
Autonomous Ships Market Report and Forecast 2025-2034
Description
The global autonomous ships market attained a value of nearly USD 104.22 Billion in 2024. The market is further expected to grow in the forecast period of 2025-2034 at a CAGR of 7.20% to reach about USD 208.88 Billion by 2034.
Increase in the Demand for Freight Transportation through Marine to Propel Demand in the Industry
There is an increase in demand for cargo transportation via waterways. Because of the safe and secure nature of sea transportation, a large number of cargos are effectively moved to other ports. Additionally, compared to road and air transits, cargo ships are less expensive for delivering products since ships can transport more cargo in a shorter amount of time.
This is aiding the market growth of autonomous ships. The autonomous ships industry is expected to grow due to recent advances in commercial boats and big companies' invention of cargo ships. Furthermore, the deployment of autonomous marines, particularly in cargo ships, is projected to increase demand for freight transportation via maritime routes. As a result, all of these factors are expected to contribute to an increase in demand for cargo transportation by sea in the forecast period, thereby aiding the autonomous ships industry.
Autonomous Ships: Market Segmentation
Autonomous ships are watercrafts that are controlled by artificial intelligence (AI). These vehicles might be unmanned and operate automatically, similar to a seagoing drone. Autonomous ships employ a network of sensors paired with sensor fusion to provide an accurate composite view of the environment to the ship's AI.
Market Breakup by Level of Autonomy
New defence and commercial vessels are outfitted with cutting-edge technologies to increase safety and efficiency. The deployment of sophisticated technologies is a key driver in the market for autonomous ships. As there will be no personnel on board to control the operations of the autonomous ships that are in the market, they will either be outfitted with artificial intelligence, Internet of Things (IoT), cloud computing, and other new technologies, or their activities will be remotely managed from a land-based control centre. This helps to minimise the frequency of accidents caused by human mistake since these autonomous ships are outfitted with modern sensors, infrared cameras, developed radar and LIDAR modules, automated identification systems, and other features that make ship operation safer and is expected to propel the demand for autonomous ships in future.
Key Industry Players in the Global Autonomous Ships Market
The report presents a detailed analysis of the following key players in the global autonomous ships market, looking into their capacity, market shares, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
Increase in the Demand for Freight Transportation through Marine to Propel Demand in the Industry
There is an increase in demand for cargo transportation via waterways. Because of the safe and secure nature of sea transportation, a large number of cargos are effectively moved to other ports. Additionally, compared to road and air transits, cargo ships are less expensive for delivering products since ships can transport more cargo in a shorter amount of time.
This is aiding the market growth of autonomous ships. The autonomous ships industry is expected to grow due to recent advances in commercial boats and big companies' invention of cargo ships. Furthermore, the deployment of autonomous marines, particularly in cargo ships, is projected to increase demand for freight transportation via maritime routes. As a result, all of these factors are expected to contribute to an increase in demand for cargo transportation by sea in the forecast period, thereby aiding the autonomous ships industry.
Autonomous Ships: Market Segmentation
Autonomous ships are watercrafts that are controlled by artificial intelligence (AI). These vehicles might be unmanned and operate automatically, similar to a seagoing drone. Autonomous ships employ a network of sensors paired with sensor fusion to provide an accurate composite view of the environment to the ship's AI.
Market Breakup by Level of Autonomy
- Semi-Autonomous
- Fully Autonomous
- Hardware
- Software
- Commercial Ships
- Defence Ships
- Passenger Ships
- Carbon Neutral Fuels
- Liquefied Natural Gas
- Electric Batteries
- Heavy Fuel Oils (HFO)
- North America
- Europe
- Asia Pacific
- Latin America
- Middle East and Africa
New defence and commercial vessels are outfitted with cutting-edge technologies to increase safety and efficiency. The deployment of sophisticated technologies is a key driver in the market for autonomous ships. As there will be no personnel on board to control the operations of the autonomous ships that are in the market, they will either be outfitted with artificial intelligence, Internet of Things (IoT), cloud computing, and other new technologies, or their activities will be remotely managed from a land-based control centre. This helps to minimise the frequency of accidents caused by human mistake since these autonomous ships are outfitted with modern sensors, infrared cameras, developed radar and LIDAR modules, automated identification systems, and other features that make ship operation safer and is expected to propel the demand for autonomous ships in future.
Key Industry Players in the Global Autonomous Ships Market
The report presents a detailed analysis of the following key players in the global autonomous ships market, looking into their capacity, market shares, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
- ABB Ltd.
- L3Harris Technologies, Inc.
- Rolls-Royce PLC
- Wärtsilä
- Others
Table of Contents
152 Pages
- 1 Executive Summary
- 1.1 Market Size 2024-2025
- 1.2 Market Growth 2025(F)-2034(F)
- 1.3 Key Demand Drivers
- 1.4 Key Players and Competitive Structure
- 1.5 Industry Best Practices
- 1.6 Recent Trends and Developments
- 1.7 Industry Outlook
- 2 Market Overview and Stakeholder Insights
- 2.1 Market Trends
- 2.2 Key Verticals
- 2.3 Key Regions
- 2.4 Supplier Power
- 2.5 Buyer Power
- 2.6 Key Market Opportunities and Risks
- 2.7 Key Initiatives by Stakeholders
- 3 Economic Summary
- 3.1 GDP Outlook
- 3.2 GDP Per Capita Growth
- 3.3 Inflation Trends
- 3.4 Democracy Index
- 3.5 Gross Public Debt Ratios
- 3.6 Balance of Payment (BoP) Position
- 3.7 Population Outlook
- 3.8 Urbanisation Trends
- 4 Country Risk Profiles
- 4.1 Country Risk
- 4.2 Business Climate
- 5 Global Autonomous Ships Market Analysis
- 5.1 Key Industry Highlights
- 5.2 Global Autonomous Ships Historical Market (2018-2024)
- 5.3 Global Autonomous Ships Market Forecast (2025-2034)
- 5.4 Global Autonomous Ships Market by Level of Autonomy
- 5.4.1 Semi-Autonomous
- 5.4.1.1 Historical Trend (2018-2024)
- 5.4.1.2 Forecast Trend (2025-2034)
- 5.4.2 Fully Autonomous
- 5.4.2.1 Historical Trend (2018-2024)
- 5.4.2.2 Forecast Trend (2025-2034)
- 5.5 Global Autonomous Ships Market by Component
- 5.5.1 Hardware
- 5.5.1.1 Historical Trend (2018-2024)
- 5.5.1.2 Forecast Trend (2025-2034)
- 5.5.2 Software
- 5.5.2.1 Historical Trend (2018-2024)
- 5.5.2.2 Forecast Trend (2025-2034)
- 5.6 Global Autonomous Ships Market by Ship Type
- 5.6.1 Commercial Ships
- 5.6.1.1 Historical Trend (2018-2024)
- 5.6.1.2 Forecast Trend (2025-2034)
- 5.6.2 Defence Ships
- 5.6.2.1 Historical Trend (2018-2024)
- 5.6.2.2 Forecast Trend (2025-2034)
- 5.6.3 Passenger Ships
- 5.6.3.1 Historical Trend (2018-2024)
- 5.6.3.2 Forecast Trend (2025-2034)
- 5.7 Global Autonomous Ships Market by Fuel Type
- 5.7.1 Carbon Neutral Fuels
- 5.7.1.1 Historical Trend (2018-2024)
- 5.7.1.2 Forecast Trend (2025-2034)
- 5.7.2 Liquefied Natural Gas
- 5.7.2.1 Historical Trend (2018-2024)
- 5.7.2.2 Forecast Trend (2025-2034)
- 5.7.3 Electric Batteries
- 5.7.3.1 Historical Trend (2018-2024)
- 5.7.3.2 Forecast Trend (2025-2034)
- 5.7.4 Heavy Fuel Oils (HFO)
- 5.7.4.1 Historical Trend (2018-2024)
- 5.7.4.2 Forecast Trend (2025-2034)
- 5.8 Global Autonomous Ships Market by Region
- 5.8.1 North America
- 5.8.1.1 Historical Trend (2018-2024)
- 5.8.1.2 Forecast Trend (2025-2034)
- 5.8.2 Europe
- 5.8.2.1 Historical Trend (2018-2024)
- 5.8.2.2 Forecast Trend (2025-2034)
- 5.8.3 Asia Pacific
- 5.8.3.1 Historical Trend (2018-2024)
- 5.8.3.2 Forecast Trend (2025-2034)
- 5.8.4 Latin America
- 5.8.4.1 Historical Trend (2018-2024)
- 5.8.4.2 Forecast Trend (2025-2034)
- 5.8.5 Middle East and Africa
- 5.8.5.1 Historical Trend (2018-2024)
- 5.8.5.2 Forecast Trend (2025-2034)
- 6 North America Autonomous Ships Market Analysis
- 6.1 United States of America
- 6.1.1 Historical Trend (2018-2024)
- 6.1.2 Forecast Trend (2025-2034)
- 6.2 Canada
- 6.2.1 Historical Trend (2018-2024)
- 6.2.2 Forecast Trend (2025-2034)
- 7 Europe Autonomous Ships Market Analysis
- 7.1 United Kingdom
- 7.1.1 Historical Trend (2018-2024)
- 7.1.2 Forecast Trend (2025-2034)
- 7.2 Germany
- 7.2.1 Historical Trend (2018-2024)
- 7.2.2 Forecast Trend (2025-2034)
- 7.3 France
- 7.3.1 Historical Trend (2018-2024)
- 7.3.2 Forecast Trend (2025-2034)
- 7.4 Italy
- 7.4.1 Historical Trend (2018-2024)
- 7.4.2 Forecast Trend (2025-2034)
- 7.5 Others
- 8 Asia Pacific Autonomous Ships Market Analysis
- 8.1 China
- 8.1.1 Historical Trend (2018-2024)
- 8.1.2 Forecast Trend (2025-2034)
- 8.2 Japan
- 8.2.1 Historical Trend (2018-2024)
- 8.2.2 Forecast Trend (2025-2034)
- 8.3 India
- 8.3.1 Historical Trend (2018-2024)
- 8.3.2 Forecast Trend (2025-2034)
- 8.4 ASEAN
- 8.4.1 Historical Trend (2018-2024)
- 8.4.2 Forecast Trend (2025-2034)
- 8.5 Australia
- 8.5.1 Historical Trend (2018-2024)
- 8.5.2 Forecast Trend (2025-2034)
- 8.6 Others
- 9 Latin America Autonomous Ships Market Analysis
- 9.1 Brazil
- 9.1.1 Historical Trend (2018-2024)
- 9.1.2 Forecast Trend (2025-2034)
- 9.2 Argentina
- 9.2.1 Historical Trend (2018-2024)
- 9.2.2 Forecast Trend (2025-2034)
- 9.3 Mexico
- 9.3.1 Historical Trend (2018-2024)
- 9.3.2 Forecast Trend (2025-2034)
- 9.4 Others
- 10 Middle East and Africa Autonomous Ships Market Analysis
- 10.1 Saudi Arabia
- 10.1.1 Historical Trend (2018-2024)
- 10.1.2 Forecast Trend (2025-2034)
- 10.2 United Arab Emirates
- 10.2.1 Historical Trend (2018-2024)
- 10.2.2 Forecast Trend (2025-2034)
- 10.3 Nigeria
- 10.3.1 Historical Trend (2018-2024)
- 10.3.2 Forecast Trend (2025-2034)
- 10.4 South Africa
- 10.4.1 Historical Trend (2018-2024)
- 10.4.2 Forecast Trend (2025-2034)
- 10.5 Others
- 11 Market Dynamics
- 11.1 SWOT Analysis
- 11.1.1 Strengths
- 11.1.2 Weaknesses
- 11.1.3 Opportunities
- 11.1.4 Threats
- 11.2 Porter’s Five Forces Analysis
- 11.2.1 Supplier’s Power
- 11.2.2 Buyer’s Power
- 11.2.3 Threat of New Entrants
- 11.2.4 Degree of Rivalry
- 11.2.5 Threat of Substitutes
- 11.3 Key Indicators for Demand
- 11.4 Key Indicators for Price
- 12 Value Chain Analysis
- 13 Competitive Landscape
- 13.1 Supplier Selection
- 13.2 Key Global Players
- 13.3 Key Regional Players
- 13.4 Key Player Strategies
- 13.5 Company Profiles
- 13.5.1 ABB Ltd.
- 13.5.1.1 Company Overview
- 13.5.1.2 Product Portfolio
- 13.5.1.3 Demographic Reach and Achievements
- 13.5.1.4 Certifications
- 13.5.2 L3Harris Technologies, Inc.
- 13.5.2.1 Company Overview
- 13.5.2.2 Product Portfolio
- 13.5.2.3 Demographic Reach and Achievements
- 13.5.2.4 Certifications
- 13.5.3 Rolls-Royce PLC
- 13.5.3.1 Company Overview
- 13.5.3.2 Product Portfolio
- 13.5.3.3 Demographic Reach and Achievements
- 13.5.3.4 Certifications
- 13.5.4 Wärtsilä
- 13.5.4.1 Company Overview
- 13.5.4.2 Product Portfolio
- 13.5.4.3 Demographic Reach and Achievements
- 13.5.4.4 Certifications
- 13.5.5 Others
Pricing
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