AI Aquaculture Monitoring · No-Code

Count every pen, cage, and farm.

FlyPix AI is the no-code aquaculture monitoring software that turns satellite, SAR, and drone pixels into pen and cage counts, farm extent, and bloom alerts you can act on — covering whole coastlines and saving up to 99.7% of manual inspection time.

★★★★★Trusted by 10,000+ geospatial users · No credit card required
COAST SCAN · LIVE
SRC satellite + drone
AOI 6,420 km²
CAGES 3,180 pens · Δ +4.7%
Scroll to explore
Backed & powered by NVIDIA Inception Program Google for Startups IBM for Startups ESA BIC Hessen
The Benchmark

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

A single coastal scene can hold thousands of pens, cages, and shellfish lines spread across hundreds of square kilometres of water. Counting and tracing farms by hand does not scale, and unpermitted sites slip through. FlyPix AI detects and outlines every structure instantly, so monitoring keeps pace with every new pass.

Manual review
997s
to review one dense scene by hand

Inspectors count cages and trace farm boundaries by hand, scene after scene. Results are inconsistent, slow, and out of date before they reach a regulator or operations team.

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

Up to 99.7% time saved. Consistent, georeferenced pen counts and farm extents you can trend over time and export straight into your compliance records and GIS.

99.7%
Time saved vs. manual
10,000+
Active users
6+
Data formats supported
1000s
km² per pass
What is aquaculture monitoring software?

AI fish farm detection and coastal monitoring, without the code.

Aquaculture monitoring software is a tool that ingests and analyses imagery to detect, count, and map fish farms and track their extent and impact over time. FlyPix AI is a no-code platform that uses artificial intelligence to find fish pens, cages, and shellfish and seaweed farms, count structures, map farm extent and expansion, and flag algal blooms and unpermitted sites across satellite, SAR, and drone imagery. You upload your captures, label a handful of examples, and the AI engine builds a custom model and runs detection across the whole area of interest — turning hours of manual inspection into minutes of decision-ready insight.

Capabilities

Everything you need to monitor aquaculture

One platform to detect, count, map, and monitor farms across every scene you capture — from a single bay to an entire coastline.

Fish pen & cage detection

Find and outline floating pens, sea cages, and longline structures across coastal and offshore imagery in a single pass.

Cage & structure counting

Count pens, cages, rafts, and shellfish and seaweed lines and measure farm area with georeferenced accuracy.

Farm extent & expansion

Map the footprint of each farm and track how it grows, shrinks, or shifts across repeat captures over the seasons.

Bloom & water-quality proxies

Flag algal blooms, turbidity, and discolouration around farms using multispectral bands as an early-warning signal.

Compliance & illegal farms

Compare detected farms against permitted boundaries to surface unpermitted or illegal sites and encroachment automatically.

No-code custom models

Train a detector for the exact structure you care about — a cage type, a mussel raft, a seaweed line — by labelling a few examples, no programming.

How it works

From raw imagery to farm insight in four steps

A no-code workflow built so regulators, operators, and coastal teams — not just data scientists — can run production-grade aquaculture monitoring.

STEP 01

Upload your imagery

Bring satellite, aerial, or drone captures in any common format — RGB, multispectral, or SAR.

STEP 02

Label what matters

Mark a few examples of the pen, cage, or farm structure you want to find. A handful is enough for the engine to learn.

STEP 03

Let the AI detect

FlyPix builds a model from your labels and detects, counts, and measures farms across the whole scene.

STEP 04

Explore & export

Review counts, extents, and bloom flags on interactive maps and dashboards, then export vector layers to your compliance tools and GIS.

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

One platform for every sensor over the coast

Aquaculture monitoring is more than true-colour pictures. FlyPix AI ingests the full range of remote-sensing data — separate structures and blooms from open water with multispectral bands, see farms through cloud and darkness with SAR, and measure coastal terrain with LiDAR — all in one workspace.

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 aquaculture monitoring: manual counting, specialist headcount, rigid formats, and tooling that cannot keep pace with fast-expanding farms.

Monitoring in seconds

Count pens and map farm extent across a full scene in seconds instead of hours of manual counting — and repeat it on every new pass.

All-weather by design

Combine optical, multispectral, and SAR in one workspace so you can spot farms even through cloud, haze, and darkness.

A true no-code platform

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

Scales to any coastline

Audit a single bay or sweep an entire coastline 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 your imagery into farm insight.

Create an account and run your first AI farm detection on a coastal scene in minutes — no credit card, no code. Want help scoping your workflow? Our geospatial team will set it up with you.

Create an account Book a consultation Free to start · Set up with an expert
FAQ

Aquaculture monitoring software, answered

The questions regulators, operators, and coastal teams ask before switching to AI-powered aquaculture monitoring.

What is aquaculture monitoring software?
Aquaculture monitoring software ingests and analyses imagery to detect, count, and map fish farms and track their extent and impact over time. AI-powered platforms like FlyPix AI automatically outline fish pens, cages, and shellfish and seaweed farms, count structures, map farm extent, and flag algal blooms and unpermitted sites across satellite, SAR, and drone imagery, turning hours of manual inspection 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 pens or farms you want to find, and the AI engine builds a model and runs detection across your whole area of interest automatically — no programming or deep machine-learning knowledge required.
Can FlyPix AI count fish pens and cages?
Yes. FlyPix AI detects and outlines individual pens, sea cages, rafts, and longline structures, then counts them and measures farm area with georeferenced accuracy. You can repeat the count on every new capture to track how a farm grows or shifts over time.
Can FlyPix AI detect unpermitted or illegal farms?
Yes. FlyPix AI compares detected farms against your permitted boundaries to surface unpermitted sites, encroachment, and expansion beyond a licence, so enforcement and regulatory teams can act on consistent, georeferenced evidence.
Can FlyPix AI monitor algal blooms and water quality?
FlyPix AI uses multispectral bands to flag algal blooms, turbidity, and water discolouration around farms as an early-warning proxy for water-quality and environmental impact, which you can trend over time alongside farm extent.
How much time can FlyPix AI save versus manual monitoring?
FlyPix AI can save up to 99.7% of monitoring time. In FlyPix benchmarks, dense coastal counting and delineation 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 imagery?
Yes. You can create an account and start monitoring your own imagery, or request a guided demo to see pen and cage detection, farm extent mapping, bloom flagging, and custom model training applied to scenes from your region.
See the coast, counted

See every farm on your coastline.

Join 10,000+ users automating geospatial analysis with FlyPix AI. Upload your first scene and watch the AI detect, count, and map every pen and farm in seconds.