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Reliable and Secure Pre-Coding OFDM-DCSK Design for Practical Cognitive Radio Systems With the Carrier Frequency Offset

机译:具有载波频率偏移的实用认知无线电系统的可靠性和安全预编码OFDM-DCSK设计

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In this paper, we present a pre-coding (PC) orthogonal frequency division multiplexing-aided differential chaos shift keying (OFDM-DCSK) scheme over non-contiguous (NC) spectrum bands for cognitive radio (CR) systems. In practical CR systems, the offset of fundamental clocks of transceivers or non-ideal components induce the carrier frequency offset (CFO), which will reduce the spectrum sensing accuracy and degrade reliability performances. Additionally, CR systems probably suffer from eavesdropping or malicious attacks due to the broadcasting property of wireless channels. With the aim to simultaneously combat the CFO and to enhance the security performance, in our OFDM-DCSK design, the information bits are modulated by reference chaotic sequences, then the data-bearing chaotic symbols and reference symbols are delivered to the pre-coding module, wherein we interleave chaotic chips, add the chaotic mask and duplicate chips. After OFDM modulations, the chaotic signals are transmitted over channels. At the receiver, reverse operations are performed. Moreover, we derive the theoretical bit error rate (BER) and information leakage expressions. Simulations are provided to verify the effectiveness of our derivations, and to demonstrate that more reliable and secure performances can be achieved by the presented system compared with counterpart systems.
机译:在本文中,我们向认知无线电(CR)系统的非连续(NC)频谱频带提供了一种预编码(PC)正交频分复用辅助辅助辅助循环键控(OFDM-DCSK)方案。在实用的CR系统中,收发器或非理想组件的基本时钟的偏移诱导载波频率偏移(CFO),这将降低光谱感测精度和降低可靠性性能。此外,CR系统可能由于无线通道的广播属性而受到窃听或恶意攻击。随着旨在同时打击CFO并提高安全性能,在我们的OFDM-DCSK设计中,信息比特由参考混沌序列调制,然后将数据承载混沌符号和参考符号传送到预编码模块,其中,我们交错芯片,加入混沌掩模和重复芯片。在OFDM调制之后,混沌信号通过信道传输。在接收器处,执行反向操作。此外,我们派生了理论误码率(BER)和信息泄漏表达式。提供模拟以验证我们的衍生的有效性,并证明可以通过对应于对应系统进行呈现的系统来实现更可靠和安全的性能。

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