首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Stochastic response determination of structural systems modeled via dependent coordinates: a frequency domain treatment based on generalized modal analysis
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Stochastic response determination of structural systems modeled via dependent coordinates: a frequency domain treatment based on generalized modal analysis

机译:通过依赖性坐标建模的结构系统的随机响应测定:基于广义模态分析的频域处理

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摘要

Generalized independent coordinates are typically utilized within an analytical dynamics framework to model the motion of structural and mechanical engineering systems. Nevertheless, for complex systems, such as multi-body structures, an explicit formulation of the equations of motion by utilizing generalized, independent, coordinates can be a daunting task. In this regard, employing a set of redundant coordinates can facilitate the formulation of the governing dynamics equations. In this setting, however, standard response analysis techniques cannot be applied in a straightforward manner. For instance, defining and determining a transfer function within a frequency domain response analysis framework is challenging due to the presence of singular matrices, and thus, the machinery of generalized matrix inverses needs to be employed. An efficient frequency domain response analysis methodology for structural dynamical systems modeled via dependent coordinates is developed herein. This is done by resorting to the Moore-Penrose generalized matrix inverse in conjunction with a recently proposed extended modal analysis treatment. It is shown that not only the formulation is efficient in drastically reducing the computational cost when compared to a straightforward numerical evaluation of the involved generalized inverses, but also facilitates the derivation and implementation of the celebrated random vibration input-output frequency domain relationship between the excitation and the response power spectrum matrices. The validity of the methodology is demonstrated by considering a multi-degree-of-freedom shear type structure and a multi-body structural system as numerical examples.
机译:广义独立坐标通常在分析动力学框架内使用以模拟结构和机械工程系统的运动。然而,对于诸如多体结构的复杂系统,通过利用广义,独立的坐标来明确地制定运动方程,可以是令人生畏的任务。在这方面,采用一组冗余坐标可以促进控制动力学方程的配方。然而,在该设置中,标准响应分析技术不能以简单的方式应用。例如,由于奇异矩阵的存在,定义和确定频域响应分析框架内的传递函数是具有挑战性的,因此,需要采用广义矩阵反转的机械。本文开发了一种有效的频域响应分析方法,用于通过依赖性坐标建模的结构动态系统。这是通过借助于最近提出的延长模态分析处理的摩洛彭罗第广义矩阵逆转录来完成的。结果表明,与涉及的广义逆转录的直接数值评估相比,在大大降低计算成本时,不仅在涉及的广义逆转录的直接数值评估方面,而且还促进了激励之间庆祝的随机振动输入 - 输出频域关系的推导和实现和响应功率谱矩阵。通过考虑多程度自由度剪切式结构和多体结构系统作为数值示例,证明了方法的有效性。

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