AI Climate Change Monitoring · No-Code

Measure a changing climate.

FlyPix AI is the no-code climate change monitoring software that turns decades of satellite, aerial, and drone imagery into measurable climate indicators — glacier retreat, shifting coastlines, drought, and urban heat — tracked against historic baselines and saving up to 99.7% of manual analysis time.

★★★★★Trusted by 10,000+ geospatial users · No credit card required
CLIMATE SIGNAL · LIVE
BASELINE 1985 → 2026
AOI 96,400 km²
TREND ice cover · Δ -11.7%
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Backed & powered by NVIDIA Inception Program Google for Startups IBM for Startups ESA BIC Hessen
The Benchmark

Measuring one indicator by hand takes 997 seconds.
FlyPix AI takes 3.

A climate signal hides inside decades of imagery — thousands of scenes that must be compared like-for-like to separate real trends from noise. No team can read that archive by hand. FlyPix AI measures each indicator across every epoch automatically, so multi-decadal change becomes a clear, repeatable number.

Manual review
997s
to review one dense scene by hand

Analysts compare scene against scene by eye, year after year. Baselines drift, methods differ between people, and a genuine trend is buried before anyone can report it.

VS
AI analysis by FlyPix
3s
for the same scene, fully detected

Up to 99.7% time saved. Consistent, georeferenced indicators measured against a fixed baseline, ready to track over decades and export for adaptation and ESG reporting.

99.7%
Time saved vs. manual
10,000+
Active users
40yr
Time-series depth
6+
Data formats supported
What is climate change monitoring software?

Long-term climate indicators from imagery, without the code.

Climate change monitoring software ingests and analyses imagery of the Earth to measure long-term climate indicators and how they shift over decades. FlyPix AI is a no-code platform that uses artificial intelligence to measure ice and snow retreat, coastline movement, vegetation and land-cover change, drought, and urban heat across satellite, aerial, and drone imagery. You define an area and a baseline year, label a handful of examples, and the AI engine measures each indicator consistently across every epoch — turning a decades-deep archive into a clear trend you can act on.

Capabilities

Everything you need to measure long-term climate change

One platform to build baselines, measure indicators, and track multi-decadal trends across every area you watch — from a single glacier to an entire coastline.

Multi-decadal change detection

Compare imagery across decades against a fixed baseline to measure how each indicator has shifted over time.

Ice, snow & coastline retreat

Quantify glacier extent, snow cover, and shoreline position to track cryosphere loss and sea-level encroachment.

Vegetation & land-cover shift

Measure greening, browning, and land-cover transitions that signal drought, desertification, and ecosystem stress.

Urban heat & surface temperature

Map heat islands and surface-temperature patterns from thermal and multispectral bands across growing cities.

Baselines & time-series

Anchor every indicator to a historic baseline and build a continuous time-series you can report on with confidence.

No-code custom models

Train a detector for the exact climate feature you track by labelling a few examples — no programming.

How it works

From archive to climate trend in four steps

A no-code workflow built so analysts, planners, and sustainability teams — not just data scientists — can measure long-term climate change.

STEP 01

Set area & baseline

Draw an area of interest and pick a baseline year, from a single glacier or coastline to a whole region.

STEP 02

Label what matters

Mark a few examples of the climate indicator you want to measure. A handful is enough for the engine to learn.

STEP 03

Let the AI measure

FlyPix measures the indicator consistently across every epoch in the archive and builds a multi-decadal time-series.

STEP 04

Report & export

Review trends on interactive maps and dashboards, then export vector layers for adaptation planning and ESG reporting.

FlyPix AI workspace showing AI object detection on geospatial imagery
Supported Data

One platform for every climate signal in the archive

A climate trend is more than a single true-colour picture. FlyPix AI reads the full range of remote-sensing data across decades — track vegetation and water stress with multispectral and hyperspectral bands, measure urban heat with thermal data, and see through cloud and darkness with SAR — all aligned to one baseline.

See all supported formats
RGB & true-color
Standard satellite, aerial & drone imagery
Supported
Multispectral
Vegetation, water & land-use analysis
Supported
Hyperspectral
Fine-grained material & spectral analysis
Supported
LiDAR
Elevation, volumes & 3D terrain
Supported
SAR (Synthetic Aperture Radar)
All-weather, day-or-night monitoring
Supported
API & GIS integration
Automate workflows, export vector layers
Supported
Why FlyPix

Why teams choose FlyPix AI

The platform removes the bottlenecks that slow climate monitoring: manual interpretation, specialist headcount, inconsistent baselines, and tooling that cannot read a decades-deep archive.

Trends in seconds

Measure an indicator across a full archive in seconds instead of hours of manual comparison — and repeat it on every new epoch.

A true no-code platform

Analysts and sustainability teams train and run AI models on their own imagery — no programming, no data-science team, no vendor queue.

Consistent baselines

Anchor every measurement to a fixed historic baseline so a real climate signal is never lost to drift or differing methods.

Decades to days

Track a single glacier or sweep an entire coastline across forty years of imagery at the cadence your mission demands.

Customer Reviews

What geospatial teams say

From industrial pilots to research labs to environmental missions — see how teams put FlyPix AI to work.

We ran a joint pilot with FlyPix AI in an industrial setting. We were impressed by the dedicated, easy-to-work-with team, their expertise, and how quickly they applied the technology to a novel use case.

Hannes Olbrich
Hannes Olbrich
Head of Investor Office · acitoflux, Germany

FlyPix AI helped us go from idea to proof of concept in record time. The team was responsive, the platform was easy to integrate, and we tested geospatial insights on real property data within days.

Ali Tehranchi
Ali Tehranchi
CEO · Bayscenary, USA

FlyPix AI made it remarkably easy to turn drone imagery into actionable results — truly next-gen tech, delivering AI-driven analysis and cloud computing within minutes without complex setups.

Jordan Bates
Jordan Bates
Researcher · University of Liège, Belgium

What surprised us most was how effortless it was to start. The platform is robust, easy to navigate, and extremely reliable.

Krishna Mohan
Krishna Mohan
Business Head · Stesalit Systems Ltd., India

FlyPix AI helped us automate land-use classification with incredible precision and speed, saving months of manual work.

Rohit Singh
Rohit Singh
Director · Intent to Solution, India

Working with FlyPix has significantly elevated the impact of our clean-up missions. We're proud to collaborate with a team that shares our commitment to environmental responsibility.

Robin Engelhard
Robin Engelhard
Chairman · Second Life e.V., Germany
Start monitoring

Turn decades of imagery into a climate trend.

Create an account and measure your first climate indicator against a historic baseline in minutes — no credit card, no code. Want help scoping your workflow? Our geospatial team will set it up with you.

Create an account Request a demo Free to start · Set up with an expert
FAQ

Climate change monitoring software, answered

The questions analysts, planners, and sustainability teams ask before switching to AI-powered climate monitoring.

What is climate change monitoring software?
Climate change monitoring software ingests and analyses imagery of the Earth to measure long-term climate indicators and how they shift over decades. AI-powered platforms like FlyPix AI automatically measure glacier and snow retreat, coastline movement, vegetation and land-cover change, drought, and urban heat against historic baselines, turning a decades-deep archive into clear, georeferenced trends in minutes.
Do I need coding or GIS expertise to use FlyPix AI?
No. FlyPix AI is a no-code platform. You define an area and a baseline year, label a few examples of the indicator you want to measure, and the AI engine builds a model and measures it consistently across every epoch automatically — no programming or deep machine-learning knowledge required.
Which climate indicators can FlyPix AI track?
FlyPix AI can track long-term indicators including glacier and snow retreat, sea-level and coastline shift, vegetation and land-cover change, drought and desertification, urban heat and surface temperature, and deforestation as a carbon proxy — each measured against a consistent baseline over decades.
How do baselines and multi-decadal time-series work?
You pick a baseline year, and FlyPix AI measures each indicator the same way across every available epoch in the archive. The result is a continuous time-series anchored to that baseline, so a genuine climate signal is separated from year-to-year noise and reported consistently.
What data sources and formats does FlyPix AI support?
FlyPix AI supports satellite, aerial, and drone imagery in RGB, multispectral, and hyperspectral formats, plus thermal bands for urban heat, LiDAR for terrain, and Synthetic Aperture Radar (SAR). It exports vector layers to your GIS for adaptation planning and climate ESG reporting.
How much time can FlyPix AI save versus manual analysis?
FlyPix AI can save up to 99.7% of analysis time. In FlyPix benchmarks, indicator measurement that takes roughly 997 seconds by hand is completed by the AI engine in about 3 seconds, so a decades-deep archive can be processed without a large analyst team.
Can FlyPix AI support climate ESG reporting and adaptation planning?
Yes. Because every indicator is measured consistently and georeferenced against a fixed baseline, the outputs feed directly into adaptation and resilience planning and into climate ESG disclosures. You can export vector layers and time-series for your reporting and GIS tools.
See the planet, decoded

See how the climate is shifting.

Join 10,000+ users automating climate change monitoring with FlyPix AI. Set your first baseline and watch the AI measure decades of change in seconds.