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Mixed coherent states in coupled chaotic systems: Design of secure wireless communication

机译:耦合混沌系统中的混合相干态:安全无线通信的设计

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摘要

A general coupling design is proposed to realize a mixed coherent (MC) state: coexistence of complete synchronization, antisynchronization, and amplitude death in different pairs of similar state variables of the coupled chaotic system. The stability of coupled system is ensured by the Lyapunov function and a scaling of each variable is also separately taken care of. When heterogeneity as a parameter mismatch is introduced in the coupled system, the coupling function facilitates to retain its coherence and displays the global stability with renewed scaling factor. Robust synchronization features facilitated by a MC state enable to design a dual modulation scheme: binary phase shift key (BPSK) and parameter mismatch shift key (PMSK), for secure data transmission. Two classes of decoders (coherent and noncoherent) are discussed, the noncoherent decoder shows better performance over the coherent decoder, mostly a noncoherent demodulator is preferred in biological implant applications. Both the modulation schemes are demonstrated numerically by using the Lorenz oscillator and the BPSK scheme is demonstrated experimentally using radio signals. Copyright (C) EPLA, 2016
机译:提出了一种通用的耦合设计来实现混合相干(MC)状态:完全同步,反同步和振幅死亡在耦合混沌系统的不同状态变量对之间共存。耦合系统的稳定性由Lyapunov函数确保,并且每个变量的缩放比例也需要单独考虑。当在耦合系统中引入异质性作为参数不匹配时,耦合功能有助于保持其一致性,并以新的缩放因子显示全局稳定性。 MC状态促进了强大的同步功能,从而可以设计双重调制方案:二进制相移键(BPSK)和参数失配移位键(PMSK),用于安全的数据传输。讨论了两类解码器(相干解码器和非相干解码器),非相干解码器的性能优于相干解码器,在生物植入应用中首选非相干解调器。两种调制方案均通过使用Lorenz振荡器进行了数值验证,而BPSK方案则通过使用无线电信号进行了实验验证。版权(C)EPLA,2016年

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