drone image showing a solar power substation with one unit overheating and emitting smoke among rows of solar panels.

Equipment thermal surveillance

Identify inverter, transformer, and electrical panel failures weeks before shutdown through automated night thermal monitoring.

Aerial view of a large solar farm with rows of solar panels installed on sandy terrain.

Tracker alignment verification

Detect stuck motors and mechanical drift throughout day, reducing diagnostic time from days to hours.

Night security patrol at a fenced solar farm — a site type FlytBase monitors with autonomous after-hours drone surveillance.

Security and theft prevention

Nightly perimeter patrols with rapid alarm verification protect copper wire, inverters, and equipment at remote sites.

Aerial view of an extensive solar farm with rows of solar panels installed on dry, brown grassland.

Vegetation and fire risk

Monthly monitoring identifies clearing zones based on actual growth, targeting 40-60% of site for fire risk mitigation.

Large solar farm with several rows of solar panels, some of which are damaged and scattered in the foreground, under a cloudy sky.

Storm damage assessment

Automated post-storm missions complete site documentation in hours instead of days, accelerating insurance claims and repairs.

Aerial view of a large solar farm with rows of solar panels on sandy terrain under a clear sky.

Work verification and quality

Pre/post documentation for cleaning, vegetation clearing, and repairs provides objective contractor performance verification.

FlytBase AI agents built for solar operations

Assist solar O&M teams by automatically highlighting panel defects, equipment anomalies, and site risks, reducing manual video review burden.

FlytBase AI agent dashboard tile visualizing autonomous solar farm inspection workflow step and mission telemetry.

Panel defect detection

Identify micro-cracks, hot cells, delamination, broken glass, and bypass diode failures with confidence scoring for crew prioritization.

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FlytBase solar agent card showing autonomous drone mission progress and module condition findings on a photovoltaic farm.

Equipment thermal analysis

Establish baseline signatures for inverters and transformers under load, flagging thermal anomalies before equipment failure occurs automatically.

Blue abstract background with speckled edges.
FlytBase solar agent dashboard visualizing autonomous inspection routing across photovoltaic strings and defect heat map.

Soiling level assessment

Quantify soiling accumulation across panel zones to enable data-driven cleaning scheduling instead of calendar-based approaches.

Blue abstract background with speckled edges.
FlytBase solar agent panel reporting module-level defects detected during an autonomous aerial thermal inspection mission.

Tracker alignment verification

Compare actual versus expected tracker positions throughout day to identify mechanical drift requiring maintenance intervention.

Blue abstract background with speckled edges.
FlytBase solar agent interface summarizing autonomous PV inspection outputs, including anomaly counts and mission status.

Historical comparison

Compare current thermal and visual data against historical baselines to flag equipment changes requiring investigation or maintenance action.

Blue abstract background with speckled edges.
FlytBase solar AI agent step card showing autonomous anomaly classification during a scheduled photovoltaic drone mission.

Vegetation encroachment detection

Cross-reference thermal anomalies with SCADA production data to validate findings and prioritize maintenance interventions.

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FlytBase solar agent view tracking autonomous drone coverage progress and thermal findings on a utility PV site.

Security threat detection

Detect unauthorized vehicles, personnel, and activities during nightly patrols with automated alert generation for rapid verification.

Blue abstract background with speckled edges.
FlytBase solar agent overview dashboard reviewing autonomous inspection telemetry captured across a utility-scale PV site.

Automated evidence packaging

Generate GPS-tagged visual proof with timestamps, severity classification, and recommended actions ready for crew deployment.

Blue abstract background with speckled edges.
FlytBase AI agent dashboard tile visualizing autonomous solar farm inspection workflow step and mission telemetry.

Panel defect detection

Identify micro-cracks, hot cells, delamination, broken glass, and bypass diode failures with confidence scoring for crew prioritization.

Blue abstract background with speckled edges.
FlytBase solar agent card showing autonomous drone mission progress and module condition findings on a photovoltaic farm.

Equipment thermal analysis

Establish baseline signatures for inverters and transformers under load, flagging thermal anomalies before equipment failure occurs automatically.

Blue abstract background with speckled edges.
FlytBase solar agent dashboard visualizing autonomous inspection routing across photovoltaic strings and defect heat map.

Soiling level assessment

Quantify soiling accumulation across panel zones to enable data-driven cleaning scheduling instead of calendar-based approaches.

Blue abstract background with speckled edges.
FlytBase solar agent panel reporting module-level defects detected during an autonomous aerial thermal inspection mission.

Tracker alignment verification

Compare actual versus expected tracker positions throughout day to identify mechanical drift requiring maintenance intervention.

Blue abstract background with speckled edges.
FlytBase solar agent interface summarizing autonomous PV inspection outputs, including anomaly counts and mission status.

Historical comparison

Compare current thermal and visual data against historical baselines to flag equipment changes requiring investigation or maintenance action.

Blue abstract background with speckled edges.
FlytBase solar AI agent step card showing autonomous anomaly classification during a scheduled photovoltaic drone mission.

Vegetation encroachment detection

Cross-reference thermal anomalies with SCADA production data to validate findings and prioritize maintenance interventions.

Blue abstract background with speckled edges.
FlytBase solar agent view tracking autonomous drone coverage progress and thermal findings on a utility PV site.

Security threat detection

Detect unauthorized vehicles, personnel, and activities during nightly patrols with automated alert generation for rapid verification.

Blue abstract background with speckled edges.
FlytBase solar agent overview dashboard reviewing autonomous inspection telemetry captured across a utility-scale PV site.

Automated evidence packaging

Generate GPS-tagged visual proof with timestamps, severity classification, and recommended actions ready for crew deployment.

Blue abstract background with speckled edges.

Designed to work with your deployment stack

Built to integrate into real-world solar deployments across hardware, software, and regulatory environments without disrupting existing SCADA systems or O&M workflows.

Drones and Docks

Support continuous autonomous operations using enterprise-grade drones and all-weather docking stations across diverse solar environments.

Payloads and Accessories

Extend inspection capability with thermal cameras, zoom optics, multispectral sensors, and mission-specific payloads for comprehensive monitoring.

FlytBase Drone Autonomy Platform

Orchestrate missions, automation, AI agents, and workflows through unified autonomy platform designed for solar operations.

Apps and Integrations

  • Integrate with SCADA systems
    CMMS platforms
    Weather services
    Security VMS
    Pix4D
    DroneDeploy
Regulatory approvals

Regulatory Approvals

Streamline BVLOS approvals with comprehensive documentation templates, compliance workflows, and proven regulatory engagement frameworks.

One platform for enterprise-scale public safety drone autonomy

FlytBase provides the reliability intelligence and operational maturity required to run autonomous drone programs at scale across mission-critical public safety environments.

Proven at Scale

Operate 150+ autonomous drone deployments with proven uptime and production-grade reliability.

AI-First Architecture

Apply AI and computer vision designed from ground up for public safety operations.

Data security
Enterprise-Grade Security and Compliance

Meet stringent security requirements with SOC 2 compliance and flexible deployment models.

Global partner
Local Product and Data Sovereignty

Support in-country data residency regional compliance needs and local language requirements.

Autonomy and safety
True Autonomy

Run 24/7 unattended dock-based operations without manual piloting or increased operator workload.

Dedicated Enterprise Support

Rely on deployment assistance training and responsive support teams experienced in public safety.

Deploy autonomous monitoring across your solar portfolio

Connect with our solar operations specialists to transform inspection economics and accelerate fault detection.

Schedule Demo
Drone view of city street with detected objects.