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Time-delayed control to suppress a nonlinear system vibration utilizing the multiple scales homotopy approach

机译:延迟控制抑制利用多种尺度同型方法的非线性系统振动

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The nonlinear transversal oscillations of a cantilever beam system at primary, superharmonic, and subharmonic resonance cases are investigated within this work. Time-delayed position-velocity controller is proposed to suppress the considered system nonlinear vibrations. The multiple scales homotopy approach is employed to analyze the controlled nonlinear model. The amplitude-phase modulating equations that govern the system dynamics at the different resonance cases are extracted. The stability charts of the loop-delay are obtained. The influence of the different controller parameters on the system vibration behaviors is explored. The acquired analytical results revealed that the loop-delay has a great influence on the controller efficiency. Accordingly, the optimal values of the loop-delay are reported and utilized to enhance the applied controller performance. Finally, numerical validations of the accomplished analytical results are performed, which illustrated an excellent agreement with the obtained analytical ones.
机译:在这项工作中研究了初级,超声和次谐振箱悬臂系统的非线性横向振荡。提出了时间延迟位置速度控制器来抑制所考虑的系统非线性振动。使用多种缩放同型方法来分析受控非线性模型。提取管理不同谐振例中的系统动态的幅度调制方程。获得了环路延迟的稳定性图表。探讨了不同控制器参数对系统振动行为的影响。所获得的分析结果表明,环路延迟对控制器效率产生很大影响。因此,报告并利用环延迟的最佳值来增强所应用的控制器性能。最后,进行了完成的分析结果的数值验证,其与所获得的分析术说明了良好的一致性。

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