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Identification of walking human model using agent-based modelling

机译:使用基于代理的建模识别行走的人体模型

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摘要

The interaction of walking people with large vibrating structures, such as footbridges and floors, in the vertical direction is an important yet challenging phenomenon to describe mathematically. Several different models have been proposed in the literature to simulate interaction of stationary people with vibrating structures. However, the research on moving (walking) human models, explicitly identified for vibration serviceability assessment of civil structures, is still sparse. In this study, the results of a comprehensive set of FRF-based modal tests were used, in which, over a hundred test subjects walked in different group sizes and walking patterns on a test structure. An agent-based model was used to simulate discrete traffic-structure interactions. The occupied structure modal parameters found in tests were used to identify the parameters of the walking individual's single-degree-of-freedom (SDOF) mass-spring-damper model using 'reverse engineering' methodology. The analysis of the results suggested that the normal distribution with the average of μ = 2.85Hz and standard deviation of σ = 0.34Hz can describe human SDOF model natural frequency. Similarly, the normal distribution with μ = 0.295 and a = 0.047 can describe the human model damping ratio. Compared to the previous studies, the agent-based modelling methodology proposed in this paper offers significant flexibility in simulating multi-pedestrian walking traffics, external forces and simulating different mechanisms of human-structure and human-environment interaction at the same time.
机译:步行人与大型振动结构(如行人天桥和地板)在垂直方向上的相互作用是一个重要的但具有挑战性的现象,需要用数学方法进行描述。文献中已经提出了几种不同的模型来模拟平稳人与振动结构的相互作用。但是,对于明确确定用于民用建筑的振动可使用性评估的移动(行走)人体模型的研究仍然很少。在这项研究中,使用了一整套基于FRF的模态测试的结果,其中有一百多名测试对象以不同的小组规模和行走模式行走在测试结构上。基于代理的模型用于模拟离散的流量结构交互。测试中发现的占用结构模态参数用于使用“逆向工程”方法来识别行走个体的单自由度(SDOF)质量弹簧阻尼器模型的参数。结果分析表明,平均μ= 2.85Hz且正态分布σ= 0.34Hz的正态分布可以描述人SDOF模型的固有频率。类似地,μ= 0.295和a = 0.047的正态分布可以描述人体模型的阻尼比。与以前的研究相比,本文提出的基于主体的建模方法在模拟多人步行交通,外力以及同时模拟人与结构和人与环境相互作用的不同机制方面提供了显着的灵活性。

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