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RefIE-015
ClientMobile Monitoring Sp. z o.o.
Year2024-2025
Scale1:1
[CAD][IoT][Systems][Web]

Mobile Monitoring: measurement buoy, water drone and dashboard

One client, hardware and software. A waterproof measurement-buoy enclosure and a water-drone mount (Shapr3D, Blender), a React port-monitoring dashboard (a Mapbox map with water, air, noise and wind layers plus camera feeds), a full visual identity and a Framer website with an AI-cameras subpage and an English version.

The system: autonomous buoys, water drones and UAV inspection alongside the port data cockpit.IE-015 · FIG.01 · The system: autonomous buoys, water drones and UAV inspection alongside the port data cockpit.

Problem

A Gdansk company was building a water-quality monitoring system for open water: measurement buoys, water drones, AI cameras and a cockpit for port data. They needed a single contractor to design waterproof hardware that survives waves, UV and impact, keeps the electronics serviceable, and at the same time delivers the digital side of the system and a coherent brand.

Outcome

A complete system from a single contractor: production-ready hardware, a working port data cockpit, the brand and a bilingual website. The buoy proven in the field, on open water. The strongest proof of combining the physical and digital worlds: one client, hardware and software.

  1. 01Hardware design in Shapr3D and Blender: a waterproof buoy enclosure with an electronics bay and a sensor access port, an O-ring seal, solar panels and a carrier frame, plus a mount for the water drone.
  2. 02Production files (STL, 3MF, DWG) ready for fabrication, plus professional product renders and a marketing photography package for the system.
  3. 03Visual identity: a wave wordmark, a palette (orange ff6633, navy, graphite), Bai Jamjuree typography, graphic elements and a brand book.
  4. 04A Framer website with a rebuilt AI-cameras subpage and an added English version.
  5. 05A React port-monitoring dashboard for the Port of Gdansk: a Mapbox map with water, air, noise and wind layers, camera feeds (e.g. the Dead Vistula mouth), a timeline scrubber and a status legend from very good to very poor.

Specifications

IE-015
Scope
Hardware + software + brand
Hardware
Measurement buoy + water drone
CAD
Shapr3D + Blender
Production files
STL, 3MF, DWG
Dashboard
React + Mapbox
Website
Framer, PL + EN
Product render: the buoy enclosure and WATERSCAN module with Mobile Monitoring branding.
FIG.02Product render: the buoy enclosure and WATERSCAN module with Mobile Monitoring branding.
Exploded CAD model: solar panels, the sensor frame, the float and the mounting (Shapr3D).
FIG.03Exploded CAD model: solar panels, the sensor frame, the float and the mounting (Shapr3D).
React dashboard: a Mapbox map of the Port of Gdansk, water and air quality layers and camera feeds.
FIG.04React dashboard: a Mapbox map of the Port of Gdansk, water and air quality layers and camera feeds.
The buoy in the field: the measurement unit on open water.
FIG.05The buoy in the field: the measurement unit on open water.
The orange water drone floating in a harbour basin during testing, with boats and ships behind.
FIG.06The orange water drone floating in a harbour basin during testing, with boats and ships behind.
The WATER SCAN water drone on the quayside, with the electronics module and Mobile Monitoring branding visible.
FIG.07The WATER SCAN water drone on the quayside, with the electronics module and Mobile Monitoring branding visible.
Visual identity: colour palette, logo and the Bai Jamjuree typeface.
FIG.08Visual identity: colour palette, logo and the Bai Jamjuree typeface.
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