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市场调查报告书
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1427155

全球自主船舶市场规模、份额、成长分析、按自主程度、按最终用途 - 2023-2030 年产业预测

Global Autonomous Ships Market Size, Share, Growth Analysis, By Autonomy Level(Semi-Autonomous and Fully Autonomous), By End Use(Commercial and Military) - Industry Forecast 2023-2030

出版日期: | 出版商: SkyQuest | 英文 157 Pages | 商品交期: 3-5个工作天内

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简介目录

在预测期(2024-2031年),全球自主船舶市场规模预计将从2023年的100.4亿美元增至2022年的88.4亿美元,预计到2031年将达到278.5亿美元。2017年复合年增长率为13.60% 。

近年来,由于技术进步、对高效海上运输的需求不断增加以及对减少碳排放的日益关注,全球自主船舶市场经历了显着增长。自主船舶,也称为无人驾驶船舶或无人船舶,代表了航运业的模式转移,具有提高安全性、降低营运成本和提高效率等优势。支持自主船舶市场成长的关键因素之一是航运业越来越多地采用自动化和数数位化。感测器技术、人工智慧和资料分析的进步使得高度自主系统的开发成为可能,这些系统可以在无需人工干预的情况下导航船舶。这些系统可以有效地侦测和避开障碍物、优化路线并做出即时决策,以确保安全且有效率的营运。此外,随着对永续性和环境法规的日益关注,航运公司正在探索自主技术作为减少燃料消耗和温室气体排放的手段。透过利用自主导航系统,公司可以优化船舶性能,最大限度地减少閒置时间,并选择更省油的航线,从而为更绿色、更永续的航运业做出贡献。此外,自动导航船舶市场正得到政府、产业相关人员和科技公司的大量投资。这些投资旨在进行研究和开发计划,以增强自主船舶的能力,应对监管挑战并确保符合国际海事标准。然而,儘管成长前景光明,但自主船舶的广泛普及面临一些挑战,包括监管障碍、网路安全问题以及需要强大的基础设施来支援自主运作。此外,关于无人船的道德和法律影响的争论仍在继续,特别是在海上发生事故或事件时的课责和责任方面。

自上而下和自下而上的方法已用于估计和检验全球自主船舶市场的规模,并估计其他各个相关子市场的规模。用于估计市场规模的调查方法包括以下详细资讯:透过二次研究确定市场中的主要企业,并透过初步和二次研究确定每个地区的市场占有率。整个过程包括研究主要企业的年度和财务报告以及广泛的采访,以获得执行长、副总裁、董事和行销负责人等行业领导者的重要见解。所有股份比率和细分均使用二手资讯确定并使用主要资讯检验。考虑到本研究涵盖的所有可能影响市场的参数,都进行了广泛而详细的研究,透过初步研究检验并进行分析,以获得最终的定量和定性资料。

全球自主船舶细分市场分析

全球自主船舶市场根据最终用途、解决方案、自主程度和地区进行细分。根据解决方案,市场分为系统、软体和结构。依自治程度划分,市场分为半自动和完全自治。依地区划分,分为北美、欧洲、亚太地区、中东/非洲、拉丁美洲。

全球自主船舶市场的驱动因素

推动这一成长的市场驱动因素之一是自主船舶提高业务效率并降低航运公司成本的潜力。透过消除对船上船员的需求,自主船舶可以全年 365 天、每天 24 小时运行,从而提高生产率并降低人事费用。此外,自主船舶可以透过即时资料分析和预测演算法优化航线、速度和货物装卸流程,进一步提高效率并降低燃料消费量。随着航运公司寻找简化业务和提高盈利的方法,自主船舶为实现这些目标提供了一个有吸引力的解决方案。

全球自主船舶市场的限制因素

然而,儘管前景广阔,全球自主船舶市场仍面临一些限制和挑战。一个主要的阻碍因素是围绕自主船舶部署的监管和法律障碍。航运业受到一套复杂的国际法规和条约的管辖,这些法规和条约主要是针对有人驾驶的船舶而设计的。因此,为了确保自主船舶安全、负责任地运行,有许多法律和责任问题需要解决,包括发生事故时的责任、遵守国际海事法以及网路安全问题。普及这些监管障碍并获得监管机构的广泛接受对于自主船舶的广泛采用至关重要。

全球自主船舶市场趋势

就趋势而言,塑造全球自主船舶市场的显着趋势之一是对远端监控系统的日益关注。虽然完全自主船舶可能仍处于开发和采用的早期阶段,但许多航运公司正在探索半自动解决方案,允许驻扎在岸上的操作人员进行远端控制和监控。这些远端监控系统利用卫星通讯、物联网感测器和人工智慧等先进连接技术,实现对船舶性能、导航和安全系统的即时监控。这一趋势不仅提高了营运效率和安全性,还解决了船员社会福利问题并减少了对船上人员的需求,特别是在危险或远端操作环境中。

目录

  • 执行摘要
  • 调查方法
  • 母市场分析
  • 主要市场考察
    • 技术分析
    • 价格分析
    • 供应链分析
    • 价值链分析
    • 市场生态系统
    • 智慧财产权分析
    • 贸易分析
    • Start-Ups分析
    • 原料分析
    • 创新矩阵
    • 研发线产品分析
    • 总体经济指标
    • 主要投资分析
    • 关键成功因素
    • 竞争程度
  • 市场动态及展望
    • 市场动态
      • 促进因素
      • 机会
      • 抑制因素
      • 任务
    • 监管形势
    • 波特的分析
    • 对未来中断的特殊考虑
  • 自主船舶的全球市场:依自主层级划分
    • 市场概况
    • 半自动与全自主
  • 全球自主船舶市场:依最终用途分类
    • 市场概况
    • 商业和军事
  • 全球自主船舶市场规模:按地区划分
    • 市场概况
    • 北美洲
      • 美国
      • 加拿大
    • 欧洲
      • 德国
      • 西班牙
      • 法国
      • 英国
      • 其他欧洲国家地区
    • 亚太地区
      • 中国
      • 印度
      • 日本
      • 韩国
      • 其他亚太地区
    • 拉丁美洲
      • 巴西
      • 其他拉丁美洲地区
    • 中东和非洲 (MEA)
      • 海湾合作委员会国家
      • 南非
      • 其他中东/非洲地区
  • 竞争形势
    • 前5名企业对比
    • 主要企业市场定位(2021年)
    • 主要市场参与者所采取的策略
    • 关键成功策略
    • 近期市集活动
    • 主要企业市场占有率(2021年)
  • 主要企业简介
    • Kongsberg Gruppen(Norway)
    • Rolls-Royce Holdings PLC(United Kingdom)
    • Wartsila Corporation(Finland)
    • ABB Ltd.(Switzerland)
    • ASV Global(United Kingdom)
    • Sea Machines Robotics, Inc.(United States)
    • Yara International ASA(Norway)
    • Mitsui OSK Lines, Ltd.(Japan)
    • Høglund Marine Solutions(Norway)
    • Honeywell International Inc.(United States)
    • Wartsila SAM Electronics GmbH(Germany)
    • General Electric Company(United States)
    • L3 Harris Technologies, Inc.(United States)
    • AP Moller-Maersk Group(Denmark)
    • NYK Line(Nippon Yusen Kabushiki Kaisha)(Japan)
    • DNV GL AS(Norway)
    • Northrop Grumman Corporation(United States)
    • Kymeta Corporation(United States)
    • Cargotec Corporation(Finland)
    • BAE Systems plc(United Kingdom)
    • Maritime Robotics AS(Norway)
    • Ulstein Group(Norway)
简介目录
Product Code: SQMIG20G2014

Global Autonomous Ships Market size was valued at USD 8.84 Billion in 2022 and is expected to grow from USD 10.04 Billion in 2023 to reach USD 27.85 Billion by 2031, at a CAGR of 13.60% during the forecast period (2024-2031).

The global autonomous ships market has witnessed significant growth in recent years, driven by advancements in technology, increasing demand for efficient maritime transportation, and the growing emphasis on reducing carbon emissions. Autonomous ships, also known as unmanned vessels or crewless ships, represent a paradigm shift in the maritime industry, offering benefits such as enhanced safety, reduced operating costs, and improved efficiency. One of the key drivers behind the growth of the autonomous ships market is the rising adoption of automation and digitalization in the shipping industry. Advancements in sensor technology, artificial intelligence, and data analytics have enabled the development of sophisticated autonomous systems capable of navigating ships without human intervention. These systems can effectively detect and avoid obstacles, optimize routes, and make real-time decisions to ensure safe and efficient operations. Moreover, the increasing focus on sustainability and environmental regulations has prompted shipping companies to explore autonomous technologies as a means of reducing fuel consumption and greenhouse gas emissions. By leveraging autonomous navigation systems, companies can optimize vessel performance, minimize idle time, and choose more fuel-efficient routes, thereby contributing to a greener and more sustainable maritime sector. Furthermore, the autonomous ships market is witnessing significant investments from governments, industry players, and technology companies. These investments are aimed at research and development initiatives to enhance the capabilities of autonomous vessels, address regulatory challenges, and ensure compliance with international maritime standards. However, despite the promising growth prospects, the widespread adoption of autonomous ships faces several challenges, including regulatory hurdles, concerns over cybersecurity, and the need for robust infrastructure to support autonomous operations. Additionally, there are ongoing debates surrounding the ethical and legal implications of unmanned vessels, particularly regarding accountability and liability in the event of accidents or incidents at sea.

Top-down and bottom-up approaches were used to estimate and validate the size of the Global Autonomous Ships Market and to estimate the size of various other dependent submarkets. The research methodology used to estimate the market size includes the following details: The key players in the market were identified through secondary research, and their market shares in the respective regions were determined through primary and secondary research. This entire procedure includes the study of the annual and financial reports of the top market players and extensive interviews for key insights from industry leaders such as CEOs, VPs, directors, and marketing executives. All percentage shares split, and breakdowns were determined using secondary sources and verified through Primary sources. All possible parameters that affect the markets covered in this research study have been accounted for, viewed in extensive detail, verified through primary research, and analyzed to get the final quantitative and qualitative data.

Global Autonomous Ships Market Segmental Analysis

Global Autonomous Ships Market is segmented on the basis of end use, solutions, autonomy level and region. By solutions, the market is segmented into systems & software and structure. By end use, the market is segmented into commercial, military. by autonomy level, the market is segmented into semi-autonomous and fully autonomous. By region, the market is segmented into North America, Europe, Asia Pacific, Middle East and Africa, and Latin America.

Drivers of the Global Autonomous Ships Market

One key market driver propelling this growth is the potential for autonomous ships to improve operational efficiency and reduce costs for shipping companies. By eliminating the need for onboard crews, autonomous ships can operate 24/7 without rest periods, leading to increased productivity and lower labor costs. Additionally, autonomous vessels can optimize routes, speed, and cargo handling processes through real-time data analytics and predictive algorithms, further enhancing efficiency and reducing fuel consumption. As shipping companies seek ways to streamline operations and improve profitability, the adoption of autonomous ships presents a compelling solution to meet these objectives.

Restraints in the Global Autonomous Ships Market

However, despite the promising outlook, the global autonomous ships market faces several restraints and challenges. One significant restraint is the regulatory and legal hurdles surrounding the deployment of autonomous vessels. The maritime industry is governed by a complex web of international regulations and conventions, which were primarily designed with manned ships in mind. As such, there are numerous legal and liability issues that need to be addressed to ensure the safe and responsible operation of autonomous ships, including liability in case of accidents, compliance with international maritime laws, and cybersecurity concerns. Overcoming these regulatory barriers and gaining widespread acceptance from regulatory bodies will be critical for the widespread adoption of autonomous ships.

Market Trends of the Global Autonomous Ships Market

In terms of trends, one notable trend shaping the global autonomous ships market is the increasing focus on remote monitoring and control systems. While fully autonomous vessels may still be in the early stages of development and adoption, many shipping companies are exploring semi-autonomous solutions that allow for remote operation and oversight by human operators stationed onshore. These remote monitoring and control systems leverage advanced connectivity technologies such as satellite communication, IoT sensors, and artificial intelligence to enable real-time monitoring of vessel performance, navigation, and safety systems. This trend not only enhances operational efficiency and safety but also addresses concerns about crew welfare and reduces the need for onboard personnel, particularly in hazardous or remote operating environments.

Table of Contents

  • Executive Summary
    • Market Overview
    • Wheel of Fortune
  • Research Methodology
    • Information Procurement
    • Secondary & Primary Data Sources
    • Market Size Estimation
    • Market Assumptions & Limitations
  • Parent Market Analysis
    • Market Overview
    • Market Size
    • Market Dynamics
      • Drivers
      • Opportunities
      • Restraints
      • Challenges
  • Key Market Insights
    • Technology Analysis
    • Pricing Analysis
    • Supply Chain Analysis
    • Value Chain Analysis
    • Ecosystem of the Market
    • IP Analysis
    • Trade Analysis
    • Startup Analysis
    • Raw Material Analysis
    • Innovation Matrix
    • Pipeline Product Analysis
    • Macroeconomic Indicators
    • Top Investment Analysis
    • Key Success Factor
    • Degree of Competition
  • Market Dynamics & Outlook
    • Market Dynamics
      • Drivers
      • Opportunities
      • Restraints
      • Challenges
    • Regulatory Landscape
    • Porters Analysis
      • Competitive rivalry
      • Threat of Substitute Products
      • Bargaining Power of Buyers
      • Threat of New Entrants
      • Bargaining Power of Suppliers
    • Skyquest Special Insights on Future Disruptions
      • Political Impact
      • Economic Impact
      • Social Impact
      • Technical Impact
      • Environmental Impact
      • Legal Impact
  • Global Autonomous Ships Market by Autonomy Level
    • Market Overview
    • Semi-Autonomous and Fully Autonomous
  • Global Autonomous Ships Market by End Use
    • Market Overview
    • Commercial and Military
  • Global Autonomous Ships Market Size by Region
    • Market Overview
    • North America
      • USA
      • Canada
    • Europe
      • Germany
      • Spain
      • France
      • UK
      • Rest of Europe
    • Asia Pacific
      • China
      • India
      • Japan
      • South Korea
      • Rest of Asia-Pacific
    • Latin America
      • Brazil
      • Rest of Latin America
    • Middle East & Africa (MEA)
      • GCC Countries
      • South Africa
      • Rest of MEA
  • Competitive Landscape
    • Top 5 Player Comparison
    • Market Positioning of Key Players, 2021
    • Strategies Adopted by Key Market Players
    • Top Winning Strategies
      • By Development
      • By Company
      • By Year
    • Recent Activities in the Market
    • Key Companies Market Share (%), 2021
  • Key Company Profiles
    • Kongsberg Gruppen (Norway)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Rolls-Royce Holdings PLC (United Kingdom)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Wartsila Corporation (Finland)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • ABB Ltd. (Switzerland)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • ASV Global (United Kingdom)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Sea Machines Robotics, Inc. (United States)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Yara International ASA (Norway)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Mitsui O.S.K. Lines, Ltd. (Japan)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Høglund Marine Solutions (Norway)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Honeywell International Inc. (United States)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Wartsila SAM Electronics GmbH (Germany)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • General Electric Company (United States)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • L3 Harris Technologies, Inc. (United States)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • A.P. Moller-Maersk Group (Denmark)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • NYK Line (Nippon Yusen Kabushiki Kaisha) (Japan)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • DNV GL AS (Norway)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Northrop Grumman Corporation (United States)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Kymeta Corporation (United States)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Cargotec Corporation (Finland)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • BAE Systems plc (United Kingdom)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Maritime Robotics AS (Norway)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments
    • Ulstein Group (Norway)
      • Company Overview
      • Business Segment Overview
      • Financial Updates
      • Key Developments