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首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Global resonance optimization analysis of nonlinear mechanical systems: Application to the uncertainty quantification problems in rotor dynamics
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Global resonance optimization analysis of nonlinear mechanical systems: Application to the uncertainty quantification problems in rotor dynamics

机译:非线性机械系统的全局共振优化分析:在转子动力学不确定性量化问题中的应用

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摘要

An efficient method to obtain the worst quasi-periodic vibration response of nonlinear dynamical systems with uncertainties is presented. Based on the multi-dimensional harmonic balance method, a constrained, nonlinear optimization problem with the nonlinear equality constraints is derived. The MultiStart optimization algorithm is then used to optimize the vibration response within the specified range of physical parameters. In order to illustrate the efficiency and ability of the proposed method, several numerical examples are illustrated. The proposed method is then applied to a rotor system with multiple frequency excitations (unbalance and support) under several physical parameters uncertainties. Numerical examples show that the proposed approach is valid and effective for analyzing strongly nonlinear vibration problems with different types of nonlinearities in the presence of uncertainties.
机译:提出了一种获得不确定非线性动力学系统最差拟周期振动响应的有效方法。基于多维谐波平衡法,推导了具有非线性等式约束的约束非线性优化问题。然后使用MultiStart优化算法在指定的物理参数范围内优化振动响应。为了说明所提出方法的效率和能力,说明了几个数值示例。然后将所提出的方法应用于在多个物理参数不确定性下具有多个频率激励(不平衡和支撑)的转子系统。数值算例表明,该方法对于存在不确定性的,具有不同非线性类型的强非线性振动问题是有效的。

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