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Harmonic oscillator utilizing double-fold integral, traditional and second-order sliding mode control

机译:利用双重积分,传统和二阶滑模控制的谐波振荡器

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To stabilize both amplitude and frequency of the second-order harmonic oscillator double-fold sliding mode control is employed. The first, integral sliding mode control, is used to compensate for the disturbance/uncertainty, which is unmatched by the second control. The second sliding mode control is designed to achieve the stabilization of the harmonic oscillator system while the system is in the integral sliding mode. The first (integral) and second sliding mode controls are implemented in both formats: traditional sliding mode control that requires high-frequency oscillating control action and second-order sliding mode (super-twisting) control that is continuous and provides for the higher accuracy of stabilization. It is shown that the output of the double-fold sliding mode controlled second-order harmonic oscillator is robust to bounded disturbances and model parameter uncertainties. Computer simulations are performed to manifest the theoretical analysis.
机译:为了稳定二阶谐波振荡器的幅度和频率,采用了双重滑模控制。第一个整体滑模控制用于补偿扰动/不确定性,这是第二个控制所无法比拟的。第二滑模控制设计为在系统处于整体滑模时实现谐波振荡器系统的稳定。第一(整体)和第二滑模控制以两种格式实现:需要高频振荡控制动作的传统滑模控制和连续的并提供更高精度的二阶滑模(超扭曲)控制稳定。结果表明,双倍滑模控制的二阶谐波振荡器的输出对有界扰动和模型参数不确定性具有鲁棒性。进行计算机模拟以体现理论分析。

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