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Stability and Hopf Bifurcation of the Maglev System with Delayed Feedback Control

机译:磁悬浮控制的稳定性和Hopf分叉分叉控制

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The nonlinear maglev system with delayed feedback control is considered in this paper. Linear stability of the system is investigated by analyzing the associated characteristic transcendental equation. The stability and direction of the Hopf bifurcation are determined by applying the normal form theory and the center manifold theorem. Meanwhile, numerical simulations results are given to support the above theoretical predictions. It can be seen from the analysis that when the delay reaches the critical value, the maglev system will undergo a supercritical Hopf bifurcation and generate stable periodic oscillation.
机译:本文考虑了具有延迟反馈控制的非线性Maglev系统。通过分析相关特性超轮廓方程来研究系统的线性稳定性。通过施加正常形式理论和中心歧管定理来确定HopF分叉分叉的稳定性和方向。同时,给出了数值模拟结果支持上述理论预测。从分析可以看出,当延迟达​​到临界值时,Maglev系统将经过超临界Hopf分叉并产生稳定的周期性振荡。

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