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基于具有更高调制阶数的智能反射面辅助的空时编码方案的B5G/6G网络性能增强

Performance Enhancement for B5G/6G Networks Based on Space Time Coding Schemes Assisted by Intelligent Reflecting Surfaces with Higher Modulation Orders.

作者信息

El-Hussien Mariam, Abdelhamid Bassant, Elbadawy Hesham, El-Hennawy Hadia, Ahmed Mehaseb

机构信息

Electronics and Communications Department, Faculty of Engineering Science and Arts, Misr International University, Cairo 11828, Egypt.

Electronics and Communications Department, Faculty of Engineering, Ain Shams University, Cairo 11517, Egypt.

出版信息

Sensors (Basel). 2024 Sep 24;24(19):6169. doi: 10.3390/s24196169.

Abstract

Intelligent Reflecting Surfaces (IRS) and Multiple-Input Single-Output (MISO) technologies are essential in the fifth generation (5G) networks and beyond. IRS optimizes the signal propagation and the coverage and is a viable approach to address the issues caused by fading channels that limits the spectral efficiency, while MIMO enhances data rates, reliability, and spectral efficiency by using multiple antennas at both transmitter and receiver ends. This paper proposes an IRS-assisted MISO system using the Orthogonal Space-Time Block Code (OSTBC) scheme to enhance the channel reliability and reduce the Bit Error Rate (BER) in wireless communication systems. The proposed system exploits the benefits from the transmit diversity gain of the OSTBC scheme as well as from the bit energy to noise power spectral density (E/N) improvement of the IRS technology. The presented work explores these combined technologies across different modulation schemes. The obtained results outperform the similar previously published works by considering higher-order modulation schemes as well as the deployment of rate ¾ OSTBC-assisted IRS. Moreover, the obtained results demonstrate that the integration of OSTBC with IRS can yield significant performance improvements in terms of E/N by 7 dB and 13 dB when using 16 reflecting elements and 64 reflecting elements, respectively.

摘要

智能反射面(IRS)和多输入单输出(MISO)技术在第五代(5G)及以后的网络中至关重要。IRS可优化信号传播和覆盖范围,是解决由衰落信道导致的限制频谱效率问题的可行方法,而MIMO通过在发射端和接收端都使用多个天线来提高数据速率、可靠性和频谱效率。本文提出了一种使用正交空时分组码(OSTBC)方案的IRS辅助MISO系统,以提高无线通信系统中的信道可靠性并降低误码率(BER)。所提出的系统利用了OSTBC方案的发射分集增益以及IRS技术的比特能量与噪声功率谱密度(E/N)改善带来的好处。本文的工作探索了这些组合技术在不同调制方案中的应用。通过考虑高阶调制方案以及部署速率为¾的OSTBC辅助IRS,所获得的结果优于之前发表的类似工作。此外,所获得的结果表明,当分别使用16个反射元件和64个反射元件时,OSTBC与IRS的集成在E/N方面可分别显著提高7 dB和13 dB的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33cb/11478492/e678f62bfaa0/sensors-24-06169-g001.jpg

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