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用于隐蔽无线通信的多址接入和容量增强的光学频率梳辅助去噪

Optical frequency comb assisted denoising for multiple access and capacity enhancement of covert wireless communication.

作者信息

Yan Xianglei, Pan Wei, Zou Xihua, Lu Bing, Yan Lianshan, Luo Bin

出版信息

Opt Lett. 2022 Mar 15;47(6):1442-1445. doi: 10.1364/OL.449990.

Abstract

An optical frequency comb (OFC)-assisted covert wireless communication system with multiple access and enhanced capacity is proposed and experimentally demonstrated. In the scheme, signals in multiple channels are spread and mixed together to use a single transmitter and then received by individual receivers according to multiple access channels. The mixed signal is highly contaminated by noise to achieve high concealment in both the time and frequency domains, and then effectively recovered as different channels using the OFC assisted analog deep denoising technique. In experiments, mixed signals of 16 access channels with a signal-to-noise ratio (SNR) from -18 to -5 dB are accommodated, showing high covertness and 16× capacity enhancement (16×10 Mbit/s). Mutual interference among different channels is also analyzed and greatly eliminated by phases optimization in the spectral-spreading process. This scheme can greatly improve the time and spectrum utilization efficiency, which will be of great significance for enabling multiple access, large capacity, and high security for wireless communications.

摘要

提出并通过实验证明了一种具有多址接入和增强容量的光频梳(OFC)辅助隐蔽无线通信系统。在该方案中,多个信道中的信号被扩展并混合在一起,以使用单个发射机,然后根据多址接入信道由各个接收机接收。混合信号被噪声高度污染,以便在时域和频域中实现高隐蔽性,然后使用OFC辅助模拟深度去噪技术将其有效地恢复为不同的信道。在实验中,容纳了16个接入信道的混合信号,其信噪比(SNR)范围为-18至-5dB,显示出高隐蔽性和16倍的容量增强(16×10Mbit/s)。还分析了不同信道之间的相互干扰,并通过频谱扩展过程中的相位优化大大消除了这种干扰。该方案可以大大提高时间和频谱利用效率,这对于实现无线通信的多址接入、大容量和高安全性具有重要意义。

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