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Secure communication in TDS-OFDM system using constellation rotation and noise insertion

机译:使用星座旋转和噪声插入的TDS-OFDM系统中的安全通信

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摘要

Time-domain synchronous orthogonal frequency division multiplexing (TDS-OFDM) is the key technology of Chinese digital television terrestrial broadcasting (DTTB) standard. However, the issue of security was not considered, and this limits its application in commercial or military scenarios where secure communication is very important. This paper proposes an encryption scheme based on pseudo random constellation rotation and weak artificial noise insertion, which jointly utilizes the pseudo random key and the irreversible property of wireless channel to guarantee the physical layer security of TDS-OFDM system. Simulation results show that the proposed security scheme can protect the system from eavesdroppers, while the legal receivers only suffer a negligible bit error rate (BER) performance loss compared with the conventional TDS-OFDM system without security.
机译:时域同步正交频分复用(TDS-OFDM)是中国数字电视地面广播(DTTB)标准的关键技术。但是,没有考虑安全问题,这限制了它在安全通信非常重要的商业或军事场景中的应用。提出了一种基于伪随机星座旋转和弱人工噪声插入的加密方案,该方案结合伪随机密钥和无线信道的不可逆特性,保证了TDS-OFDM系统的物理层安全性。仿真结果表明,与没有安全性的传统TDS-OFDM系统相比,该安全方案可以保护系统免受窃听,而合法接收机的误码率(BER)性能损失可忽略不计。

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