The global flight inspection market should witness a substantial growth owing to the increasing prominence for ensuring integrity of airway inspection procedures and instrumentation. Air transportation has become safer due to the evaluation of electronic signals which are transmitted by a number of navigational systems. Recent developments in aircraft radar systems and navigational aids should propel the market outlook.
Increasing popularity of autonomous aircrafts and drone technology for inspection should further accelerate the market outlook over the forecast time span. Unmanned Aerial Vehicles (UAVs) are providing accurate outcomes with significant ease due to their compact size, offering a better outlook for the expansion of industry. These vehicles provide real time data owing to the plethora of systems installed in them, which further enables pilots to work in extreme conditions.
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By system, the Instrument Landing System segment should witness significant growth over the forthcoming years, primarily pertaining to the improved accuracy and lower installation cost of the new systems. Numerous airports worldwide are installing new systems, replacing their older ILS capabilities, to enhance the guidance for aircraft landing.
The newly developed systems boast of high-performance antennas which provide guidance to aircrafts even when installed at a low height. In November 2017, convinced by the system’s capabilities, India’s Chennai International Airport replaced its traditional ILS for the 07 runway with latest ILS built by Indra Navia AS. Leveraging these abilities, the ILS segment is projected to drive the global flight inspection market outlook further.
The end user segment of defense airports is anticipated to witness a substantial growth and boost the global flight inspection market share owing to increasing defense expenditures and growing geopolitical concerns across the world. The integration of advanced radars as well as navigational aids in military airport runways to support improved airfield operations will further offer an impetus to flight inspection industry trends over the forecast time span.
Additionally, regular airfield obstacle evaluations and airborne inspections carried out to validate the electronic signals on army airports are among one of the prime reasons driving the defense airport segment and propel the global flight inspection industry growth further.
Europe is slated to emerge as a significant driving force behind the global flight inspection market expansion during the forecast time period. Rapid technological advancements across Europe in inspection techniques for further enhancing efficiency as well as reducing inspection time should drive the flight inspection market in the region.
Furthermore, the growing usage of drone technology for inspection of flight pertaining to improved flexibility with the multiple angular coverage are further driving the global flight inspection market trends. In April of 2019, PAPI systems inspections and calibrations was done by CANARD drones at Charles de Gaulle Airport in France based on the requirements of airport authority.
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Some of the prominent players contributing in the market share are Norwegian Special Mission, Safran, Airfield Technology, Inc., Aerodata, Bombardier, Cobham plc, Saab AB, ENAV and Textron Inc. According to the latest research report presented by Global Market Insights, Inc., the global flight inspection market size is expected to surpass total valuation of $1.8 billion by 2025.
Table of Contents (ToC) of the report:
Chapter 1. Methodology and Scope
1.1.1. Initial data exploration
1.1.2. Statistical model and forecast
1.1.3. Industry insights and validation
1.1.4. Scope, definition & forecast parameters
1.2. Data Sources
Chapter 2. Executive Summary
2.1. Flight inspection industry 3600 synopsis, 2013 – 2025
2.1.1. Business trends
2.1.2. Solution trends
2.1.3. System trends
2.1.4. End-User trends
2.1.5. Regional trends
Chapter 3. Flight Inspection Industry Insights
3.1. Industry segmentation
3.2. Industry landscape, 2013 - 2025
3.3. Industry ecosystem analysis
3.3.1. Component suppliers
3.3.2. Service providers
3.3.3. Profit margin trends
3.3.4. Distribution analysis
3.3.5. Vendor matrix
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