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Global Underwater Robotics Market Research Report—Forecast till 2025

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出版日期:2020/07/01
頁  數:106頁
文件格式:PDF
價  格:
USD 4,450 (Single-User License)
USD 6,250 (Global-User License)
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Global Underwater Robotics Market Research Report—Forecast till 2025

Market Snapshot
Global Underwater Robotics Market is expected to record a CAGR of 12.5% to register a USD 4,914.29 Million by 2025. In 2019, the market was accounted for USD 2,473.79 Million owing to the growing demand for robots for defense and security applications in different countries. The automated machine within water bodies to acquire knowledge about natural resources, for surveillance, and other industrial and economic processes.
The market for underwater robotics is anticipated to register incredible growth during the review period. The growth of the global market is expected to propel by the increasing requirement for continuous surveillance of submerged ocean areas and the growing demand for underwater robots from the military & defense sectors. Furthermore, technical advancements in sensors and imaging systems have created opportunities for robot manufacturers to integrate updated technology in their products and fuel the market growth. However, the increased costs associated with the R&D of underwater robots may restrain the growth of the global market during the assessment period. Additionally, countries like the US and China have invested in underwater robots to strengthen their security and maintain high surveillance over their maritime borders.
Market Segmentation
The global underwater robotics market has been categorized into type, application, and region.
By type segment, the underwater robotics market has been classified into remotely operated vehicles (ROV) and autonomous underwater vehicles (AUV). A remotely operated vehicle (ROV) is usually tied to a ship using a series of cables and is used along with a tether management system (TMS). The growth of the ROV segment is fuelled by the increasing offshore deep-sea oil and drilling industry owing to its requirement to perform undersea operations, such as equipment assembling, drilling, underwater repair, and maintenance.
Based on application type the market has been segmented into Commercial Exploration, Defense & Security, and Scientific Research.

Regional Analysis
Geographically, the Global Underwater Robotics Market has been divided into North America, Europe, Asia-Pacific, and the rest of the world.
North America is expected to contribute to the biggest market share owing to the largest market share in 2019. In terms of value, the regional market is expected to reach USD 792.7 million to exhibit a CAGR of 12.7% during the review period. The growth of the global underwater robotics market in North America is propelled by the existence of major market players and increasing investments made by the military and defense agencies in underwater robotics.
The global underwater robotics market in Asia-Pacific is evaluated to register the highest CAGR of 15.8%. Regional market growth is driven by the rising investments made by the countries in the region to strengthen their military forces.
Major Players
The Major Companies in the Global Underwater Robotics Market include Atlas Maridan ApS. (Germany), Deep Ocean Engineering, Inc. (US), General Dynamics Mission Systems, Inc. (US), International Submarine Engineering Ltd. (Canada), ECA SA (France), Eddyfi (Canada), Oceaneering International, Inc. (US), Saab AB (Sweden), TechnipFMC plc (UK), and Soil Machine Dynamics Ltd. (UK).
COVID 19 Impacts
We are continuously tracking the impact of the COVID-19 pandemic on various industries and verticals within all domains. Our research reports include the same and help you understand the drop and rise, owing to the impact of COVID-19 on the industries. Also, we help you to identify the gap between the demand and supply of your interested market. Moreover, the report helps you with the analysis, amended government regulations, and many other useful insights.

TABLE OF CONTENT
1 EXECUTIVE SUMMARY
2 MARKET INTRODUCTION
2.1 OVERVIEW

2.2 SCOPE OF STUDY

2.3 MARKET STRUCTURE

3 RESEARCH METHODOLOGY
4 MARKET DYNAMICS
4.1 OVERVIEW

4.2 DRIVERS

4.2.1 NEED FOR CONTINUOUS SURVEILLANCE OF SUBMERGED OCEAN AREAS

4.2.2 DEMAND FOR UNDERWATER ROBOTS FROM MILITARY & DEFENSE VERTICAL

4.2.3 DRIVERS IMPACT ANALYSIS

4.3 RESTRAINTS

4.3.1 HIGH COST OF R&D FOR DEVELOPMENT OF UNDERWATER ROBOTS

4.4 OPPORTUNITIES

4.4.1 TECHNICAL ADVANCEMENTS IN SENSORS AND IMAGING SYSTEMS

4.5 COVID-19 IMPACT ANALYSIS

4.5.1 IMPACT ON SEMICONDUCTOR COMPONENT MANUFACTURERS

4.5.2 IMPACT ON THE GLOBAL UNDERWATER ROBOTICS MARKET

4.5.2.1 IMPACT ON SUPPLY CHAIN

4.5.2.2 PRICE VARIATION OF KEY RAW MATERIALS

4.5.2.3 PRODUCTION SHUTDOWN

4.5.2.4 IMPACT ON MARKET DEMAND

5 MARKET FACTOR ANALYSIS
5.1 VALUE CHAIN ANALYSIS

5.1.1 HARDWARE/COMPONENT MANUFACTURERS

5.1.2 SOFTWARE DEVELOPERS

5.1.3 SYSTEM INTEGRATORS

5.1.4 DISTRIBUTION CHANNEL

5.1.5 END USERS

5.2 PORTER'S FIVE FORCES MODEL

5.2.1 THREAT OF NEW ENTRANTS

5.2.2 BARGAINING POWER OF SUPPLIERS

5.2.3 THREAT OF SUBSTITUTE

5.2.4 BARGAINING POWER OF BUYERS

5.2.5 RIVALRY

6 GLOBAL UNDERWATER ROBOTICS MARKET, BY TYPE
6.1 OVERVIEW

6.2 REMOTELY OPERATED VEHICLE (ROV)

6.3 AUTONOMOUS UNDERWATER VEHICLE (AUV)

7 GLOBAL UNDERWATER ROBOTICS MARKET, BY APPLICATION
7.1 OVERVIEW

7.2 DEFENSE & SECURITY

7.3 COMMERCIAL EXPLORATION

7.4 SCIENTIFIC RESEARCH

8 GLOBAL UNDERWATER ROBOTICS MARKET, BY REGION
8.1 OVERVIEW

8.2 NORTH AMERICA

8.2.1 US

8.2.2 CANADA

8.2.3 MEXICO

8.3 EUROPE

8.3.1 GERMANY

8.3.2 UK

8.3.3 FRANCE

8.3.4 ITALY

8.3.5 REST OF EUROPE

8.4 ASIA-PACIFIC

8.4.1 CHINA

8.4.2 JAPAN

8.4.3 INDIA

8.4.4 SOUTH KOREA

8.4.5 REST OF ASIA-PACIFIC

8.5 REST OF THE WORLD

8.5.1 MIDDLE EAST & AFRICA

8.5.2 CENTRAL & SOUTH AMERICA

9 COMPETITIVE LANDSCAPE
9.1 COMPETITIVE OVERVIEW

9.2 COMPETITIVE BENCHMARKING

9.3 KEY DEVELOPMENTS AND GROWTH STRATEGIES

10 COMPANY PROFILES
10.1 ATLAS MARIDAN APS

10.1.1 COMPANY OVERVIEW

10.1.2 FINANCIAL OVERVIEW

10.1.3 PRODUCTS OFFERED

10.1.4 KEY DEVELOPMENTS

10.1.5 SWOT ANALYSIS

10.1.6 KEY STRATEGIES

10.2 DEEP OCEAN ENGINEERING, INC.

10.2.1 COMPANY OVERVIEW

10.2.2 FINANCIAL OVERVIEW

10.2.3 PRODUCTS OFFERED

10.2.4 KEY DEVELOPMENTS

10.2.5 SWOT ANALYSIS

10.2.6 KEY STRATEGIES

10.3 GENERAL DYNAMICS MISSION SYSTEMS, INC.

10.3.1 COMPANY OVERVIEW

10.3.2 FINANCIAL OVERVIEW

10.3.3 PRODUCTS OFFERED

10.3.4 KEY DEVELOPMENTS

10.3.5 SWOT ANALYSIS

10.3.6 KEY STRATEGIES

10.4 INTERNATIONAL SUBMARINE ENGINEERING LTD. (ISE)

10.4.1 COMPANY OVERVIEW

10.4.2 FINANCIAL OVERVIEW

10.4.3 PRODUCTS OFFERED

10.4.4 KEY DEVELOPMENTS

10.4.5 SWOT ANALYSIS

10.4.6 KEY STRATEGIES

10.5 ECA SA

10.5.1 COMPANY OVERVIEW

10.5.2 FINANCIAL OVERVIEW

10.5.3 PRODUCTS OFFERED

10.5.4 KEY DEVELOPMENTS

10.5.5 SWOT ANALYSIS

10.5.6 KEY STRATEGIES

10.6 EDDYFI

10.6.1 COMPANY OVERVIEW

10.6.2 FINANCIAL OVERVIEW

10.6.3 PRODUCTS OFFERED

10.6.4 KEY DEVELOPMENTS

10.6.5 SWOT ANALYSIS

10.6.6 KEY STRATEGIES

10.7 OCEANEERING INTERNATIONAL, INC.

10.7.1 COMPANY OVERVIEW

10.7.2 FINANCIAL OVERVIEW

10.7.3 PRODUCTS OFFERED

10.7.4 KEY DEVELOPMENTS

10.7.5 SWOT ANALYSIS

10.7.6 KEY STRATEGIES

10.8 SAAB AB

10.8.1 COMPANY OVERVIEW

10.8.2 FINANCIAL OVERVIEW

10.8.3 PRODUCTS OFFERED

10.8.4 KEY DEVELOPMENTS

10.8.5 SWOT ANALYSIS

10.8.6 KEY STRATEGIES

10.9 TECHNIPFMC PLC

10.9.1 COMPANY OVERVIEW

10.9.2 FINANCIAL OVERVIEW

10.9.3 PRODUCTS OFFERED

10.9.4 KEY DEVELOPMENTS

10.9.5 SWOT ANALYSIS

10.9.6 KEY STRATEGIES

10.1 SOIL MACHINE DYNAMICS LTD.

10.10.1 COMPANY OVERVIEW

10.10.2 FINANCIAL OVERVIEW

10.10.3 PRODUCTS OFFERED

10.10.4 KEY DEVELOPMENTS

10.10.5 SWOT ANALYSIS

10.10.6 KEY STRATEGIES

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