Airborne collision avoidance system is a type of ground based collision avoidance technology which operates independently. The system warns the pilot when there is presence of another aircraft nearby. In case of the risk of collision, the system also tries to maneuver the aircraft to reduce the risk. The market is expected to grow significantly during the forecast period.
There are several factors aiding to the demand of military airborne collision avoidance systems globally. The ongoing technological innovations have resulted in the development of surveillance drones and multi-rotor aircrafts in order to get real time visual inputs from the sky. However, these aircrafts need to be flown safely and maintain safe distance from commercial aircrafts. The military airborne collision avoidance systems help in controlling the unmanned drones from mid air collisions. Furthermore, the systems also ensure that the unmanned aircrafts are not flown in close proximity to the other aircraft. Mid air collision is a serious situation for any military aircrafts and these airborne collision avoidance systems ensure that these situations do not arise. Hence the ongoing demand for unmanned aerial vehicles is further expected to drive the demand for airborne collision avoidance systems for defense applications. Moreover, the military airborne collision systems are further enhanced with additional sensors and more automated in order reduce the pilot’s responsibility as military aircrafts fly at much faster speeds and close proximities. Hence, these airborne collision systems are better suited for defense applications. These factors are driving the demand for military airborne collision avoidance systems globally.
However, there are certain restraints which are hindering the demand for these systems. These airborne collision avoidance systems operate through a deterministic model. In case of manned aircraft, the pilot might not behave by the logic assumed by the collision avoidance system. This can further lead to collision. This is one factor which is unavoidable and hindering the demand for these systems to a certain extent. Moreover, the use of military airborne collision system involves high investment cost which is not preferable for developing regions such as Africa and Asia Pacific. These factors are lowering the demand for these systems. Nevertheless, ongoing research in the field of defense is expected to result into the development of advanced airborne collision avoidance system which will be capable of taking decision based on the pilot’s flying behavior.
The global airborne collision avoidance systems market can be segmented by types and region. By types the market can be segregated into TCAS, RADAR, PCAS, GPWS, FLARM,TAWS and Synthetic Vision among others. By geography, the global market has been segregated into five strategic locations which include North America, Europe, Asia Pacific, Middle East and Africa and Latin America. North American region is expected to witness promising growth owning to the increasing adoption of military drones a for surveillance applications. Furthermore, the region includes countries such as the U.S. and Canada who invest heavily in maintaining their defense capabilities. Hence the region is expected to dominate the market during the forecast period. Europe is expected to follow North America in terms of revenue market share. European region includes countries like the U.K., Germany and France who are upgrading their surveillance capability based on the rising terrorist activities in this region. Going further, Asia Pacific region is expected to have the third largest market as the region has countries like India which do not have the budget to incorporate these advance airborne collision avoidance systems. However, the rising economic condition in countries such as India and China is expected to drive the demand significantly in future.
The leading players in the global military airborne collision avoidance systems include Honeywell Aerospace, Rockwell Collins, Aviation Communication & Surveillance Systems, SAAB, Airbus, Indra Sistemas, Diehl, Selex ES, Alenia Aermacchi and Sagem among others.
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