Design and Optimization of Photonics-Based Beamforming Networks for Ultra-Wide mmWave-Band Antenna Arrays

Mikhail E. Belkin, D. Fofanov, Vladislav Golovin, Y. Tyschuk, Alexander S. Sigov
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引用次数: 9

Abstract

In this chapter, we review the worldwide progress referred to designing optical beamforming networks intended to the next-generation ultra-wideband millime-ter-wave phased array antennas for incoming fifth-generation wireless systems, which in recent years is under the close attention of worldwide communication community. Following the tendency, we study in detail the design concepts below true-time-delay photonics beamforming networks based on switchable or continuously tunable control. Guided by them, we highlight our NI AWRDE CAD-based simulation experiments in the frequency range of 57–76 GHz on design of two 16-channel photonics beamforming networks using true-time-delay approach. In the first scheme of the known configuration, each channel includes laser, optical modulator, and 5-bit binary switchable chain of optical delay lines. The second scheme has an optimized configuration based on only 3-bit binary switchable chain of optical delay lines in each channel, all of which are driven by four lasers with wavelength division multiplexing and a common optical modulator. In the result, the novel structural and cost-efficient configuration of microwave-photonics beamforming network combining wavelength division multiplexing and true-time-delay techniques is proposed and investigated.
超宽毫米波天线阵列光子波束形成网络的设计与优化
在这一章中,我们回顾了近年来国际通信界关注的面向即将到来的第五代无线系统的下一代超宽带毫米波相控阵天线的波束形成网络的设计进展。根据这一趋势,我们详细研究了基于可切换或连续可调谐控制的真延时光子波束形成网络的设计概念。在此基础上,重点介绍了基于NI AWRDE cad在57 ~ 76 GHz频率范围内采用真时延方法设计两个16通道光子波束形成网络的仿真实验。在已知配置的第一种方案中,每个通道包括激光器、光调制器和5位二进制可切换光延迟线链。第二种方案的优化配置基于每个通道中仅3位二进制可切换的光延迟线链,所有这些都由四个具有波分复用的激光器和一个公共光调制器驱动。在此基础上,提出并研究了结合波分复用和真时延技术的新型结构和经济高效的微波光子学波束形成网络。
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