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UAVs-based antenna arrays using time modulation

机译:基于无人机的天线阵列使用时间调制

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This paper applies time modulation to deal with the design of antenna arrays for UAVs formation flight using a rectangular micro-strip as antenna element in the frequency of 2.4 GHz. The motivation for this paper is to exploit the properties and advantages of time-modulated arrays in an interesting application: UAVs formation flight. This design considers the optimization of the position of the drones (or antenna elements) and the time switched sequences of the elements in a linear geometry. The design process to find the optimal positions of the drones for flight formation and the switch-on interval of each element is carried out by means of the methods of Particle Swarm Optimization and Invasive Weed Optimization. The main contribution to the field of this paper is a performance evaluation of the design problem for UAVs-based linear antenna arrays considering time modulation in terms of side lobe level (SLL) and sideband levels (SBLs). Simulation results are provided in terms of SLL, SBLs, switching time and positions of the drones. These simulation results illustrate that the time modulation could provide a SLL improvement with respect to previous results in literature.
机译:本文应用时间调制来处理天线阵列的设计,以便使用矩形微条带作为天线元件的频率为2.4 GHz。本文的动机是利用时间调制阵列的特性和优点在一个有趣的应用程序中:无人机形成飞行。该设计考虑了无人机(或天线元件)的位置和线性几何形状中元素的时间切换序列的优化。通过粒子群优化和侵入性杂草优化的方法,通过粒子群优化和侵袭性优化的方法来确定用于飞行形成的变无器皿的最佳位置的设计过程和每个元件的接通区间。本文领域的主要贡献是考虑到侧瓣电平(SLL)和边带电平(SBL)时考虑时间调制的基于无人机的线性天线阵列的设计问题的性能评估。仿真结果是以SLL,SBLS,切换时间和磁体的位置提供的。这些仿真结果表明,时间调制可以在文献中的先前结果方面提供SLL改善。

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