Multilevel Modeling as a Methodology for the Simulation of Human Mobility

Luca Serena, M. Marzolla, Gabriele D’angelo, S. Ferretti
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引用次数: 2

Abstract

Multilevel modeling is increasingly relevant in the context of modelling and simulation since it leads to several potential benefits, such as software reuse and integration, the split of semantically separated levels into sub-models, the possibility to employ different levels of detail, and the potential for parallel execution. The coupling that inevitably exists between the sub-models, however, implies the need for maintaining consistency between the various components, more so when different simulation paradigms are employed (e.g., sequential vs parallel, discrete vs continuous). In this paper we argue that multilevel modelling is well suited for the simulation of human mobility, since it naturally leads to the decomposition of the model into two layers, the “micro” and “macro” layer, where individual entities (micro) and long-range interactions (macro) are described. In this paper we investigate the challenges of multilevel modeling, and describe some preliminary results using prototype implementations of multilayer simulators in the context of epidemic diffusion and vehicle pollution.
基于多层次建模的人体运动仿真方法
多层建模在建模和仿真的上下文中越来越相关,因为它会带来一些潜在的好处,例如软件重用和集成、将语义分离的级别拆分为子模型、采用不同细节级别的可能性,以及并行执行的可能性。然而,子模型之间不可避免地存在耦合,这意味着需要保持不同组件之间的一致性,当采用不同的仿真范式时更是如此(例如,顺序与并行,离散与连续)。在本文中,我们认为多层次建模非常适合人类流动性的模拟,因为它自然地导致模型分解为两层,“微观”和“宏观”层,其中描述了个体实体(微观)和远程交互(宏观)。在本文中,我们研究了多层建模的挑战,并描述了在流行病扩散和车辆污染背景下使用多层模拟器的原型实现的一些初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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