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Controlling Chaos Using Superior Feedback Technique with Applications in Discrete Traffic Models

机译:使用卓越的反馈技术控制混沌在离散交通模型中的应用

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摘要

In recent years, discrete chaos has found a celebrated place in various dynamical phenomena of nature and science, such as population dynamics in ecology, laser technology, traffic flow system, image encryption and decryption in cryptography, secure communication, etc. But as a recent discipline, control of chaos an important field of research related to chaotic systems has come into play with many scientific and technological advances. In this article, a superior technique to control chaos in a class of one-dimensional discrete systems is developed and the unstable fixed and periodic states responsible for chaotic behavior are stabilized. Due to an extra degree of freedom of an intrinsic parameter alpha in superior control technique, the stability performance increases rapidly than other techniques. Further, the several theoretical as well as numerical simulation results are studied for the efficiency and effectiveness of the superior control technique followed by theorems, examples, remarks, Lyapunov exponent property, and period-doubling bifurcation representation. Moreover, using this system following discrete traffic flow problem is also discussed, How to impart an unstable traffic behavior into stable and non-traffic zone?.
机译:近年来,离散混乱在自然和科学的各种动态现象中找到了一个庆祝的地方,例如生态学,激光技术,交通流量系统,图像加密和密码中的解密,安全通信等的人口动态。但是最近纪律,对混乱的控制控制与混沌系统有关的重要研究领域已经发挥了许多科技进步。在本文中,开发了一种用于控制一类一维分立系统中混沌的优异技术,并且稳定了负责混沌行为的不稳定固定和周期状态。由于卓越的控制技术中的内在参数α的额外自由度,稳定性性能迅速增加而不是其他技术。此外,研究了若干理论和数值模拟结果,用于卓越控制技术的效率和有效性,然后是定理,例子,备注,Lyapunov指数性质和时期加倍的分叉表示。此外,还讨论了在离散的交通流问题之后使用该系统,如何将不稳定的流行行为赋予稳定和非流量区?

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