Yellow and orange underwater drones on a dock, with a person inspecting one in a harbor setting.
Yellow underwater drone being lowered by a crane on a ship's deck with the ocean in the background.
Yellow underwater drone explores ancient ruins on the ocean floor, with a research vessel above.
Yellow autonomous underwater vehicle with red accents, designed for ocean exploration and research.
Various underwater autonomous vehicles and robots in a gradient ocean depth setting.
Yellow and orange underwater drones on a dock, with a person inspecting one in a harbor setting.
Yellow and orange underwater drones on a dock, with a person inspecting one in a harbor setting.
Yellow underwater drone being lowered by a crane on a ship's deck with the ocean in the background.
Yellow underwater drone explores ancient ruins on the ocean floor, with a research vessel above.
Yellow autonomous underwater vehicle with red accents, designed for ocean exploration and research.
Various underwater autonomous vehicles and robots in a gradient ocean depth setting.
Modular Multi-scenario UUV Platform | For Offshore Wind O&M, Hydrological Survey & Seabed Expedition
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Product Introduction

Modular Unmanned Underwater Vehicle (ROV) Product Introduction

Overview

This full-series modular unmanned underwater vehicle platform integrates autonomous underwater vehicles (AUVs), remotely operated vehicles (ROVs) and hybrid autonomous-remote vehicles (ARVs), designed for multi-scenario offshore operations including offshore wind farm maintenance, marine hydrological survey and deep seabed expedition.
Adopting standardized modular design, the vehicle reserves universal payload bays for flexible sensor integration. Lightweight small-sized units support manual launch and recovery from compact survey vessels, while deep-sea heavy-duty variants match professional offshore engineering ships. All systems feature independent core control algorithms, low-noise hydrodynamic shaping and full international environmental compliance, serving marine engineering contractors, oceanographic research institutes and underwater exploration operators worldwide.

Core Competitive Strengths

  1. Universal Modular Payload Architecture
    All UUV platforms adopt interchangeable payload cabins, compatible with multi-beam sonar, sub-bottom profilers, CTD hydrological sensors, high-definition underwater camera arrays, mineral detection probes and manipulator arms. Clients can quickly reconfigure equipment for wind farm inspection, hydrological data collection or underwater expedition without major structural refits, maximizing equipment utilization rate.
  2. Wide Vessel Compatibility
    Light & medium-sized UUV units occupy minimal deck space, perfectly matching compact offshore survey vessels, coastal service crafts and wind farm operation boats. No large fixed launch & recovery system modification is required, greatly lowering the investment threshold for small and medium marine operators. Deep-sea long-endurance models support matching professional LARS systems on large geotechnical vessels for cross-regional offshore missions.
  3. Dual Working Modes for Complex Marine Conditions
    Hybrid ARV models support switchable autonomous cruise mode and real-time wired observation mode: autonomous long-distance cruise for large-area hydrological mapping and wind farm pile foundation scanning; real-time remote control for close-range underwater sightseeing, wreck exploration and precision engineering inspection. Balances operation efficiency and task flexibility.
  4. Low Operation Cost & Stable Durability
    Self-developed low-power thrusters and deep-sea pressure-resistant lithium battery packs extend continuous working hours; standardized spare parts reduce daily maintenance expenditure. Shallow-water lightweight units avoid high-cost saturation diving supporting equipment, delivering faster capital payback for small-scale operation teams.
  5. Global Marine Regulatory Compliance
    All vehicles comply with ISO quality & environmental management standards, featuring zero-pollution discharge and ultra-low underwater noise design. Fully adaptable to strict marine ecological protection regulations of Asia-Pacific, European and Australian coastal waters, with no port entry restriction risks.
  6. Full Lifecycle Technical Support
    One-stop supporting services cover equipment sea trial training, remote software iteration, data post-processing and equipment leasing schemes, catering to clients without professional in-house UUV operation teams.

Main Application Scenarios

1. Offshore Wind Farm Operation & Maintenance

  • Regular underwater inspection of wind turbine pile foundations, scour detection and corrosion monitoring
  • Subsea cable routing survey, cable damage scanning and anchorage zone hazard detection
  • Marine growth cleaning and structural defect recording via equipped manipulators

2. Marine Hydrological & Geophysical Survey

  • Long-distance continuous collection of water temperature, salinity, flow velocity and turbidity data
  • Seabed terrain mapping, stratum profile detection and sediment sampling
  • Pre-construction hydrological assessment for coastal ports, offshore platforms and marine engineering projects

3. Seabed Exploration & Underwater Expedition

  • Seabed mineral resource prospecting, ore deposit scanning and core sampling assistance
  • Underwater wreck, relic and submerged landform investigation & high-definition video recording
  • Commercial underwater sightseeing, marine ecological observation and scientific research charter missions
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