Unmanned Underwater Vehicles Market By Product Type Analysis (Remotely Operated Vehicles, Autonomous Underwater Vehicles); By Application Analysis (Commercial, Defense, Scientific Research, Miscellaneous) and by Regional Analysis - Global Forecast by 2022 - 2027
The Global Unmanned Underwater Vehicles Market is expected to exceed more than US$ 7.40 Billion by 2027, with CAGR at 14.84% in the given forecast period.
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Major Players
Study period:
Fastest Growing Market:
2022-2027
APAC
Base Year:
Largest Market:
2021
North America
CAGR:
14
REPORT DESCRIPTION
Unmanned underwater vehicles (UUV) are also called as underwater drones, which have ability to function underwater without a human dweller. UUV are categories two types one is remotely operated underwater vehicles (ROVs), which are controlled by a human operator through a remote, and other is autonomous underwater vehicles (AUVs), which is operated independently through direct human input.
How Big is The Global Unmanned Underwater Vehicles Market?
The Global Unmanned Underwater Vehicles Market is expected to exceed more than US$ 7.40 Billion by 2027, with CAGR at 14.84% in the given forecast period.
The major driving factors of Global Unmanned Underwater Vehicles Market are as follows:
The restraining factors of Global Unmanned Underwater Vehicles Market are as follows:
The Global Unmanned Underwater Vehicles Market is segmented on the lines of its technology, treatment, application and regional. Based on product type segmentation it covers Remotely Operated Vehicles and Autonomous Underwater Vehicles; and based on application segmentation it covers Commercial, Defense, Scientific Research, Miscellaneous application. The global unmanned underwater vehicles market on geographic segmentation covers various regions such as North America, Europe, Asia Pacific, Latin America, Middle East and Africa. Each geographic market is further segmented to provide market revenue for select countries such as the U.S., Canada, U.K. Germany, China, Japan, India, Brazil, and GCC countries.
This report provides:
1) An overview of the global market for unmanned underwater vehicles and related technologies.
2) Analyses of global market trends, with data from 2019, estimates for 2020 and 2021, and projections of compound annual growth rates (CAGRs) through 2027.
3) Identifications of new market opportunities and targeted promotional plans for global unmanned underwater vehicles market.
4) Discussion of research and development, and the demand for new products and new applications.
5) Comprehensive company profiles of major players in the industry.
Report scope:
The scope of the report includes a detailed study of global and regional markets on Unmanned Underwater Vehicles Marketwith the reasons given for variations in the growth of the industry in certain regions.
The report covers detailed competitive outlook including the market share and company profiles of the key participants operating in the global market. Key players profiled in the report include Saab, Fugro, Ocean Engineering, Kongsberg Maritime, Bluefin Robotics, Atlas Elektronik, BIRNS,International Submarine Engineering, Schilling Robotics, Teledyne Technologies, Subsea 7. Company profile includes assign such as company summary, financial summary, business strategy and planning, SWOT analysis and current developments.
The Top Companies Report is intended to provide our buyers with a snapshot of the industry’s most influential players.
The Global Unmanned Underwater Vehicles Market has been segmented as below:
By Product Type Analysis:
By Application Analysis:
By Regional Analysis:
Reasons to Buy this Report:
1) Obtain the most up to date information available on all Global Unmanned Underwater Vehicles Market.
2) Identify growth segments and opportunities in the industry.
3) Facilitate decision making on the basis of strong historic and forecast of global unmanned underwater vehicles market data.
4) Assess your competitor’s refining portfolio and its evolution.
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1 INTRODUCTION
1.1 Key Take Aways
1.2 Report Description
1.3 Markets Covered
1.4 Stakeholders
1.5 Research Methodology
1.5.1 Market Size
1.5.2 Market Share
1.5.3 Key Data Points From Secondary Sources
1.5.4 Key Data Points From Primary Sources
2 Research Methodology
2.1 Research Data
2.1.1 Secondary Data
2.1.1.1 Key Data From Secondary Sources
2.1.2 Primary Data
2.1.2.1 Key Data From Primary Sources
2.1.2.2 Key Industry Insights
2.1.2.3 Breakdown of Primaries
2.2 Factor Analysis
2.2.1 Introduction
2.2.2 Demand-Side Indicators
2.2.2.1 Increasing Use of Unmanned Underwater Vehicles (UUVs) in Navy Applications
2.2.2.2 Rising Demand for Unmanned Underwater Vehicles (UUVs) in the Commercial Exploration of Oil & Gas and to Carry Out Ocean Surveys
2.2.3 Supply-Side Indicators
2.2.3.1 Architectural Advancements in UUV Designs
2.3 Market-Size Estimation
2.3.1 Bottom Up Approach
2.3.2 Top Down Approach
2.4 Market Breakdown & Data Triangulation
2.5 Research Assumptions
3 Executive Summary
4 Premium Insights
4.1 Lucrative Opportunities in the Unmanned Underwater Vehicle Market
4.2 Remotely Operated Vehicle Market and Autonomous Underwater Vehicle Market, By Application
4.3 Autonomous Underwater Vehicle Market, Developed vs Emerging Economies
4.4 Remotely Operated Vehicle Market, Developed vs Emerging Economies
4.5 Remotely Operated Vehicle Market and Autonomous Underwater Vehicle Market, By Product Type
4.6 Remotely Operated Vehicle Market and Autonomous Underwater Vehicle Market, By Propulsion System
5 Market Overview
5.1 Introduction
5.2 Market Segmentation
5.2.1 UUV Market, By Application
5.2.2 UUV Market, By Type
5.2.3 ROV & AUV Market, By Propulsion System
5.2.4 ROV & AUV Payload Market, By Type
5.3 Market Dynamics
5.3.1 Drivers
5.3.1.1 Growing Deep-Water Offshore Oil & Gas Production
5.3.1.2 Maritime Security and Threats
5.3.1.3 Need for Ocean Data and Mapping
5.3.2 Restraints
5.3.2.1 UUV Reliability
5.3.3 Opportunities
5.3.3.1 Technologically Advanced Ocean Exploration
5.3.3.2 Energy, Power, and Propulsion
5.3.4 Challenges
5.3.4.1 UUV Autonomy
6 Industry Trends
6.1 Introduction
6.2 Value-Chain Analysis
6.3 Supply-Chain Analysis
6.3.1 Key Influencers
6.4 Application-Based Mapping of UUV, By Company
6.5 Technology Trends
6.5.1 Autonomous Underwater Vehicle (AUV)
6.5.1.1 Rapid Technological Advancement
6.5.1.2 Pipeline Inspection Trend in AUV
6.5.1.3 Longer Mission Life
6.5.1.4 Increased Functionality
6.5.1.5 Miniaturization
6.5.2 Remotely Operated Vehicle (ROV)
6.5.2.1 Hybrid ROV
6.5.2.2 HD Camera and Video
6.5.2.3 Rescue Vehicles
6.5.2.4 Reduced Vehicle Size
6.5.3 3D Printing in Unmanned Underwater Vehicle
6.5.4 Multibeam Echo Sounder
6.6 Innovation & Patent Registrations
7 Unmanned Underwater Vehicle Market, By Type
7.1 Introduction
7.2 Remotely Operated Vehicle (ROV)
7.3 Autonomous Underwater Vehicle (AUV)
8 Remotely Operated Vehicle Market, By Application
8.1 Introduction
8.2 Commercial Exploration
8.2.1 Offshore Drilling
8.2.2 Survey & Seabed Mapping
8.2.3 Pipeline/Cabling/Inspection
8.3 Scientific Research
8.3.1 Seabed Mapping & Imaging
8.3.2 Oceanographic Studies
8.3.3 Environmental Monitoring
8.3.4 Pharmaceutical Research
8.4 Defense
8.4.1 ISR (Intelligence, Surveillance, and Reconnaissance)
8.4.2 Mine Countermeasures
8.4.3 Anti-Submarine Warfare
8.4.4 Security, Detection, and Inspection
8.4.5 Navigation & Accident Investigation
8.5 Miscellaneous
8.5.1 Search & Rescue
8.5.2 Marine Salvage & Debris Removal
8.5.3 Marine Archaeology
9 Remotely Operated Vehicle Market, By Product Type
9.1 Introduction
9.2 Small Vehicles
9.3 High-Capacity Electric Vehicles
9.4 Work Class Vehicles
9.5 Heavy Work Class Vehicles
10 Remotely Operated Vehicle Market, By Propulsion System
10.1 Introduction
10.2 Electric Systems
10.3 Mechanical Systems
10.4 Hybrid Systems
11 Remotely Operated Vehicle Payload Market, By Type
11.1 Introduction
11.2 Remotely Operated Vehicle Payload Market, By Type
11.2.1 Cameras
11.2.2 Sensors
11.2.3 Synthetic Aperture Sonar
11.2.4 Lighting Systems
11.2.5 Inertial Navigation Systems (INS)
11.2.6 Video Screens
11.2.7 Others
12 Remotely Operated Vehicle Market, By Region
12.1 Introduction
12.2 North America
12.2.1 By Application
12.2.2 By Product Type
12.2.3 By Country
12.2.3.1 US
12.2.3.1.1 By Application
12.2.3.2 Canada
12.2.3.2.1 By Application
12.3 Europe
12.3.1 unmanned underwater vehicle market By Application
12.3.2 unmanned underwater vehicle market By Product Type
12.3.3 unmanned underwater vehicle market By Country
12.3.3.1 UK
12.3.3.1.1 unmanned underwater vehicle market By Application
12.3.3.2 Russia
12.3.3.2.1 unmanned underwater vehicle market By Application
12.3.3.3 Germany
12.3.3.3.1 unmanned underwater vehicle market By Application
12.3.3.4 Norway
12.3.3.4.1 unmanned underwater vehicle market By Application
12.3.3.5 France
12.3.3.5.1 unmanned underwater vehicle market By Application
12.4 Asia Pacific
12.4.1 unmanned underwater vehicle market By Application
12.4.2 unmanned underwater vehicle market By Product Type
12.4.3 unmanned underwater vehicle market By Country
12.4.3.1 China
12.4.3.1.1 By Application
12.4.3.2 Japan
12.4.3.2.1 By Application
12.4.3.3 India
12.4.3.3.1 unmanned underwater vehicle market By Application
12.4.3.4 Australia
12.4.3.4.1 By Application
12.4.3.5 Indonesia
12.4.3.5.1 unmanned underwater vehicle market By Application
12.5 Middle East
12.5.1 By Application
12.5.2 By Product Type
12.5.3 By Country
12.5.3.1 UAE
12.5.3.1.1 By Application
12.5.3.2 Turkey
12.5.3.2.1 By Application
12.5.3.3 Israel
12.5.3.3.1 By Application
12.6 Latin America
12.6.1 By Application
12.6.2 By Product Type
12.6.3 By Country
12.6.3.1 Brazil
12.6.3.1.1 By Application
12.6.3.2 Mexico
12.6.3.2.1 By Application
12.7 Africa
12.7.1 By Application
12.7.2 By Product Type
12.7.3 By Country
12.7.3.1 South Africa
12.7.3.1.1 By Application
12.7.3.2 Nigeria
12.7.3.2.1 By Application
13 Autonomous Underwater Vehicle Market, By Application
13.1 Introduction
13.2 Commercial Exploration
13.2.1 Offshore Drilling
13.2.2 Survey & Seabed Mapping
13.2.3 Pipeline/Cabling/Inspection
13.3 Scientific Research
13.3.1 Seabed Mapping & Imaging
13.3.2 Oceanographic Studies
13.3.3 Environmental Monitoring
13.3.4 Pharmaceutical Research
13.4 Defense
13.4.1 ISR (Intelligence, Surveillance, and Reconnaissance)
13.4.2 Mine Countermeasures
13.4.3 Anti-Submarine Warfare
13.4.4 Security, Detection, and Inspection
13.4.5 Navigation & Accident Investigation
13.5 Miscellaneous
13.5.1 Search & Rescue
13.5.2 Marine Salvage & Debris Removal
13.5.3 Marine Archaeology
14 Autonomous Underwater Vehicle Market, By Product Type
14.1 Introduction
14.2 Man-Portable Vehicles
14.3 Light Weight Vehicles
14.4 Heavy Weight Vehicles
14.5 Large Vehicles
15 Autonomous Underwater Vehicle Market, By Propulsion System
15.1 Introduction
15.2 Electric Systems
15.3 Mechanical Systems
15.4 Hybrid Systems
16 Autonomous Underwater Vehicle Payload Market, By Type
16.1 Introduction
16.2 Autonomous Underwater Vehicle Payload Market, By Type
16.2.1 Cameras
16.2.2 Sensors
16.2.3 Synthetic Aperture Sonar
16.2.4 Inertial Navigation Systems (INS)
16.2.5 Video Screens
16.2.6 Lighting Systems
16.2.7 Others
17 Autonomous Underwater Vehicle Market, By Region
17.1 Introduction
17.2 North America
17.2.1 By Application
17.2.2 By Product Type
17.2.3 By Country
17.2.3.1 US
17.2.3.1.1 By Application
17.2.3.2 Canada
17.2.3.2.1 By Application
17.3 Europe
17.3.1 unmanned underwater vehicle market By Application
17.3.2 unmanned underwater vehicle market By Product Type
17.3.3 unmanned underwater vehicle market By Country
17.3.3.1 UK
17.3.3.1.1 unmanned underwater vehicle market By Application
17.3.3.2 France
17.3.3.2.1 unmanned underwater vehicle market By Application
17.3.3.3 Germany
17.3.3.3.1 By Application
17.3.3.4 Norway
17.3.3.4.1 unmanned underwater vehicle market By Application
17.3.3.5 Russia
17.3.3.5.1unmanned underwater vehicle market By Application
17.4 Asia Pacific
17.4.1 unmanned underwater vehicle market By Application
17.4.2 unmanned underwater vehicle market By Product Type
17.4.3 unmanned underwater vehicle market By Country
17.4.3.1 China
17.4.3.1.1 unmanned underwater vehicle market By Application
17.4.3.2 India
17.4.3.2.1 unmanned underwater vehicle market By Application
17.4.3.3 Japan
17.4.3.3.1 unmanned underwater vehicle market By Application
17.4.3.4 Australia
17.4.3.4.1 unmanned underwater vehicle market By Application
17.4.3.5 Indonesia
17.4.3.5.1 unmanned underwater vehicle market By Application
17.5 Middle East
17.5.1 unmanned underwater vehicle market By Application
17.5.2 unmanned underwater vehicle market By Product Type
17.5.3 unmanned underwater vehicle market By Country
17.5.3.1 Israel
17.5.3.1.1 By Application
17.5.3.2 UAE
17.5.3.2.1 unmanned underwater vehicle market By Application
17.5.3.3 Turkey
17.5.3.3.1 By Application
17.6 Latin America
17.6.1 unmanned underwater vehicle market By Application
17.6.2 By Product Type
17.6.3 By Country
17.6.3.1 Brazil
17.6.3.1.1 By Application
17.6.3.2 Mexico
17.6.3.2.1 unmanned underwater vehicle market By Application
17.7 Africa
17.7.1 unmanned underwater vehicle market By Application
17.7.2 By Product Type
17.7.3 unmanned underwater vehicle market By Country
17.7.3.1 South Africa
17.7.3.1.1 By Application
17.7.3.2 Nigeria
17.7.3.2.1 unmanned underwater vehicle market By Application
18 Competitive Landscape
18.1 Introduction
18.2 Market Ranking Analysis
18.3 Competitive Leadership Mapping
18.4 Strength of Product Portfolio
18.5 Business Strategy Excellence
19 Company Profiles
19.1 Kongsberg Gruppen
19.2 Teledyne Technologies Inc.
19.3 Lockheed Martin Corporation
19.4 Saab Group
19.5 Oceaneering International, Inc.
19.6 Subsea 7 S.A.
19.7 The Boeing Company
19.8 Oceanserver Technology, Inc.
19.9 Bluefin Robotics Corporation
19.10 Atlas EleKTronik GmbH
19.11 International Submarine Engineering Ltd.
19.12 Fugro N.V.
The Global Unmanned Underwater Vehicles Market has been segmented as below:
By Product Type Analysis:
By Application Analysis:
By Regional Analysis:
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