Implementation of a Mobile Jamming Prototype for drones in the 2.4 GHz Band

Jonathan R. Viscarra, Daniel G. Domínguez, Rita P. León, D. Aguilar
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Abstract

This work describes the implementation of a jammer prototype implemented on a drone that is activated by an operator agent. In the implementation process, a prototype reconfigurable Antenna Microstrip Type E was developed that guarantees signal propagation in 2.4 and 5.8 GHz. The jammer control stages in the drone were also designed, consisting of data acquisition cards, sensors detection photoelectric and wireless communication cards, allowing the operator to decide the exact moment to carry out the attack. In addition, a remote control has been implemented that allows the operator to know the physical position of the target with respect to the position of the attacking drone. Finally, the operational tests were carried out in two stages, in the laboratory, analyzing the spectrum generated by the jammer, and in the field, which includes jamming tests on a commercial drone. Thanks to the results obtained, the operation of the prototype that inhibits the video transmission of the attacked target was verified.
2.4 GHz频段无人机移动干扰样机的实现
这项工作描述了在无人机上实现的干扰机原型的实现,该原型由操作员代理激活。在实现过程中,开发了可重构E型天线微带原型,保证了2.4 GHz和5.8 GHz的信号传播。还设计了无人机中的干扰机控制阶段,包括数据采集卡,传感器探测光电和无线通信卡,允许操作员决定进行攻击的确切时刻。此外,远程控制已经实施,允许操作员了解目标的物理位置相对于攻击无人机的位置。最后,操作测试分两个阶段进行,在实验室,分析干扰机产生的频谱,在现场,其中包括对商用无人机的干扰测试。根据所获得的结果,验证了原型抑制被攻击目标视频传输的操作。
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