Hybridization of OFDMand Physical Layer Techniques for Information Security in Wireless System

Olawoyin, Abdul-Rahman Musrafah, N. Faruk, A. OloyedeA., C. .AdeniranT., .. Imam-Fulani, Bashir Abdullahi Baba
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引用次数: 1

Abstract

Due to quest for high data rate, reliable and secure communication, this has motivated both wired and wireless network access service providers to deploy a next-generation network with ability to meet the required need. The use orthogonal frequency division multiplexing(OFDM) enables reliable transmission of various data traffic by optimizing subcarrier, power, and allocation of bits among different users. Traditionally, securing data in wireless system is always at the upper layer of open system interconnection(OSI) Model by using data encryption techniques. However, such techniques may not be acceptable for future decentralized networks due to their high complexity in implementation and computation. In this work, an OFDM IEEE 802.11a wireless system is used and physical layer encryption (PLE) schemes are implemented in securing the information transfer between two legitimate parties. In the simulation, the source data are encrypted by obfuscation with dummy data in between the encrypted data of which 52 subcarriers were considered of which 25 subcarriers are reserved for dummy data and 27 were for data. The simulation was conducted for four different modulation techniques i.e., BPSK, QPSK, 16 QAM, and 64 QAM. The result obtained shown that for all the modulation schemes, the key rate increases with an increase in the reserved subcarrier bits. Also ,the security level increased when substantial percentages of the subcarriers are reserved for dummy data
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无线系统信息安全中的ofdemand物理层混合技术
由于对高数据速率、可靠和安全通信的追求,这促使有线和无线网络接入服务提供商部署能够满足需求的下一代网络。正交频分复用(OFDM)通过优化子载波、功率和不同用户之间的比特分配,实现各种数据流量的可靠传输。传统上,无线系统中的数据安全通常是在开放系统互连(OSI)模型的上层使用数据加密技术来实现的。然而,由于实现和计算的高度复杂性,这种技术可能不适合未来的去中心化网络。在这项工作中,使用了OFDM IEEE 802.11a无线系统,并实施了物理层加密(PLE)方案来保护合法双方之间的信息传输。在仿真中,对源数据进行加密,在加密数据之间使用虚拟数据进行混淆,考虑52个子载波,其中25个子载波为虚拟数据保留,27个子载波为数据保留。模拟了四种不同的调制技术,即BPSK、QPSK、16 QAM和64 QAM。结果表明,对于所有调制方案,密钥速率随保留子载波位的增加而增加。此外,当相当比例的子载波被保留用于虚拟数据时,安全级别也会提高
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