An Uplink Non-Orthogonal Multiple Access Scheme Having Physical Layer Security Based on Chaos Modulation

Yoshihiro Masuda, E. Okamoto, Keita Ito, Tetsuya Yamamoto
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引用次数: 10

Abstract

Fifth generation mobile communications system (5G) that enables large transmission capacity (over 10 Gbps) is currently standardized and under development. Non-orthogonal multiple access (NOMA) scheme is a typical core technology for 5G. On the other hand, we had proposed earlier a chaos multiple-input multiple-output (C-MIMO) transmission scheme that harnesses the strengths of the chaos communication system. C-MIMO exhibits channel coding effect and physical layer security based on a common key encryption that helps realize a secure wireless transmission. Furthermore, based on the C-MIMO, we had proposed a downlink chaos NOMA transmission scheme that realizes physical layer security in NOMA. However, in the conventional studies, an uplink transmission is not considered yet. Therefore, in this paper, we propose an uplink chaos NOMA transmission scheme using C-MIMO to realize a secure and large-capacity uplink transmission. The performance of the proposed scheme is evaluated through numerical simulations.
一种基于混沌调制的物理层安全上行非正交多址方案
目前,能够实现大传输容量(超过10gbps)的第五代移动通信系统(5G)正在标准化和开发中。非正交多址(NOMA)方案是5G的典型核心技术。另一方面,我们之前提出了一种利用混沌通信系统优势的混沌多输入多输出(C-MIMO)传输方案。C-MIMO具有信道编码效应和基于通用密钥加密的物理层安全性,有助于实现安全的无线传输。在此基础上,提出了一种基于C-MIMO的下行混沌NOMA传输方案,实现了NOMA中的物理层安全。然而,在传统的研究中,还没有考虑到上行传输。因此,本文提出了一种基于C-MIMO的上行混沌NOMA传输方案,以实现安全、大容量的上行传输。通过数值模拟对该方案的性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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