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Global Fog Detectors Market Forecasts from 2023 to 2028

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    Report

  • 143 Pages
  • November 2023
  • Region: Global
  • Knowledge Sourcing Intelligence LLP
  • ID: 5913084

The global fog detectors market was valued at US$2.987 billion in 2021.

Devices that detect the features of the environment and the presence of fog or mist are called fog detectors. Various sensors and technologies are combined into the devices to measure variables like visibility, fog density, and distribution of particle sizes. These detectors are essential for improving security, safety, and operational effectiveness in fields and use where fog can present significant difficulties. Since they offer real-time information regarding the presence of fog, fog detectors are frequently used in the maritime, aviation, and road transportation industries. The operators can plan their flight preparation and landing, navigation, and traffic management with the use of this data.

Rising foggy conditions and increasing government regulations

The danger of accidents and risks in numerous industries rises as a result of the drastically reduced visibility caused by fog. Fog detection systems are increasingly being used as a way to protect people, property, and business operations. Accurate and fast information on foggy conditions is crucial for sectors including aviation, transportation, and manufacturing. These industries can take preventative action and lessen the negative effects of decreased visibility on their operations thanks to fog detectors. Further, to reduce the hazards involved with accidents caused by fog, governments all over the world are putting in place strict laws and safety standards which are increasing the global fog detectors market.

Rising technological advancements

Fog detectors are becoming more accurate and reliable thanks to ongoing developments in sensor technologies like LiDAR and infrared sensors. These developments have improved the functionality and effectiveness of fog detection systems. Moreover, due to shifting climatic trends, more fog-related incidents are occurring in several places. To lessen the inconveniences brought on by foggy conditions, this has increased the need for fog-detecting devices in foggy locations.

High investment and limited awareness

Fog-detecting systems have significant installation and maintenance expenses, particularly for small and medium-sized businesses. For some organizations, the hefty initial cost serves as a barrier to adoption. The advantages and uses of fog-detecting devices are largely unknown to many sectors and organizations. A barrier to market expansion is a lack of understanding of the technology and its possible effects on operations and safety. Further, technical issues with current fog detection systems could include false alarms or a challenge in effectively identifying fog in specific weather conditions. These restrictions may reduce the systems' dependability and efficiency, which may impede the global fog detectors market size.

Integration and management challenges

It is difficult and time-consuming to integrate fog-detecting systems with current systems and infrastructure. Fog detection solutions implementation can be difficult for organizations, especially those with outdated systems. For maximum operation, fog detection devices need to be calibrated and maintained regularly. Some organizations, especially those with low resources, may be constrained by the expenses and labor required for upkeep.

Rising collaboration and application diversification

Fog detector manufacturers, sensor technology suppliers, and industry stakeholders can work together to develop specialized applications and solutions. Partnerships can aid in addressing particular industrial needs and extending the market for fog detection systems. Fog detection systems promise unexplored markets in developing nations with major fog-related problems. Fog detector usage presents chances to improve safety precautions and operational effectiveness due to the expanding industrial sectors in these areas. Fog-detecting systems may have uses outside of conventional industries. Fog detection system makers may find new markets opened up by emerging uses in industries including agriculture, sporting events, and outdoor enjoyment.

Rising demand for real-time monitoring

The global fog detectors market share is expanding as the demand for sophisticated fog detection systems is being driven by the necessity for real-time fog monitoring. Organisations can move quickly and make wise decisions using real-time data to maintain operational continuity and safety. Further, many cloud and loT platforms are integrating fog detectors to enable smooth data gathering, analysis, and storage. Through this interface, stakeholders can remotely access real-time fog data and support data-driven decision-making.

Increasing adoption of wireless communication and data analytics

A large amount of data is produced by fog detection systems about atmospheric characteristics and foggy conditions. Utilizing cutting-edge data analytics techniques enables businesses to uncover insightful patterns and trends that increase operational effectiveness and safety measures. Fog detection systems are incorporating wireless communication technologies like Wi-Fi and cellular networks for seamless connectivity and data transmission. Wireless communication makes it possible for remote monitoring and real-time notifications, increasing the overall efficiency of fog detection devices.

North America is projected to have the highest share of the global fog detectors market

The North American region is anticipated to lead the global fog detectors market during the projected period. Strict safety laws and an increased emphasis on transport safety are responsible for the region's growth. The region also has a strong infrastructure and a high acceptance rate for cutting-edge technologies, which are expected to drive the market's expansion. Furthermore, the market is anticipated to expand profitably in the upcoming years due to the existence of significant competitors and their R&D initiatives.

Market Key Developments

  • In March 2022, February 2023, The Boreas fiber-optic gyroscope internal navigation system (INS) was introduced by Advanced Navigation. It is a strategic-grade, ultra-high accuracy INS that offers reductions in size, weight, power, and price. The new DFOG (digital fiber-optic gyroscope) technology from Advanced Navigation, which is the result of 25 years of development involving two research universities, is based on the first item to be made available, called Boreas.
  • In October 2021, In June 2021, to help places, keep their oil and gas, petrochemical, biological and other workers and industrial sites safe, Honeywell announced the release of two new Bluetooth®*-connected gas detectors. These devices can deliver continuous monitoring for hazardous gases even in fog, rain, snow, and other adverse weather conditions. The updated Honeywell Searchline ExcelTM Plus and Searchline ExcelTM Edges are the upcoming generations of open-path gas sensors, enabling them to operate at greater distances and in less favorable visibility than earlier versions. They do this with the aid of cutting-edge optics and extremely effective infrared technology.

Segmentation:

By Technology

  • LIDAR Based
  • Infrared Based
  • Ultrasonic Based
  • Microwave Based
  • Others

By Application

  • Aviation
  • Transport and Logistics
  • Industrial Facilities
  • Public Safety
  • Others

By End-User Industry

  • Aerospace
  • Transportation
  • Manufacturing and Warehouse
  • Oil and Gas
  • Others

By Geography

  • North America
  • United States
  • Canada
  • Mexico
  • South America
  • Brazil
  • Argentina
  • Others
  • Europe
  • United Kingdom
  • Germany
  • France
  • Spain
  • Others
  • Middle East and Africa
  • Saudi Arabia
  • UAE
  • Israel
  • Others
  • Asia Pacific
  • China
  • Japan
  • India
  • South Korea
  • Indonesia
  • Thailand
  • 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
2. RESEARCH METHODOLOGY
2.1. Research Data
2.2. Assumptions
3. EXECUTIVE SUMMARY
3.1. Research Highlights
4. MARKET DYNAMICS
4.1. Market Drivers
4.2. Market Restraints
4.3. Porter’s Five Force 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
5. GLOBAL FOG DETECTORS MARKET, BY TECHNOLOGY
5.1. Introduction
5.2. LIDAR Based
5.3. Infrared Based
5.4. Ultrasonic Based
5.5. Microwave Based
5.6. Others
6. GLOBAL FOG DETECTORS MARKET, BY APPLICATION
6.1. Introduction
6.2. Aviation
6.3. Transport and Logistics
6.4. Industrial Facilitues
6.5. Public Safety
6.6. Others
7. GLOBAL FOG DETECTORS MARKET, BY END-USE INDUSTRY
7.1. Introduction
7.2. Aerospace
7.3. Transportation
7.4. Manufacturing and Warehouse
7.5. Oil and Gas
7.6. Others
8. GLOBAL FOG DETECTORS MARKET, BY GEOGRAPHY
8.1. Introduction
8.2. North America
8.2.1. USA
8.2.2. Canada
8.2.3. Mexico
8.3. South America
8.3.1. Brazil
8.3.2. Argentina
8.3.3. Others
8.4. Europe
8.4.1. Germany
8.4.2. France
8.4.3. United Kingdom
8.4.4. Spain
8.4.5. Others
8.5. Middle East And Africa
8.5.1. Saudi Arabia
8.5.2. UAE
8.5.3. Israel
8.5.4. Others
8.6. Asia Pacific
8.6.1. China
8.6.2. Japan
8.6.3. India
8.6.4. South Korea
8.6.5. Indonesia
8.6.6. Taiwan
8.6.7. 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. Vendor Competitiveness Matrix
10. COMPANY PROFILES
10.1. Dräger
10.2. Sabik Marine (Carmanah)
10.3. Orga
10.4. Sice Srl
10.5. Xylem (Tideland)
10.6. Pharos Marine Automatic Power
10.7. Lufft
10.8. Rokem Group
10.9. Belfort Instrument

Companies Mentioned

  • Dräger
  • Sabik Marine (Carmanah)
  • Orga
  • Sice Srl
  • Xylem (Tideland)
  • Pharos Marine Automatic Power
  • Lufft
  • Rokem Group
  • Belfort Instrument

Methodology

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