Physical Layer Security Approaches in 5G Wireless Communication Networks

Pooja Singh, Praveen Pawar, A. Trivedi
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引用次数: 11

Abstract

Rapid growth in the fifth generation (5G) wireless network applications demands new requirements on the data storage, computation, and networking. Thus, it will introduce new threats to the integrity, availability, and confidentiality. 5G is advantageous concerning high data rate, low latency, energy and spectrum efficient, higher capacity, and reliable connectivity. Currently, safeguarding information in the 5G wireless networks is the pivotal issue for research. In this paper, the importance of Physical Layer Security (PLS) for secure transmission of information in wireless networks are discussed. Some popular 5G technologies are studied in the context of security during transmission. With all this, significant issues and challenges are identified in the implementation of new technologies into reality. These technologies are mobile-health (m-health), cognitive radio networks (CRNs), constructive interference, massive multiple input multiple output (massive MIMO), non-orthogonal multiple access (NOMA) and simultaneous wireless information and power transfer (SWIPT). Future challenges and direction for the further study of such technologies are also given. Moreover, one numerical result is presented for the spectral efficiency in MIMO communication system.
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5G无线通信网络中的物理层安全方法
随着第五代(5G)无线网络应用的快速发展,对数据存储、计算和组网提出了新的要求。因此,它将给完整性、可用性和机密性带来新的威胁。5G具有数据速率高、时延低、能量和频谱效率高、容量大、连接可靠等优势。目前,5G无线网络中的信息安全是研究的关键问题。本文讨论了物理层安全对于无线网络中信息安全传输的重要性。在传输过程中的安全背景下研究了一些流行的5G技术。有鉴于此,在将新技术应用于现实的过程中发现了重大问题和挑战。这些技术包括移动健康(m-health)、认知无线网络(crn)、建设性干扰、大规模多输入多输出(massive MIMO)、非正交多址(NOMA)和同步无线信息和电力传输(SWIPT)。并指出了这些技术未来面临的挑战和进一步研究的方向。此外,给出了MIMO通信系统频谱效率的一个数值计算结果。
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