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Bifurcations and chaotic oscillations in an automatic control relay system with hysteresis

机译:具有迟滞的自动控制继电器系统中的分叉和混沌振荡

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The dynamics of relay system with hysteresis is investigated. Systems of this type have a broad range of applications for power control and temperature regulation or in order to obtain highly stabilized electric or magnetic fields. Examples are power supplies for radio-electronics, computer equipment or spacecrafts, test stands for investigations of high- or low-temperature superconductivity, electron microscopes, and nuclear magnetic resonance tomographs. We first describe a general approach to determine stable and unstable periodic orbits for systems with hysteresis. Considering a concrete example of a four-dimensional relay system with hysteresis we hereafter determine the regions of periodic and chaotic oscillations in parameter space. The regularities in the occurrence of periodic motions are studied, and the associated bifurcations are described. The causes of nondeterminate (i.e. chaotic) dynamics are discussed and the influence of an external noise signal is analyzed.
机译:研究了具有滞后作用的继电器系统的动力学特性。这种类型的系统在功率控制和温度调节或获得高度稳定的电场或磁场方面具有广泛的应用。例如无线电电子设备,计算机设备或航天器的电源,用于研究高温或低温超导性的测试台,电子显微镜和核磁共振断层扫描仪。我们首先描述确定具有滞后作用的系统的稳定和不稳定周期轨道的一般方法。考虑具有滞后的四维继电器系统的具体示例,我们在下文中确定参数空间中的周期性和混沌振荡的区域。研究了周期性运动发生的规律,并描述了相关的分叉。讨论了不确定(即混沌)动力学的原因,并分析了外部噪声信号的影响。

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