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On the existence of stable asymmetric limit cycles and chaos in unforced symmetric relay feedback systems

机译:无力对称继电反馈系统中存在稳定的非对称极限环和混沌

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We study the occurrence of bifurcations leading to the formation of asymmetric orbits and chaos in unforced relay feedback systems with a symmetric relay characteristic. We show that novel bifurcation mechanisms cause the formation of stable periodic solutions with segments of sliding motion. We then characterise the formation of asymmetric stable periodic solutions and detail the route to chaos exhibited by a representative third-order example.
机译:我们研究了在具有对称继电特性的非强制继电反馈系统中分叉的发生,从而导致非对称轨道和混沌的形成。我们表明新颖的分叉机制导致形成稳定的周期解与滑动段。然后,我们表征非对称稳定周期解的形成,并详细说明具有代表性的三阶示例所展现的实现混沌的途径。

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