Frequency Diverse Array for Signal Geofencing in Wireless Communications: Does it Work?

IF 3.5 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Simone Del Prete;Marina Barbiroli;Franco Fuschini
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Abstract

Frequency Diverse Array is an advanced antenna technology for clustering received power spatial distribution in specific areas, which has shown significant potential in many applications, including radar or wireless power transfer. In wireless communications, signal geofencing might be beneficial in increasing communication secrecy or reduce interference issues, but system communications through frequency diverse arrays require careful consideration about several design parameters. In this paper, a detailed analysis of the sensitivity of the geofencing effectiveness to the main array parameters is carried out. The analysis covers many aspects of the design, including the selection of the geometrical layout and the number of elements of the array, the frequency increase policy and the frequency offset across the elements and their spacing. The study also discusses the trade-offs between different design choices and provides insights into the performance in terms of focus efficiency and size of the focus area. Results show that bidimensional layouts, e.g., circular or planar, often represent effective solutions, whereas the linear arrangement can be a viable option only in case the frequencies are spread across the elements in a random-like fashion. Frequencies are usually increased according to either a logarithmic or a linear policy. The linear solution in general yields lower performance, but also lower complexity. Frequency offset, number of elements and their spacing represent further project parameters. Finally, a preliminary assessment of the multipath effect on the focus task shows that the performance of frequency diverse arrays can be affected by complex propagation conditions and deserve further investigations.
无线通信信号地理围栏的分频阵列:是否有效?
分频阵列是一种先进的天线技术,用于在特定区域聚集接收功率的空间分布,在雷达或无线电力传输等许多应用中显示出巨大的潜力。在无线通信中,信号地理围栏可能有助于增加通信保密性或减少干扰问题,但通过频率多样化阵列的系统通信需要仔细考虑几个设计参数。本文详细分析了地理围栏效能对主要阵列参数的敏感性。分析涵盖了设计的许多方面,包括阵列几何布局和单元数量的选择,频率增加策略和单元间的频率偏移及其间距。该研究还讨论了不同设计选择之间的权衡,并就焦点效率和焦点区域的大小提供了对性能的见解。结果表明,二维布局,例如圆形或平面,通常代表有效的解决方案,而线性排列只能在频率以随机方式分布在元素上的情况下是可行的选择。频率通常根据对数或线性策略增加。线性解决方案通常产生较低的性能,但也较低的复杂性。频率偏移、元素数量及其间距代表了进一步的项目参数。最后,对多径效应对聚焦任务的影响进行了初步评估,结果表明,复杂的传播条件会影响分频阵列的性能,值得进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.50
自引率
12.50%
发文量
90
审稿时长
8 weeks
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