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Stability and chaotification of vibration isolation floating raft systems with time-delayed feedback control

机译:带时滞反馈控制的隔振浮筏系统的稳定性与混沌化

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This paper presents a systematic study on the stability of a two-dimensional vibration isolation floating raft system with a time-delayed feedback control. Based on the generalized Sturm criterion, the critical control gain for the delay-independent stability region and critical time delays for the stability switches are derived. The critical conditions can provide a theoretical guidance of chaotification design for line spectra reduction. Numerical simulations verify the correctness of the approach. Bifurcation analyses reveal that chaotification is more likely to occur in unstable region defined by these critical conditions, and the stiffness of the floating raft and mass ratio are the sensitive parameters to reduce critical control gain.
机译:本文对具有时滞反馈控制的二维隔振浮筏系统的稳定性进行了系统的研究。基于广义Sturm准则,推导了与延迟无关的稳定区域的临界控制增益和稳定性开关的临界时间延迟。临界条件可以为线谱还原的混沌化设计提供理论指导。数值模拟验证了该方法的正确性。分叉分析表明,在这些临界条件所定义的不稳定区域中更容易发生混乱,浮筏的刚度和质量比是降低临界控制增益的敏感参数。

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