AI Analytics

For Aerial Inspection

Computer vision and machine learning applied to aerial data — identifying defined defects, anomalies, and change across critical infrastructure, and flagging them for expert validation.

Overview

Aerial data provides valuable insight into infrastructure, equipment, and surrounding environments. Volatus uses ultra-high-definition cameras, thermal imaging, Lidar, and other sensors to capture detailed data for a wide range of inspection and monitoring applications.

AI analytics can be added to the workflow when projects require automated analysis of large volumes of imagery and sensor data. Using machine learning and computer vision, AI-powered tools can help identify defined objects, defects, anomalies, and changes, making it easier to review and organize inspection findings.

By combining aerial data, advanced sensors, analytical tools, and expert review, Volatus Aerospace helps turn complex datasets into structured information that supports inspection, monitoring, and asset management.

What is AI Analytics

AI analytics is a capability that uses computer vision and machine learning to identify features and conditions within imagery and sensor data. It helps accelerate analysis and flag potential issues for human validation.

RGB images are analyzed to detect visual features and defects in infrastructure. Thermographic images reveal temperature variations. Lidar detects 3D point cloud information. The choice of sensors and analysis approach depends on the type of asset being inspected and the environmental conditions.

How AI analytics works in inspection

The process begins with aerial data collection using sensors selected for the specific application. Volatus deploys ultra-HD cameras, thermal imaging, Lidar, and other sensors to capture data from infrastructure, machinery, and surrounding environments.

The data is then processed using software that incorporates AI. Machine learning algorithms and computer vision can recognize changes, damage, temperature anomalies, objects, and other defined conditions.

For operations that need fast results, analysis can happen on-site or in the field. The processed findings are then geo-referenced and used in inspection, monitoring, reporting, and asset management.

Capture

Aerial data collection with sensors selected for the application.

01

Process

AI software recognizes changes, damage, and anomalies.

02

Field Analysis

On-site or in-field analysis when fast results are needed.

03

Deliver

Geo-referenced findings for inspection, monitoring, and reporting.

04

Industry Use Cases

Infrastructure inspection

AI-assisted analysis can help identify defined defects, anomalies, and changes across bridges, roads, buildings, and other structures.

Energy and utilities

Analysis of visual and thermal data can help identify defined equipment defects, heat anomalies, and other conditions across utility assets.

Oil and gas

AI-assisted analysis can support the monitoring and inspection of pipelines and other distributed assets across large areas.

Industrial facilities

Analysis can support the detection and assessment of structures, equipment, operational areas, and defined conditions.

Public safety

Object detection, activity monitoring, and video analysis can support aerial situational awareness.

Environmental and agricultural monitoring

Image analysis and anomaly detection can support monitoring and assessment across large areas.

How AI analytics supports asset monitoring

Each inspection captures the asset condition at a specific point in time. When inspections are repeated, comparisons reveal any changes that have occurred.

A structured monitoring program provides:

01

Automated analysis

AI processes large volumes of imagery using defined criteria, reducing manual review time.

02

Object detection and classification

Identification and categorization of specified objects or features.

03

Defect identification

Detection of visual conditions for further assessment and validation.

04

Anomaly detection

Identification of conditions that differ from baseline or surrounding assets.

05

Multisensor analysis

Combination of RGB, thermal, Lidar, and other data when additional information is needed.

06

Change detection

Comparison of repeat surveys to identify shifts in asset condition, structures, terrain, or site activity.

07

Structured reporting

Organization of findings into inspection records for maintenance, compliance, and asset management.

AIRS reporting

Volatus's proprietary AIRS 3 Advanced Integrity Reporting System organizes inspection findings into structured, actionable reports. AI-powered analysis can be incorporated into this workflow when required.

Geospatial analysis

Inspection findings can be linked to geographic and asset information for integration with GIS systems and further analysis.

Edge computing

Where immediate analysis is required, field-processing capabilities can support results being generated on-site or close to the point of data collection.

Why Choose Volatus

Volatus combines aerial data capture, multisensor technology, inspection workflows, and reporting software into an integrated inspection service. AI analytics can be added when a project requires automated analysis of specific objects, defects, anomalies, or changes.

Rather than replacing human inspection, AI-powered analysis helps process large volumes of imagery and prioritize findings for further review. The specific analytical tools used depend on the asset, sensor data, inspection objectives, and reporting requirements.

Multisensor technology allows Volatus to select RGB, thermal, Lidar, and other sensors according to the inspection application. Where appropriate, these datasets can be analyzed together to provide additional context.

Discuss your program

Let us know the asset class, scale, required sensors, and what needs to be identified. Volatus will advise on the best approach for data collection, analysis, and reporting and whether AI analytics is the right fit for your needs.

Frequently Asked Questions

01What is AI analytics?
AI analytics uses computer vision and machine learning to identify defined objects, conditions, defects, and anomalies within imagery and sensor data.
A drone collects imagery or sensor data during a planned flight. The data undergoes processing using AI trained to detect specific objects, conditions, or changes. Results are reviewed and used in the inspection or monitoring process.
Volatus supports high-resolution visual imagery, thermal data, Lidar, GIS data, and other aerial imagery selected based on the application.
Computer vision enables software to analyze imagery and detect specific visual elements. In aerial inspection, it powers applications like object detection and defect identification.
Object detection identifies specific objects in imagery and determines their location. Models can be customized for the asset being inspected.
Anomaly detection identifies conditions that are not expected or that deviate from baseline or surrounding environment.
AI analytics can be used to identify defined defects and anomalies in inspection imagery. The findings are subject to human review and validation before decisions are made.
Yes, thermal imagery provides temperature data that can be analyzed for patterns and anomalies. Thermal and visual images can be analyzed together to assess equipment and infrastructure conditions.
Yes, Lidar data consists of point clouds representing three-dimensional information used for spatial and structural analysis. Lidar can be combined with RGB and thermal imagery when needed.
No. AI helps identify and prioritize potential issues, but human validation and decision-making remain essential for correct action.
Yes, repeat surveys analyzed with consistent criteria can reveal changes in asset condition, structures, terrain, or site activity.
AIRS 3 by Volatus is an Advanced Integrity Reporting System that organizes aerial inspection data and findings into structured reports for actionable insights.
When the selected software and workflow support edge processing, results can be generated on-site or close to the point of data collection. More detailed analysis can be performed post-flight.

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Talk To An Expert

Our experts are here to understand your needs and provide the right solutions for your mission.