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Dynamical properties of a forced vibration isolation system with real-power nonlinearities in restoring and damping forces

机译:恢复力和阻尼力中具有有功非线性的强制隔振系统的动力学特性

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摘要

In this paper, the time-delayed cubic velocity feedback and the real-power form of restoring and damping forces are combined to improve the performance of vibration isolation. The primary resonance, dynamic stability and transmissibility are studied for a forced vibration isolation system with real-power exponents in restoring and damping force terms under base excitation. Based on the method of multiple scales, the equivalent damping is first proposed to interpret the effect of feedback control on the dynamic behavior of the real-power isolation system, such as the frequency island phenomenon. In this regard, the isolation system indicates the softening behavior for under-linear restoring force and hardening behavior for over-linear restoring force. And multi-valued responses, especially five-valued responses, are found under under-linear restoring force. To verify this result, the stability boundaries are characterized and presented excellent agreement with the responses. Then, for avoiding the jump phenomenon, an analytical criterion is derived and con-firmed by the numerical simulation. Furthermore, with the purpose of suppressing the amplitude peak and governing the resonance stability, appropriate feedback gains and time delays are derived. Finally, the effects of the system parameters on the energy transmissibility is investigated. Results show that the strategy proposed in this paper is practicable and feedback parameters are significant factors to improve the isolation effectiveness for the real-power isolation system.
机译:本文将时滞三次速度反馈与恢复力和阻尼力的有功形式相结合,以提高隔振性能。研究了在基础激励下具有恢复力和阻尼力项的有功指数的强制隔振系统的主共振,动态稳定性和传递性。基于多尺度方法,首先提出了等效阻尼来解释反馈控制对有功隔离系统的动态行为的影响,例如频域现象。就这一点而言,隔离系统指示出针对欠线性恢复力的软化行为和针对过线性恢复力的硬化行为。在欠线性恢复力下发现了多值响应,尤其是五值响应。为了验证该结果,对稳定性边界进行了表征,并给出了与响应极好的一致性。然后,为避免跳变现象,推导了解析准则,并通过数值模拟进行了确认。此外,为了抑制振幅峰值并控制谐振稳定性,得出了适当的反馈增益和时间延迟。最后,研究了系统参数对能量传输率的影响。结果表明,本文提出的策略是可行的,反馈参数是提高有功功率隔离系统隔离效果的重要因素。

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