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A Differential Chaos-Shift Keying Scheme Based on Hybrid System for Underwater Acoustic Communication

机译:一种基于混合动力系统的差动混沌移位键控方案,用于水下声学通信

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Exploration and development of the ocean relies on underwater acoustic communication. However, the intrinsic characteristics of the underwater channel require that the communication system can cope with several physical constraints, such as more serious multipath propagation, limited frequency band, complex ambient noises, interference, time-varying characteristics and significant Doppler frequency shift. These features restrict the development of low Bit Error Rate (BER) underwater acoustic communication. In this paper, we propose a novel differential chaos shift keying (DCSK) scheme based on a hybrid chaotic system to obtain a better BER performance in underwater acoustic channels. In this scheme, the chaotic carrier is generated by a hybrid system rather than the traditional chaotic map. A corresponding match filter is used to decrease the effect of ambient noises at the receiver end. Compared with some existing methods, the BER performance of the proposed scheme is better.
机译:海洋的探索与发展依赖于水下声学通信。然而,水下信道的内在特征要求通信系统可以应对几种物理限制,例如更严重的多径传播,有限的频带,复杂的环境噪声,干扰,时变特性以及显着的多普勒频移。这些功能限制了低位错误率(BER)水下声学通信的开发。在本文中,我们提出了一种基于混合混沌系统的小型差分混沌移位键控(DCSK)方案,以获得更好的水下声道通道的性能。在该方案中,混沌载体由混合系统而不是传统的混沌映射产生。相应的匹配滤波器用于降低接收器端的环境噪声的效果。与一些现有方法相比,所提出的方案的BER性能更好。

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