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On the reasonability of linearized approximation and Hopf bifurcation control for a fractional-order delay Bhalekar–Gejji chaotic system

机译:关于线性化近似和Hopf分岔控制的合理性,对小数阶延迟Bhalekar-Gejjj混沌系统

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In this paper, we study the reasonability of linearized approximation and Hopf bifurcation control for a fractional-order delay Bhalekar–Gejji (BG) chaotic system. Since the current study on Hopf bifurcation for fractional-order delay systems is carried out on the basis of analyses for stability of equilibrium of its linearized approximation system, it is necessary to verify the reasonability of linearized approximation. Through Laplace transformation, we first illustrate the equivalence of stability of equilibrium for a fractional-order delay Bhalekar–Gejji chaotic system and its linearized approximation system under an appropriate prior assumption. This semianalytically verifies the reasonability of linearized approximation from the viewpoint of stability. Then we theoretically explore the relationship between the time delay and Hopf bifurcation of such a system. By introducing the delayed feedback controller into the proposed system, the influence of the feedback gain changes on Hopf bifurcation is also investigated. The obtained results indicate that the stability domain can be effectively controlled by the proposed delayed feedback controller. Moreover, numerical simulations are made to verify the validity of the theoretical results.
机译:在本文中,我们研究了线性化近似和Hopf分岔控制的合理性,用于分数级延迟Bhalekar-Gejji(BG)混沌系统。由于基于其线性化近似系统的平衡稳定性的分析来进行关于分数级延迟系统的跳跃分叉系统的目前的研究,因此必须验证线性化近似的合理性。通过拉普拉斯变换,我们首先说明了在适当的先前假设下为分数级延迟Bhalekar-Gejjji混沌系统及其线性化近似系统的平衡稳定性的等价性。从稳定性的观点来看,这种半次半级验证了线性化近似的合理性。然后,理论上我们探索这种系统的时间延迟和Hopf分叉之间的关系。通过将延迟的反馈控制器引入所提出的系统中,还研究了反馈增益变化对HOPF分叉的影响。所获得的结果表明,稳定域可以通过所提出的延迟反馈控制器有效地控制。此外,使数值模拟验证理论结果的有效性。

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