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Nonlinear argumental oscillators: A few examples of modulation via spatial position

机译:非线性协议振荡器:通过空间位置的一些调制示例

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Under certain conditions, an oscillator can enter a stable regime when submitted to an external harmonic force whose frequency is far from the natural frequency of the oscillator. This may happen when the external force acts on the oscillator in a way which depends on the oscillator's spatial position. This phenomenon is called argumental oscillation. In this paper, six argumental oscillators are described and modeled, and experimental results are given and compared to numerical simulations based on the models. A polar Van der Pol representation, with embedded time indications, is used to allow a precise comparison. The pendulums are modeled as Duffing oscillators. The six models are based on various pendulums excited by spatially localized magnetic-field sources consisting of wire coils. Each pendulum receives the excitation via a steel element, or a permanent magnet, fitted at the tip of the pendulum's rod. The spatial localization induces another nonlinearity besides the Duffing nonlinearity. A control system allowing a real-time Van der Pol representation of the motion is presented. Attractors are brought out from experimental results.
机译:在某些条件下,当提交到频率远离振荡器的固有频率的外部谐波时,振荡器可以进入稳定的制度。当外力以取决于振荡器的空间位置的方式在振荡器上起作用时可能发生这种情况。这种现象称为论证振荡。在本文中,描述和建模六个辅助振荡器,并给出了实验结果,并与基于模型的数值模拟相比。使用嵌入时间指示的极地van der Pol表示,用于允许精确的比较。摆锤被建模为Duffing振荡器。六种模型基于由由线圈组成的空间局部磁场源激发的各种摆锤。每个摆锤通过钢元件或永磁体接收激发,或者永磁磁铁装配在摆杆的尖端。除了Duffing非线性之外,空间定位诱导另一个非线性。呈现了允许实时范德POL表示运动的控制系统。吸引物从实验结果中提出。

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