AI Shoreline Erosion Monitoring · No-Code

Track every coastline as it shifts.

FlyPix AI is the no-code shoreline erosion monitoring software that turns multi-date satellite, drone, and SAR imagery into mapped coastlines, erosion rates, and accretion maps — covering thousands of kilometres of coast and saving up to 99.7% of manual digitising time.

★★★★★Trusted by 10,000+ geospatial users · No credit card required
COAST SCAN · LIVE
SRC satellite + drone + SAR
COAST 1,340 km
EROSION −2.7 m/yr · Δ +0.4%
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Backed & powered by NVIDIA Inception Program Google for Startups IBM for Startups ESA BIC Hessen
The Benchmark

Digitising one coastline by hand takes 997 seconds.
FlyPix AI takes 3.

A single coastal survey can span hundreds of kilometres of beach, cliff, and estuary that shift with every tide and storm. Tracing each shoreline by hand cannot keep pace. FlyPix AI extracts and outlines the coastline instantly, so erosion and accretion are quantified the moment new imagery lands.

Manual review
997s
to review one dense scene by hand

Specialists digitise the waterline tile by tile across each survey date. Results drift between operators, change is measured late, and the analysis is stale before the next storm reshapes the coast.

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

Up to 99.7% time saved. Consistent, georeferenced shoreline vectors and change rates you can track survey over survey and export straight into your GIS.

99.7%
Time saved vs. manual
10,000+
Active users
6+
Data formats supported
1340km
Coast per survey
What is shoreline erosion monitoring software?

AI coastal change analysis, without the code.

Shoreline erosion monitoring software ingests imagery of the coast and analyses it to map the coastline and measure how it advances or retreats over time. FlyPix AI is a no-code platform that uses artificial intelligence to extract the waterline, quantify erosion and accretion rates, detect cliff retreat and beach loss, and flag storm-driven change across multi-date satellite, aerial, drone, and SAR imagery. You upload your captures, label a handful of examples, and the AI engine maps the shoreline and its change across the whole coast — turning hours of manual digitising into minutes of decision-ready insight.

Capabilities

Everything you need to monitor shoreline erosion

One platform to extract coastlines, measure change, and track erosion across every stretch of coast you survey — from a single beach to a national shoreline.

Automated shoreline extraction

Find and outline the waterline along beaches, cliffs, estuaries, and dunes across imagery in a single pass.

Erosion & accretion detection

Compare multi-date captures to surface where the coast has retreated, advanced, or held between survey dates — automatically.

Change rate measurement

Measure shoreline movement in metres per year and quantify beach loss, cliff retreat, and accretion with georeferenced accuracy.

Storm impact assessment

Map how a single storm or surge reshaped the coast by analysing before-and-after imagery side by side.

Any sensor, any band

Work with RGB, multispectral, drone, aerial, and SAR — see through cloud and darkness to track the coast in any weather.

No-code custom models

Train a detector for the exact coastal feature you care about — dune toe, vegetation line, hard defence — by labelling a few examples, no programming.

How it works

From raw imagery to coastal insight in four steps

A no-code workflow built so coastal engineers, planners, and environmental teams — not just data scientists — can run production-grade shoreline analysis.

STEP 01

Upload your imagery

Bring multi-date satellite, aerial, or drone captures of the coast in any common format — RGB, multispectral, or SAR.

STEP 02

Label what matters

Mark a few examples of the shoreline or coastal feature you want to track. A handful is enough for the engine to learn.

STEP 03

Let the AI map it

FlyPix builds a model from your labels and extracts the coastline, then measures erosion and accretion across every date.

STEP 04

Explore & export

Review change on interactive maps and dashboards, then export shoreline vectors and change layers to your GIS.

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

One platform for every sensor over the coast

Coastal monitoring is more than true-colour pictures. FlyPix AI ingests the full range of remote-sensing data — map fine detail with drones, scale to whole regions with satellite, and see through cloud and storm with SAR — all in one workspace, so no survey date is ever missed.

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 coastal teams choose FlyPix AI

The platform removes the bottlenecks that slow shoreline monitoring: manual digitising, specialist headcount, rigid formats, and tooling that cannot keep pace with every tide and storm.

Analysis in seconds

Map a whole coastline in seconds instead of hours of manual digitising — and repeat it on every new survey to keep change rates current.

A true no-code platform

Coastal engineers and planners train and run AI models on their own imagery — no programming, no data-science team, no vendor queue.

Multi-sensor by design

Combine optical, multispectral, drone, and SAR in one workspace and track the coast even through cloud, darkness, and storm.

Scales to any coastline

Pinpoint a single eroding cliff or sweep an entire national shoreline at the cadence your monitoring programme 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 your imagery into coastal answers.

Create an account and map your first coastline with AI in minutes — no credit card, no code. Want help scoping your workflow? Our geospatial team will set it up with you.

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FAQ

Shoreline erosion monitoring software, answered

The questions coastal engineers, planners, and environmental teams ask before switching to AI-powered shoreline monitoring.

What is shoreline erosion monitoring software?
Shoreline erosion monitoring software ingests imagery of the coast and analyses it to map the coastline and measure how it advances or retreats over time. AI-powered platforms like FlyPix AI automatically extract the waterline, quantify erosion and accretion rates, and flag cliff retreat and beach loss across multi-date satellite, drone, and SAR imagery, turning hours of manual digitising into minutes of georeferenced insight.
Do I need coding or GIS expertise to use FlyPix AI?
No. FlyPix AI is a no-code platform. You upload imagery, label a few examples of the shoreline you want to track, and the AI engine builds a model and maps coastal change automatically — no programming or deep machine-learning knowledge required.
What imagery and data formats does FlyPix AI support?
FlyPix AI supports satellite, aerial, and drone imagery in RGB and multispectral formats, plus Synthetic Aperture Radar (SAR) so you can monitor the coast through cloud and darkness. It exports shoreline vectors and change layers to your GIS and analysis tools.
How does FlyPix AI measure erosion and accretion rates?
FlyPix AI extracts the shoreline from imagery captured on different dates, then compares the positions to measure how far the coast has retreated or advanced. It reports change in metres per year and produces georeferenced layers showing erosion and accretion along the whole coastline.
Can FlyPix AI track cliff retreat and storm impact?
Yes. By analysing before-and-after imagery, FlyPix AI maps cliff retreat, beach loss, dune change, and the coastal damage left by a single storm or surge, so you can quantify impact quickly and prioritise defences and response.
How much time can FlyPix AI save versus manual analysis?
FlyPix AI can save up to 99.7% of analysis time. In FlyPix benchmarks, shoreline digitising that takes roughly 997 seconds by hand is completed by the AI engine in about 3 seconds.
Can I try FlyPix AI on my own coastal imagery?
Yes. You can create an account and start analysing your own imagery, or request a guided demo to see shoreline extraction, erosion and accretion measurement, change detection, and custom model training applied to your coast.
See the coast, decoded

See how fast your coastline is changing.

Join 10,000+ users automating image analysis with FlyPix AI. Upload your first coastal survey and watch the AI map every metre of change in seconds.