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市场调查报告书
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1627879

全球光纤感测器市场:未来预测(2025-2030 年)

Fiber Optics Sensor Market - Forecasts from 2025 to 2030

出版日期: | 出版商: Knowledge Sourcing Intelligence | 英文 140 Pages | 商品交期: 最快1-2个工作天内

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简介目录

光纤感测器市场预计将从 2025 年的 3,331,998 亿美元成长到 2030 年的 4,892,574 亿美元,复合年增长率为 7.99%。

光纤感测器是一种自动执行各种重要测量的技术。需求的快速成长是由于它们在航太和能源应用的结构安全监控中的应用越来越广泛。随着研究和开发的不断深入,其独特的能力已引发多次商业性演示。

例如,2024 年 10 月,光学和数位解决方案公司 STL 在其光纤感测 (FOS) 技术方面实现了显着的成本和性能改进。 STL 的 FOS 解决方案目前在 Nvidia Jetson 系列模组上嵌入了先进的 AI 模型,以在光纤感测方面提供最佳化的效能。 STL 平台是经过验证的 FOS AI/ML 堆栈,拥有数百万小时的训练经验。这些最近的人工智慧应用很可能成为未来光纤感测器应用推动的先兆。

此外,根据世界综合贸易解决方案(WITS)的数据,2023年,欧盟将成为光辐射使用机械设备的最大进口国,进口额为22572.2037亿美元,其次是中国,进口额为20085.2968亿美元,美国为16374.8625亿美元。

光纤感测器市场驱动因素

  • 网路使用者数量不断增加

随着全球网路使用者数量的增加,光纤感测器在资讯和通讯技术领域的应用不断扩大。这些感测器可应用于汇流排操作,并提供多种优势,因为最多可将 16 个装置连接到汇流排系统。

根据通讯(ITU)的预测,全球离线人口将稳定下降,到2023年将达到26亿。 2022年网路用户总数将达51亿,占世界人口的64%,2023年将上升至54亿,占67%。网路用户数量的成长可能会产生对光纤感测器的需求。

光纤感测器市场的地理展望

  • 美国在北美占据光纤感测器市场的大部分份额。

美国光纤感测器市场的成长受到几个关键因素的推动,使该公司成为该技术领域的领导者。这一成长轨迹主要受到各行各业对先进感测技术日益增长的需求的推动,尤其是石油和天然气、土木工程和安全与安保行业。

石油和天然气行业对这一市场扩张做出了重大贡献,并由于光纤感测器的关键应用(例如管道监控、洩漏检测和即时资料收集以提高业务效率)占据了最大的收益占有率。分散式光纤感测器(DFOS)在传统感测器可能失效的环境中具有吸引力,因为它们能够远距连续监控而不受电磁干扰的影响。根据 energy.gov 的数据,石油、天然气和煤炭提供了美国 80% 的能源。此外,国际能源总署表示,石油和天然气产业将成为成长最快的产业,预计到 2023 年,该产业规模将成长 11%,达到 5,280 亿美元,而 2022 年这一数字为 4,740 亿美元。

技术进步在市场成长中也扮演着至关重要的角色。基于瑞利和拉曼效应的感测技术等创新技术由于能够沿着光纤长度同时测量多个参数而得到越来越广泛的应用,从而使其对于从结构健康监测到环境监测的广泛应用具有重要价值。这些技术与现有基础设施的整合得到了监管合规要求的支持,而监管合规要求需要准确、可靠的资料收集,从而进一步推动市场扩张。

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它有什么用途?

产业与市场洞察、商业机会评估、产品需求预测、打入市场策略、地理扩张、资本支出决策、法律规范与影响、新产品开发、竞争影响

分析范围

  • 历史资料与预测(2022-2030)
  • 成长机会、挑战、供应链前景、法规结构、顾客行为、趋势分析
  • 竞争对手定位、策略与市场占有率分析
  • 按部门和地区(国家)分類的收益成长和预测分析
  • 公司简介(策略、产品、财务资讯、主要趋势等)

光纤感测器市场细分与分析如下:

按类型

  • 内建光纤感测器
  • 外接式光纤感测器

按应用

  • 化学感测器
  • 物理感测器
  • 生物医学感测器

按行业

  • 医疗
  • 石油和天然气
  • 国防与航太
  • 资讯和通讯技术
  • 其他的

按地区

  • 北美洲
  • 美国
  • 加拿大
  • 墨西哥
  • 南美洲
  • 巴西
  • 阿根廷
  • 其他的
  • 欧洲
  • 英国
  • 德国
  • 法国
  • 义大利
  • 西班牙
  • 其他的
  • 中东 中东和非洲
  • 沙乌地阿拉伯
  • UAE
  • 其他的
  • 亚太地区
  • 中国
  • 日本
  • 印度
  • 韩国
  • 澳洲
  • 印尼
  • 其他的

目录

第 1 章 简介

  • 市场概况
  • 市场定义
  • 分析范围
  • 市场区隔
  • 货币
  • 先决条件
  • 基准年和预测年时间表
  • 相关利益者的主要利益

第 2 章 分析方法

  • 分析设计
  • 分析过程

第三章执行摘要

  • 主要发现

第四章 市场动态

  • 市场驱动因素
  • 市场限制
  • 波特五力分析
  • 产业价值链分析
  • 分析师观点

第 5 章 光纤感测器市场按类型

  • 介绍
  • 内建光纤感测器
  • 外接式光纤感测器

第六章 光纤感测器市场(按应用)

  • 介绍
  • 化学感测器
  • 物理感测器
  • 生物医学感测器

第 7 章 光纤感测器市场(按行业)

  • 介绍
  • 医疗
  • 石油和天然气
  • 国防与航太
  • 资讯和通讯技术
  • 其他的

8. 光纤感测器市场(按地区)

  • 介绍
  • 北美洲
    • 按类型
    • 按应用
    • 按行业
    • 按国家
  • 南美洲
    • 按类型
    • 按应用
    • 按行业
    • 按国家
  • 欧洲
    • 按类型
    • 按应用
    • 按行业
    • 按国家
  • 中东和非洲
    • 按类型
    • 按应用
    • 按行业
    • 按国家
  • 亚太地区
    • 按类型
    • 按应用
    • 按行业
    • 按国家

第九章竞争格局及分析

  • 主要企业和策略分析
  • 市场占有率分析
  • 企业合併(M&A)、协议、商业合作
  • 竞争仪錶板

第十章 公司简介

  • Opsens Solutions
  • Omron Corporation
  • Banner Engineers Corp.
  • Hamamatsu Photonics KK
  • Broadcom Inc.
  • TE Connectivity
  • Panasonic Corporations
  • Takenaka Electronic Industrial Co., Ltd.
  • Specto Technology
  • Sick AG
简介目录
Product Code: KSI061611376

The fiber optics sensor market is predicted to expand at a CAGR of 7.99% to account for US$ 4,892.574 billion by 2030 from US$ 3,331.998 billion in 2025.

Fiber optic sensors represent a technology for automated measurement of different critical measurements. The surging demand is due to its increased utilization in structural health monitoring in civil, aerospace, and energy applications. With the increasing research and development, its unique capabilities have led to multiple commercial demonstrations.

For example, in October 2024, STL, an optical and digital solutions company, achieved a significant advancement in the cost and performance of Fibre Optic Sensing (FOS) technology. STL's FOS solution now embeds its advanced AI models in the Nvidia Jetson series modules, offering optimized performance in fibre optic sensing. STL's platform is a proven AI/ML stack for FOS with several million training hours. These recent AI applications would pioneer the future boost in the application of the fiber optics sensor.

Further, according to the World Integrated Trade Solution (WITS), the top importers of Instruments and apparatus using optical radiation are the European Union with an import amount of $2,257,220.37K, followed by China with $2,008,529.68K, and the United States $1,637,486.25K in 2023.

Fiber optics sensor market drivers

  • Rising number of internet users

The growing number of internet users worldwide has created the application of fiber optics sensors in Information Communication and technology. These sensors can be applied in bus operation, and up to 16 devices can be connected to a bus system, which has several benefits.

According to the International Telecommunication Union (ITU), the offline population steadily declined to 2.6 billion people in 2023. The total number of internet users in 2022 was 5.1 billion, which was 64% of the world population, and rose to 67% with 5.4 billion in 2023. The expansion of internet users will create a demand for fiber optic sensors.

Fiber optics sensor market Geographical outlooks

  • The United States in the North American region holds significant shares of the Fiber optics sensor market.

The fiber optic sensor market's growth in the United States is driven by several key factors, positioning it as a leader in this technology sector. This growth trajectory is largely attributed to the increasing demand for advanced sensing technologies across various industries, particularly in oil and gas, civil engineering, and safety and security.

The oil and gas industry has significantly contributed to this market expansion, accounting for the largest revenue share due to the critical applications of fiber optic sensors in pipeline monitoring, leak detection, and real-time data collection for operational efficiency. The ability of distributed fiber optic sensors (DFOS) to provide continuous monitoring over long distances without being affected by electromagnetic interference enhances their appeal in environments where traditional sensors may fail. According to energy.gov, oil, natural gas, and coal provide 80% of the American energy. Furthermore, according to the International Energy Agency, the oil and gas industry was the highest, resulting in an estimated increase of 11% in 2023 to USD 528 billion compared to USD 474 billion in 2022.

Technological advancements have also played a crucial role in the market's growth. Innovations such as Rayleigh and Raman effect-based sensing technologies are being increasingly adopted for their ability to measure multiple parameters simultaneously along the length of a fiber, making them invaluable for applications ranging from structural health monitoring to environmental surveillance. The integration of these technologies into existing infrastructure is supported by regulatory compliance requirements that necessitate accurate and reliable data collection, further driving market expansion.

Reasons for buying this report:-

  • Insightful Analysis: Gain detailed market insights covering major as well as emerging geographical regions, focusing on customer segments, government policies and socio-economic factors, consumer preferences, industry verticals, other sub- segments.
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  • Market Drivers & Future Trends: Explore the dynamic factors and pivotal market trends and how they will shape up future market developments.
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Industry and Market Insights, Opportunity Assessment, Product Demand Forecasting, Market Entry Strategy, Geographical Expansion, Capital Investment Decisions, Regulatory Framework & Implications, New Product Development, Competitive Intelligence

Report Coverage:

  • Historical data & forecasts from 2022 to 2030
  • Growth Opportunities, Challenges, Supply Chain Outlook, Regulatory Framework, Customer Behaviour, and Trend Analysis
  • Competitive Positioning, Strategies, and Market Share Analysis
  • Revenue Growth and Forecast Assessment of segments and regions including countries
  • Company Profiling (Strategies, Products, Financial Information, and Key Developments among others)

The Fiber optics sensor market is segmented and analysed as below:

By Type

  • Intrinsic Fiber-optic Sensor
  • Extrinsic Fiber-optic Sensor

By Application

  • Chemical Sensor
  • Physical Sensor
  • Bio-medical Sensor

By Industry Vertical

  • Healthcare
  • Oil and Gas
  • Defense and Aerospace
  • Information Communication and Technology
  • Others

By Geography

  • North America
  • USA
  • Canada
  • Mexico
  • South America
  • Brazil
  • Argentina
  • Others
  • Europe
  • United Kingdom
  • Germany
  • France
  • Italy
  • Spain
  • Others
  • Middle East and Africa
  • Saudi Arabia
  • UAE
  • Others
  • Asia Pacific
  • China
  • Japan
  • India
  • South Korea
  • Australia
  • Indonesia
  • Others

TABLE OF CONTENTS

1. INTRODUCTION

  • 1.1. Market Overview
  • 1.2. Market Definition
  • 1.3. Scope of the Study
  • 1.4. Market Segmentation
  • 1.5. Currency
  • 1.6. Assumptions
  • 1.7. Base and Forecast Years Timeline
  • 1.8. Key benefits for the stakeholders

2. RESEARCH METHODOLOGY

  • 2.1. Research Design
  • 2.2. Research Process

3. EXECUTIVE SUMMARY

  • 3.1. Key Findings

4. MARKET DYNAMICS

  • 4.1. Market Drivers
  • 4.2. Market Restraints
  • 4.3. Porter's Five Forces Analysis
    • 4.3.1. Bargaining Power of Suppliers
    • 4.3.2. Bargaining Power of Buyers
    • 4.3.3. Threat of New Entrants
    • 4.3.4. Threat of Substitutes
    • 4.3.5. Competitive Rivalry in the Industry
  • 4.4. Industry Value Chain Analysis
  • 4.5. Analyst View

5. FIBER OPTICS SENSOR MARKET BY TYPE

  • 5.1. Introduction
  • 5.2. Intrinsic Fiber-optic Sensor
  • 5.3. Extrinsic Fiber-optic Sensor

6. FIBER OPTICS SENSOR MARKET BY APPLICATION

  • 6.1. Introduction
  • 6.2. Chemical Sensor
  • 6.3. Physical Sensor
  • 6.4. Bio-medical Sensor

7. FIBER OPTICS SENSOR MARKET BY INDUSTRY VERTICAL

  • 7.1. Introduction
  • 7.2. Healthcare
  • 7.3. Oil and Gas
  • 7.4. Defence and Aerospace
  • 7.5. Information Communication and Technology
  • 7.6. Others

8. FIBER OPTICS SENSOR MARKET BY GEOGRAPHY

  • 8.1. Introduction
  • 8.2. North America
    • 8.2.1. By Type
    • 8.2.2. By Application
    • 8.2.3. By Industry Vertical
    • 8.2.4. By Country
      • 8.2.4.1. USA
      • 8.2.4.2. Canada
      • 8.2.4.3. Mexico
  • 8.3. South America
    • 8.3.1. By Type
    • 8.3.2. By Application
    • 8.3.3. By Industry Vertical
    • 8.3.4. By Country
      • 8.3.4.1. Brazil
      • 8.3.4.2. Argentina
      • 8.3.4.3. Others
  • 8.4. Europe
    • 8.4.1. By Type
    • 8.4.2. By Application
    • 8.4.3. By Industry Vertical
    • 8.4.4. By Country
      • 8.4.4.1. United Kingdom
      • 8.4.4.2. Germany
      • 8.4.4.3. France
      • 8.4.4.4. Italy
      • 8.4.4.5. Spain
      • 8.4.4.6. Others
  • 8.5. Middle East and Africa
    • 8.5.1. By Type
    • 8.5.2. By Application
    • 8.5.3. By Industry Vertical
    • 8.5.4. By Country
      • 8.5.4.1. Saudi Arabia
      • 8.5.4.2. UAE
      • 8.5.4.3. Others
  • 8.6. Asia Pacific
    • 8.6.1. By Type
    • 8.6.2. By Application
    • 8.6.3. By Industry Vertical
    • 8.6.4. By Country
      • 8.6.4.1. China
      • 8.6.4.2. Japan
      • 8.6.4.3. India
      • 8.6.4.4. South Korea
      • 8.6.4.5. Australia
      • 8.6.4.6. Indonesia
      • 8.6.4.7. Others

9. COMPETITIVE ENVIRONMENT AND ANALYSIS

  • 9.1. Major Players and Strategy Analysis
  • 9.2. Market Share Analysis
  • 9.3. Mergers, Acquisitions, Agreements, and Collaborations
  • 9.4. Competitive Dashboard

10. COMPANY PROFILES

  • 10.1. Opsens Solutions
  • 10.2. Omron Corporation
  • 10.3. Banner Engineers Corp.
  • 10.4. Hamamatsu Photonics K.K.
  • 10.5. Broadcom Inc.
  • 10.6. TE Connectivity
  • 10.7. Panasonic Corporations
  • 10.8. Takenaka Electronic Industrial Co., Ltd.
  • 10.9. Specto Technology
  • 10.10. Sick AG