Tracks natural and human activity across marine environments.
Autonomous systems and intelligent software designed to operate reliably in real marine environments and deliver trusted scientific insight.
Hydrophones extend PO2’s monitoring by using underwater sound and edge AI to detect ecosystem activity and human presence with minimal data transmission.
Built specifically for marine environments, not adapted from land systems.
Only essential data is captured and transmitted, reducing cost and complexity.
Multiple systems work together to reveal patterns across locations and time.
Hydrophones extend PO2’s monitoring by using underwater sound and edge AI to detect ecosystem activity and human presence with minimal data transmission.
Tracks natural and human activity across marine environments.
Sound data tracks ecosystem and anthropogenic activity across ocean environments.
Audio is converted into compact event data for efficient satellite transfer.
Hours of audio are converted into compact event metadata, enabling reliable satellite communication at a fraction of traditional bandwidth costs.
AI analyses underwater sound directly at the source.
On-device AI processes underwater sound in real time, detecting biological and anthropogenic signals without transmitting raw audio.
Sound data tracks ecosystem and human activity across ocean environments.
Audio is converted into compact event data for efficient satellite transfer.
AI analyses underwater sound directly at the source.
Pre-built acoustic models, just deploy and monitor.
Pre-built with proven acoustic models, the user simply needs to place the hydrophones without
further technical assistance.
Hydrophones work alone or alongside camera systems.
Hydrophones integrate seamlessly with PO2 camera systems or operate independently, allowing flexible deployment across sites and regions.
Geo-fencing alerts for boundary breaches, vessels, and fish bombing.
Geo-fencing capabilities alerting marine boundary breaches with vessel types and additionally
detecting Fish Bombing occurrences.
Pre-built with proven acoustic models, the user simply needs to place the hydrophones without further technical assistance.
Hydrophones work alone or alongside camera systems.
Geo-fencing capabilities alerting marine boundary breaches with vessel types and additionally detecting Fish Bombing occurrences.
Autonomous, solar-powered underwater camera systems designed to operate for years in demanding marine environments.
Solar & battery power for continuous use.
Hybrid solar and battery power supports long-term, unattended deployments in remote marine environments.
High-resolution underwater imaging.
Designed to see the world in 3D with accurate sizing and depth calculation capabilities
Intelligence built directly into the system.
Custom edge computing processes data on-site, reducing transmission needs while enabling scalable, long-term monitoring.
Designed to stay clear and operational.
Integrated wipers and UV-C lighting reduce biofouling, maintaining image quality and system reliability over time.
Built to expand and adapt.
Supports integration of additional edge sensors, allowing systems to evolve or operate as standalone monitoring tools.
Engineered for real-world conditions.
Rugged construction withstands corrosion, surge, and long-term exposure in challenging marine environments.
OTA updates enable remote upgrades without site visits.
OTA (Over-The-Air) updates enable continuous model improvements and new capabilities without physical intervention
Standardised, science-led systems ensure comparable data.
Designed by scientists for scientists, our installations are consistently linked and meticulously standardized to ensure comparable data.
Engineered for real-world conditions.
Processed data flows directly to our cloud platform, illuminating new ecological long-term spatial
and temporal patterns
Autonomous, solar-powered underwater camera systems designed to operate for years in demanding marine environments.
Hybrid solar and battery power supports long-term, unattended deployments in remote marine environments.
Designed to see the world in 3D with accurate sizing and depth calculation capabilities
Custom edge computing processes data on-site, reducing transmission needs while enabling scalable, long-term monitoring.
Designed to stay clear and operational.
Integrated wipers and UV-C lighting reduce biofouling, maintaining image quality and system reliability over time.
Built to expand and adapt.
Supports integration of additional edge sensors, allowing systems to evolve or operate as standalone monitoring tools.
Engineered for real-world conditions.
Rugged construction withstands corrosion, surge, and long-term exposure in challenging marine environments.
Designed to stay clear and operational.
Built to expand and adapt.
Engineered for real-world conditions.
OTA updates enable remote upgrades without site visits.
OTA (Over-The-Air) updates enable continuous model improvements and new capabilities without physical intervention
Standardised, science-led systems ensure comparable data.
Designed by scientists for scientists, our installations are consistently linked and meticulously standardized to ensure comparable data.
Engineered for real-world conditions.
Processed data flows directly to our cloud platform, illuminating new ecological long-term spatial
and temporal patterns
OTA updates enable remote upgrades without site visits.
Standardised, science-led systems ensure comparable data.
Engineered for real-world conditions.
LaBella is PO2’s open, education-focused platform that enables scientists and students to train AI models for marine research, strengthening global ocean intelligence through collaboration.
Powered by Ultralytics custom marine YOLO models built by PO2, LaBella empowers marine scientists to rapidly train custom AI models while simultaneously producing publication-ready datasets through AI-assisted video, image and audio labelling and tracking.
LaBest deploys your trained models to process massive datasets autonomously, scaling marine monitoring from pilot studies to continuous ocean intelligence.
Autonomous, solar-powered underwater camera systems designed to operate for years in demanding marine environments.
Solar & battery power for continuous use.
Hybrid solar and battery power supports long-term, unattended deployments in remote marine environments.
High-resolution underwater imaging.
Stereo camera systems capture detailed visual data, supporting species identification, behaviour analysis, and habitat monitoring.
Intelligence built directly into the system.
Custom edge computing processes data on-site, reducing transmission needs while enabling scalable, long-term monitoring.
Designed to stay clear and operational.
Integrated wipers and UV-C lighting reduce biofouling, maintaining image quality and system reliability over time.
Built to expand and adapt.
Supports integration of additional edge sensors, allowing systems to evolve or operate as standalone monitoring tools.
Engineered for real-world conditions.
Rugged construction withstands corrosion, surge, and long-term exposure in challenging marine environments.
Proud member of the AWS Activate program, using Amazon Web Services to securely process, store, and scale ocean monitoring data across distributed deployments.
A complete system designed for continuous operation, trusted data, and scalable impact.
PO2 technology enables efficient monitoring with reliable, long-term scientific insight.
We work with researchers, organisations, and partners to deploy scalable monitoring technology and generate trusted ocean intelligence.