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Effect of filtering on the synchronization and performance of chaos-based secure communication over Rayleigh fading channel

机译:滤波对瑞利衰落信道上基于混沌的安全通信的同步和性能的影响

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Chaos synchronization is one of the main challenging issues involved in the development of wireless chaos-based secure communication (CBSC) due its crucial influence on the error performance and system reliability. This paper is concerned with the effect of filtering chaotic signals on the synchronization and error performance of CBSC schemes due to the finite bandwidth of realistic fading channel and/or signal detection necessities. The double scroll chaotic attractor is employed at the transmit and receive terminals as in a drive-response configuration with identical synchronization and a low pass filter model is utilized in this investigation. The upper bound of bit error probability considering Rayleigh fading channel and synchronization mean squared error is derived and evaluated for different values of filter parameter. Theoretical analysis and simulation results show that as the filter cut-off frequency decreased lower than the chaotic signal bandwidth, the synchronization error is considerably increased due to high distortion in the normal geometrical configuration of the attractor. As a result, the average bit-error-rate performance is degraded significantly with high possibility of link failure. Therefore, careful system design should be made to mitigate the filtering effects and achieve the essential synchronization of promising CBSC systems. (C) 2015 Elsevier B.V. All rights reserved.
机译:混沌同步是无线基于混沌的安全通信(CBSC)开发中涉及的主要挑战性问题之一,因为它对错误性能和系统可靠性具有至关重要的影响。由于实际衰落信道的带宽有限和/或信号检测的必要性,本文关注的是对混沌信号进行滤波对CBSC方案的同步和误码性能的影响。如在具有相同同步的驱动响应配置中一样,在发送和接收终端使用双涡旋混沌吸引子,并且在此研究中采用了低通滤波器模型。导出考虑瑞利衰落信道和同步均方误差的误码率上限,并针对不同的滤波器参数值进行评估。理论分析和仿真结果表明,当滤波器截止频率降低到低于混沌信号带宽时,由于吸引子的正常几何构型中的高失真,同步误差会大大增加。结果,平均比特错误率性能显着降低,并且链路故障的可能性很高。因此,应进行仔细的系统设计以减轻滤波效果并实现有希望的CBSC系统的基本同步。 (C)2015 Elsevier B.V.保留所有权利。

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