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Commercial Aircraft Avionics Systems Market Segmentation, Application, Trends, Opportunity & Forecast 2018 to 2021

 

Pune, India -- (SBWIRE) -- 01/24/2018 -- Market Highlights:

Avionics are the electronics system used for communication, navigation, and various other flight critical applications in an aircraft. Avionics are one of the most expensive and highly critical component in the modern aircraft. Modern avionics system also aid in improved navigation and routing, provide enhanced situational awareness to pilots, and improve ATM process.

With the growth in acceptance and utilization of avionics system such as the SVS for aviation applications, the regulatory scenario has also improved. In 2013, the FAA proposed a new rule that would allow suitably equipped, trained operators to continue approaches below the current conventional minimum. It would motivate the Aviation industry and also make the installation of SVS far more worthwhile and less burdensome.

Such regulations accepting the utilization of SVS would allow more operators to enjoy the advantage of purchasing a new aircraft with SVS. It also encourages aircraft operators to negotiate for the inclusion of SVS for its fleet, as it allows commercial aircraft operators flying SVS-equipped aircraft to dispatch and depart even if visibility is below authorized minimums. Such benefits may stimulate the retrofit market and give new incentives to manufacturers to offer competitive products, and accelerate the adoption of new technologies into a wider segment of aircraft fleet.

Moreover, SVS helps create navigational capability that simplifies the gate-to-gate operation of an aircraft by minimizing the impact of weather. If pilots have such technology onboard the aircraft, instrument procedures can be simplified, and airports would operate with fewer delays, even as air traffic grows. Advanced vision capabilities through SVS not only provide cost-saving solutions to aircraft operators, but also help increase access, efficiency, and throughput at many airports when low visibility is a limiting factor.

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The Leading Market Players in the global Commercial Aircraft Avionics Systems Market primarily include Cobham, Honeywell, Panasonic Avionics, Rockwell Collins, Thales, Curtiss-Wright, Elbit Systems, Garmin, GE Aviation, L-3 Communications, Universal Avionics System, and Zodiac Aerospace.

Industry/ Innovation/ Related News:

January, 2018:- Cascade Aerospace signed a contract with the Mexican Air Force, to modernise avionics on a C-130 Hercules aircraft with a Flight2 digital avionics suite, developed by Rockwell Collins.

December, 2017:- PZL company, a Poland-based company signed a contract with the Polish Ministry of Defence, to modernise a dozen PZL-130 Orlik trainer aircraft, with improved avionics and new wings.

Commercial Aircraft Avionics Systems Market – Competitive Analysis

The Commercial Aircraft Avionics System Industry is a lucrative industry providing a healthy profit margin. Thus, many OEMs are attracted to this market and provide systems as well as integrated services to attract customers and capture the growing portion of this market.

The market is also highly competitive and vendors compete on the basis of cost, product quality, reliability, technological innovation, and market share. To survive and succeed in such an intensely competitive environment, it is crucial for vendors to provide cost-effective and high-quality commercial aircraft avionics system.

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Regional Analysis

Europe and the Middle East are driving the growth of the market in the EMEA region. Europe is one of the largest aviation markets worldwide and has adopted next generation air transport modernization program such as SESAR. In 2014, SESAR launched a flight demonstration project for augmented approaches, and the SESAR JU formed a new consortium as a part of this program. The consortium, called A3, intends to perform more than 200 demonstration flights at airports across Europe to validate the new approach and landing technologies. A3 also wants to develop new approach and landing solutions based on five different technologies, including SVGS. The other four are curved RNP paths, GBAS, SBAS, and EFVS. This will increase air traffic throughput while also reducing aircraft emissions and noise. The program is being executed in cooperation with companies such as Honeywell and Elbit Systems (supply avionics and SVS), Dassault Aviation, and Airbus (to provide airframe manufacturing and aircraft systems support). It also includes participation from airlines such as Lufthansa and Swiss International Air Lines and the Perigueux, Bergerac, Bordeaux, Ostrava, Bremen, Frankfurt and Zurich airports.

Israel is one of the leading markets for aircraft avionics technology in the Middle East. Israel-based Elbit Systems has been involved in major SVS R&D and product development. Elbit Systems, in cooperation with the Norwegian company Nicarnica Aviation, has been working to integrate volcanic ash cloud detector system data into the cockpit's enhanced vision display. UK-based EasyJet airline is also participating in this program and expects to install the production version of the integrated system in its aircraft in 2015. Airbus is one of the partners involved in the program and plans to integrate such displays with the main avionics in the aircraft. Such developments will enable airlines to fly in low-visibility atmospheric conditions, such as the one after the eruption of Icelandic volcano Eyjafjallajökull in 2010. Many aircraft across Europe were grounded during the incident because of low visibility.

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