Comparison of Different Intelligent Reflective Surface Designs in terms of Beam Properties at Sub-Terahertz Frequencies

Ada Irem Pekdemir, Ö. Özdemir, G. Kurt
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Abstract

Terahertz (THz) communication is one of the remarkable topics in the field of communication. Terahertz communication, which is one of the promising topics in meeting the rapidly increasing number of devices and the need for data speed and channel capacity, aims to increase the wireless communication frequency band up to terahertz level. When the terahertz frequency is used the wavelength decreases significantly, which causes electromagnetic waves to be more affected by the channel effects. There must be a clear line of sight (LOS) between the transmitter and the receiver in THz communication systems and the electromagnetic wave sent must be highly directive. The use of intelligent reflective surfaces in the terahertz band can provide advantages in the reflected wave being more directive. In this study, different Intelligent Reflective Surface designs in the literature are implemented and a performance comparison is presented in terms of beam characteristics.
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基于亚太赫兹波束特性的不同智能反射表面设计比较
太赫兹(THz)通信是通信领域中引人注目的话题之一。太赫兹通信旨在将无线通信频段提高到太赫兹水平,是满足设备数量快速增长、对数据速度和信道容量需求的一个有前途的课题。当使用太赫兹频率时,波长明显减少,这导致电磁波更受信道效应的影响。在太赫兹通信系统中,发射器和接收器之间必须有清晰的视线(LOS),并且发射的电磁波必须具有高度的指导性。在太赫兹波段使用智能反射面可以提供反射波更有方向性的优势。在本研究中,实现了文献中不同的智能反射表面设计,并在光束特性方面进行了性能比较。
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