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Control system approach to the dynamics of nonidentical Josephson junction systems

机译:控制系统方法对非揭复时为Josephson结系统的动态

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The dynamics of a resistively coupled nonidentical Josephson junction (JJ) circuit is explored and a new control strategy is applied in order to smoothen the unstable regimes. In such a system, periodic, quasiperiodic and chaotic behaviors have been encountered worldwidely. In addition, the existence of the hyperchaos has also been declared by Kurt and his coworker. It is understood that the dynamic features strictly depend on the coupling resistance Rcp. Indeed the decrease in Rcp causes a sudden increase in Lyapunov exponents, which prove the chaoticity of the system. Since a wide chaotic region is encountered, the control of the system becomes important for a number of engineering applications. A new control system approach has been applied in order to solve this problem.
机译:探索了电阻耦合的非识别约瑟夫森结(JJ)电路的动态,并应用了新的控制策略,以使不稳定的制度平滑。在这种系统中,全世界都遇到了周期性,QuaSipheri周期和混沌行为。此外,Hyperchaos的存在也被Kurt和他的同事宣布。据了解,动态特征严格依赖于耦合电阻RCP。实际上,RCP的减少导致Lyapunov指数突然增加,这证明了系统的混沌。由于遇到了宽的混沌区域,因此对系统的控制变得重要了。应用了一种新的控制系统方法来解决这个问题。

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