Department of Electronics Engineering, INHA University, Inhceon 22201, Korea.
Agency of Defense Development, Changwon-si 51682, Korea.
Sensors (Basel). 2021 Mar 20;21(6):2184. doi: 10.3390/s21062184.
Underwater acoustic (UWA) biomimicking communications have been developed for covert communications. For the UWA covert communications, it is difficult to achieve the bit error rate (BER) and the degree of mimic (DoM) performances at the same time. This paper proposes a biomimicking covert communication method to increase both BER and DoM (degree of mimic) performances based on the Time Frequency Shift Keying (TFSK). To increase DoM and BER performances, the orthogonality requirements of the time- and frequency-shifting units of the TFSK are theoretically derived, and the whistles are multiplied by the sequence with a large correlation. Two-step DoM assessments are also developed for the long-term whistle signals. Computer simulations and practical lake and ocean experiments demonstrate that the proposed method increases the DoM by 35% and attains a zero BER at -6 dB of Signal to Noise Ratio (SNR).
水下声(UWA)仿生通信已被开发用于隐蔽通信。对于 UWA 隐蔽通信,很难同时实现误码率(BER)和模拟度(DoM)性能。本文提出了一种基于时频移键控(TFSK)的仿生隐蔽通信方法,以提高 BER 和 DoM(模拟度)性能。为了提高 DoM 和 BER 性能,从理论上推导出 TFSK 的时移和频移单元的正交性要求,并将啸叫声乘以具有较大相关性的序列。还针对长期哨声信号开发了两步式 DoM 评估。计算机仿真和实际湖泊与海洋实验表明,该方法将 DoM 提高了 35%,并在信噪比(SNR)为-6dB 时实现了零 BER。