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首页> 外文期刊>International Journal of Reliability, Quality and Safety Engineering >A Simple Explicit Meta-Model for Probabilistic Design of Dynamic Systems with Multiple Mixed Inputs
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A Simple Explicit Meta-Model for Probabilistic Design of Dynamic Systems with Multiple Mixed Inputs

机译:具有多个混合输入的动态系统概率设计的简单显式元模型

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摘要

Most systems have multiple inputs that comprise of a mixture of excitations and component parameters. Excitations are different from component parameters in that they are always functions of time. In mechanical systems, these include applied forces, applied displacements, system settings, systems configurations and operating conditions. It would be convenient to include multiple excitations and multiple component parameters in a meta-model to take advantage of the inherent computation speed needed for timely probability-based design optimization. In the development of the meta-model in this paper, we treat the component parameters in the same manner as the excitations and thus, in both cases, form time-sampled vectors. A design-of-experiments training regime creates a single input matrix, and using the mechanistic model, a single output matrix. Finally, a simple, explicit, meta-model is developed that turns an arbitrary vector of contiguous multiple excitations and multiple component parameters into the corresponding output vector (herein, the response). The approach provides an appealing and efficient solution to the multiple, mixed input problem, and in addition, requires only off-the-shelf computer software. The efficacy of the meta-model is shown through probability-based design optimization (PBDO) of a tire-wheel assembly, modelled as a mass-spring-damper system with nonlinear hysteresis, under a combination of practical inputs.
机译:大多数系统具有多个输入,其中包含激励和组件参数的混合。兴奋与组件参数的不同之处在于,它们始终是时间的函数。在机械系统中,这些包括施加的力,施加的位移,系统设置,系统配置和操作条件。在元模型中包含多个激励和多个组件参数以利用及时的基于概率的设计优化所需的固有计算速度将很方便。在本文的元模型开发中,我们以与激励相同的方式对待组件参数,因此,在两种情况下,都形成了时间采样向量。实验设计培训制度创建单个输入矩阵,并使用机械模型创建单个输出矩阵。最后,开发了一个简单,显式的元模型,该模型将连续的多个激励和多个分量参数的任意矢量转换为相应的输出矢量(此处为响应)。该方法为多种混合输入问题提供了一种有吸引力且有效的解决方案,此外,它仅需使用现成的计算机软件即可。通过对轮胎-车轮组件进行基于概率的设计优化(PBDO),并结合实际输入,将其建模为具有非线性滞后的质量弹簧-减振器系统,从而展示了元模型的有效性。

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