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DFTs-OFDM based quantum noise stream cipher system

机译:基于DFTs-OFDM的量子噪声流密码系统

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摘要

Quantum noise stream cipher (QNSC) is a physical layer encryption technique based on quantum noise. Discrete-fourier-transform spread orthogonal frequency division multiplexing (DFTs-OFDM) is a widely studied technology with excellent transmission performance. As best as we know, the transmission and security performance of QNSC in DFTs-OFDM transmission has not been studied. This paper introduces DFTs-OFDM into the QNSC system to combine the characteristics of both techniques. Simulation results show that PSK-based QNSC (PSK/QNSC) has better transmission and security performance than QAM-based QNSC (QAM/QNSC) under the same constellation size. As the constellation size increases, obtained security can be upgraded. We also investigate the effects of quantization and clipping noise on the performance of DFTs-OFDM based QAM/QNSC system. We experimentally demonstrate a 10-Gbit/s DFTs-OFDM based PSK/QNSC and QAM/QNSC transmission over a single span 200-km fiber link.
机译:量子噪声流密码(QNSC)是一种基于量子噪声的物理层加密技术。离散傅里叶变换扩频正交频分复用(DFTs-OFDM)是一种广泛研究的技术,具有出色的传输性能。据我们所知,尚未研究QNSC在DFTs-OFDM传输中的传输和安全性能。本文将DFTs-OFDM引入QNSC系统,以结合两种技术的特性。仿真结果表明,在相同的星座图大小下,基于PSK的QNSC(PSK / QNSC)具有比基于QAM的QNSC(QAM / QNSC)更好的传输和安全性能。随着星座图大小的增加,可以提高获得的安全性。我们还研究了量化和削波噪声对基于DFTs-OFDM的QAM / QNSC系统性能的影响。我们通过实验证明了在单跨200公里光纤链路上基于10 Gbit / s DFTs-OFDM的PSK / QNSC和QAM / QNSC传输。

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