1
Faculty of Electronic Warfare and Cyber Defense, Imam Hossein University, Iran
2
Imam Hussein University, Vice Chancellor for Research and Technology
3
Imam Hussein University, Faculty of ICT, Tehran, Iran
Abstract
Due to the heavy financial and human costs of fighter jets, today the defense and offensive doctrine of countries has turned to the use of remote-controlled drones (UAVs). UAVs in various classes of weight, dimensions and missions, by reducing financial and human costs as well as increasing stealth, have provided new capabilities to the military and increased their military capability in the field of reconnaissance (ISR) and combat. In addition to UAV reconnaissance and combat missions as a future priority of countries' military doctrine, the possibility of disrupting enemy radar and telecommunications systems is one of the goals of UAV electronic warfare. By using short-range and long-range radar and telecommunication interceptors, it is possible to reduce the performance of enemy systems and provide a secure air, land and sea corridor to support the combat of its own forces. In this regard, there are challenging factors in the design and construction of basic UAV disruptors as well as their integration on UAVs. . The output of this scenario includes probable near future (up to 1 year) and short term (up to 5 years) scenarios for mid-range drones. In this activity, due to the existence of confidential information, only free information has been used through media monitoring and a panel of experts.
Sharifi-Tehrani, Omid and et al. 2017. “Design and Simulation of IFF/ATC Antenna for Unmanned Aerial Vehicle”, Majlesi Journal of Mechatronic Systems, Vol. 6, No. 1, PP. 1-4.
Sharifi-Tehrani and Talati, Saeed, 2017. “PPU Adaptive LMS Algorithm, a Hardware-Efficient Approach; a Review on”, Majlesi Journal of Mechatronic Systems, Vol. 6, No. 1, PP. 5-9.
Weibel, Roland E. 2002. “Safety Considerations for Operation of Different Classes of Unmanned Aerial Vehicles in the National Airspace System”, MS. Thesis, University of Kansas.
Coffey, Timothy and Montgomery, John A. 2002. “The Emergence of Mini UAVs for Military Applications”, MS. Thesis, Center for Technology and National Security Policy National Defense University.
Birmingham Policy Commission, October 2014. “THE SECURITY IMPACT OF DRONES: CHALLENGES AND OPPORTUNITIES FOR THE UK”, Executive Summary.
Dimc, Franc and Magister, Tone, 2010. “MINI UAV COMMUNICATION LINK SYSTEMS”, MS. Thesis, University of Ljubljana.