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Frequency Diverse Array Antennas: From Their Origin to Their Application in Wireless Communication Systems

机译:频分阵列天线:从其起源到在无线通信系统中的应用

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Wireless communication systems have gained considerable growth rate nowadays, with the anticipation that communications will be available everywhere and anywhere in the near future. Phased array antenna whose beam steering is fixed in an angle for all range cells has been utilized for wireless communications. To mitigate this problem, a new array concept, namely, frequency diverse array (FDA), was proposed. This paper presents how FDA technology could be useful in today’s wireless communication technology. FDA is distinct from phased array in a sense that it employs frequency increment across array elements. The use of a frequency increment creates a beam steering that is a function of angle, time, and range which allows the FDA antenna to transmit the energy along the prespecified range and angle direction. In addition, we consider the time-variant beampattern aspect of an FDA, which has normally been ignored in the literature. In this study, we present the mathematical fundamentals of FDA antenna and why it could be exploited for wireless communication systems. Furthermore, FDA using Butler matrix for communication has been discussed. Performance analysis in terms of transmit beampattern, signal-to-interference-and-noise ratio (SINR), and direction of arrival has been presented and compared with that of phased array antenna.
机译:如今,无线通信系统已经获得了可观的增长率,并期望在不久的将来随处可见通信。对于所有测距单元,其波束转向固定在一个角度的相控阵天线已用于无线通信。为了减轻这个问题,提出了一种新的阵列概念,即频率分集阵列(FDA)。本文介绍了FDA技术如何在当今的无线通信技术中有用。 FDA与相控阵的不同之处在于,它采用了跨阵元的频率增量。使用频率增量会产生波束转向,该波束转向是角度,时间和范围的函数,从而使FDA天线可以沿着预定的范围和角度方向传输能量。另外,我们考虑了FDA随时间变化的波束模式,这在文献中通常被忽略。在这项研究中,我们介绍了FDA天线的数学原理以及为什么可以将其用于无线通信系统。此外,已经讨论了使用Butler矩阵进行通信的FDA。提出了关于发射波束图,信噪比(SINR)和到达方向的性能分析,并将其与相控阵天线进行了比较。

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