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Chaotic modulations and performance analysis for digital underwater acoustic communications

机译:数字水下声通信的混沌调制和性能分析

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摘要

Two modulation schemes, M-ary phase shift keying (MPSK) and M-ary frequency shift keying (MFSK), are commonly used for coherent and incoherent digital communications, respectively. Despite wide applications in underwater acoustic (UWA) communications, they are not suitable for confidential applications for their well-known generating processes and signal features. In this paper, two corresponding chaotic modulation methods are proposed to improve their security, namely chaotic MPSK (CMPSK) and chaotic MFSK (CMFSK). By application of chaotic sequences into the modulation procedures, they can prevent the unauthorized receivers from extracting information from the intercepted signals even with high SNR. The confidential performance of chaotic modulations is evaluated by a designed automatic modulation classification (AMC) system. Simulation results indicate a success identification rate of more than 90% for the MPSK and MFSK signal at the SNR from - 10 dB to 40 dB, but only an identification rate of nearly zero for the CMPSK and CMFSK signal. Therefore, chaotic modulations have lower available probability and can achieve higher confidential performance. Also, an experiment was conducted to verify the performance of chaotic modulations in actual UWA communications. The experimental results show that chaotic modulations can achieve similar bit error ratio (BER) compared with conventional digital modulations, which verifies potential applications of chaotic modulations in confidential UWA communications. (C) 2015 Elsevier Ltd. All rights reserved.
机译:M个相移键控(MPSK)和M个相移键控(MFSK)这两种调制方案通常分别用于相干和非相干数字通信。尽管在水下声(UWA)通信中有广泛的应用,但由于其众所周知的生成过程和信号特征,它们并不适合于机密应用。本文提出了两种相应的混沌调制方法来提高其安全性,即混沌MPSK(CMPSK)和混沌MFSK(CMFSK)。通过将混沌序列应用于调制过程,即使在SNR高的情况下,它们也可以防止未经授权的接收器从截获的信号中提取信息。混沌调制的机密性能通过设计的自动调制分类(AMC)系统进行评估。仿真结果表明,在SNR从-10 dB到40 dB的情况下,MPSK和MFSK信号的成功识别率超过90%,而CMPSK和CMFSK信号的成功识别率仅接近零。因此,混沌调制具有较低的可用概率,并且可以实现较高的机密性能。此外,进行了一项实验,以验证实际UWA通信中混沌调制的性能。实验结果表明,与传统的数字调制相比,混沌调制可以实现相似的误码率(BER),这证明了混沌调制在机密UWA通信中的潜在应用。 (C)2015 Elsevier Ltd.保留所有权利。

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