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Automatic calibration of dynamic and heterogeneous parameters in agent-based models

机译:基于代理的模型中动态和异构参数的自动校准

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Simulation has been applied to diverse domains such as urban growth modeling and market dynamics modeling. Some of these applications may require validations, based on some real-world observations modeled in the simulation. This validation can be conducted as either qualitative face-validation or quantitative empirical validation; however, as the importance and accumulation of data grows, the importance of quantitative validation has been highlighted in recent studies. The key component of quantitative validation is finding a calibrated set of parameters to regenerate the real-world observations in the simulation models. While the parameter of interest to be calibrated has hitherto been fixed throughout simulation executions, we expand the static parameter calibration in two dimensions in this study, dynamically and heterogeneously. The dynamic calibration changes the parameter values over the simulation period by reflecting the simulation output trend, and the heterogeneous calibration changes the parameter values per simulated entity clusters by considering the similarities of the entity states. We experimented with the proposed calibrations on a hypothetical case and a real-world case. For the hypothetical scenario, we used the wealth distribution model to illustrate how our calibration works. For the real-world scenario, we selected the real estate market model. The models were selected, because of two reasons. First, they have heterogeneous entities, being agent-based models. Second, they are agent-based models exhibiting real-world trends over time.
机译:模拟已应用于城市增长建模和市场动态建模等多种域。基于在模拟中建模的一些真实观测,其中一些应用可能需要验证。该验证可以作为定性面部验证或定量实证验证进行;然而,随着数据的重要性和积累的增长,在最近的研究中突出了定量验证的重要性。定量验证的关键组成部分正在找到校准的一组参数,以重新生成模拟模型中的真实观察。虽然在整个仿真执行过程中,迄今为止要校准的感兴趣的参数已经解决,但我们在本研究中扩展了两种维度的静态参数校准,动态和异构地。通过反映模拟输出趋势,动态校准通过模拟期间改变参数值,并且通过考虑实体状态的相似性,异构校准通过考虑每个模拟实体集群来改变参数值。我们在假设案例和真实案例上试验了拟议的校准。对于假设的方案,我们使用了财富分配模型来说明我们的校准方式。对于真实世界的情景,我们选择了房地产市场模式。由于两个原因,选择了模型。首先,它们具有异质实体,是基于代理的模型。其次,它们是基于代理的模型,随着时间的推移表现出真实世界的趋势。

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