ABER 在 IQI 和[式略]-[式略]衰减情况下采用 RIS 设计的 OFDM-IM 系统的性能

IF 5.1 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
Busra Karahan , Ibrahim Develi , Ayse Elif Canbilen , Hussam Alsalameh
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引用次数: 0

摘要

索引调制(IM)技术是第五代及以后(5GB)系统的竞争候选技术之一,其结构灵活、硬件方便等优势为信息传输提供了新途径。与此同时,为下一代无线通信系统提高正交频分复用(OFDM)性能的研究仍在深入进行。因此,IM 系统已与 OFDM 相适应,允许通过 OFDM 的子载波指数传输额外的比特信息。然而,硬件损伤(HWIs)限制了收发器的性能。在文献中,可重构智能表面(RIS)技术通过修改传入信号的相位来控制传播环境并提高接收信号的质量。在本文中,我们研究了同相(I)和正交相位(Q)不平衡(IQI)对基于 RIS 的 OFDM-IM 收发器的影响。首先,我们提出了一个受发射机和接收机 IQI 影响的 RIS 辅助 OFDM-IM 模型。然后,通过所提供的数学表达式计算 RIS 辅助 OFDM-IM 的平均误码率 (ABER) 性能,并将 IQI 的影响考虑在内。仿真结果表明,在 IQI 的影响下,与传统的 OFDM-IM 相比,设计的 RIS 辅助方案实现了性能提升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ABER Performance of OFDM-IM systems by RIS design in the presence of IQI and α-μ fading

Index modulation (IM) techniques are among the competitive candidates for fifth-generation and beyond (5GB) systems, offering new ways of conveying information thanks to their advantages such as structure flexibility and hardware convenience. Meanwhile, research on orthogonal frequency division multiplexing (OFDM) performance improvements for next-generation wireless communication systems is still intensively ongoing. Accordingly, the IM system has been adapted to OFDM, which allows additional bits of information to be transmitted through the subcarrier indices of the OFDM. Nevertheless, hardware impairments (HWIs) limit the performance of the transceiver. In the literature, reconfigurable intelligent surface (RIS) technology controls the propagation environment and enhances the quality of the received signal by modifying the phase of the incoming signal. In this paper, we investigate the effects of in-phase (I) and quadrature-phase (Q) imbalance (IQI) on RIS-based OFDM-IM transceivers motivated by the benefits of the RISs. Firstly, we present an RIS-assisted OFDM-IM model subject to transmitter and receiver IQI effects. Next, the average bit error rate (ABER) performance of the RIS-assisted OFDM-IM is calculated by the provided mathematical expressions taking the effect of IQI into account. The simulation outputs show that the designed RIS-supported scheme achieves a performance improvement compared to the traditional OFDM-IM under the effect of IQI.

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来源期刊
Engineering Science and Technology-An International Journal-Jestech
Engineering Science and Technology-An International Journal-Jestech Materials Science-Electronic, Optical and Magnetic Materials
CiteScore
11.20
自引率
3.50%
发文量
153
审稿时长
22 days
期刊介绍: Engineering Science and Technology, an International Journal (JESTECH) (formerly Technology), a peer-reviewed quarterly engineering journal, publishes both theoretical and experimental high quality papers of permanent interest, not previously published in journals, in the field of engineering and applied science which aims to promote the theory and practice of technology and engineering. In addition to peer-reviewed original research papers, the Editorial Board welcomes original research reports, state-of-the-art reviews and communications in the broadly defined field of engineering science and technology. The scope of JESTECH includes a wide spectrum of subjects including: -Electrical/Electronics and Computer Engineering (Biomedical Engineering and Instrumentation; Coding, Cryptography, and Information Protection; Communications, Networks, Mobile Computing and Distributed Systems; Compilers and Operating Systems; Computer Architecture, Parallel Processing, and Dependability; Computer Vision and Robotics; Control Theory; Electromagnetic Waves, Microwave Techniques and Antennas; Embedded Systems; Integrated Circuits, VLSI Design, Testing, and CAD; Microelectromechanical Systems; Microelectronics, and Electronic Devices and Circuits; Power, Energy and Energy Conversion Systems; Signal, Image, and Speech Processing) -Mechanical and Civil Engineering (Automotive Technologies; Biomechanics; Construction Materials; Design and Manufacturing; Dynamics and Control; Energy Generation, Utilization, Conversion, and Storage; Fluid Mechanics and Hydraulics; Heat and Mass Transfer; Micro-Nano Sciences; Renewable and Sustainable Energy Technologies; Robotics and Mechatronics; Solid Mechanics and Structure; Thermal Sciences) -Metallurgical and Materials Engineering (Advanced Materials Science; Biomaterials; Ceramic and Inorgnanic Materials; Electronic-Magnetic Materials; Energy and Environment; Materials Characterizastion; Metallurgy; Polymers and Nanocomposites)
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