论文标题

灵活的ETAS模型的问题驱动的集合

Question-driven ensembles of flexible ETAS models

论文作者

Mizrahi, Leila, Nandan, Shyam, Savran, William, Wiemer, Stefan, Ben-Zion, Yehuda

论文摘要

新地震预测模型的开发通常是由以下互补目标之一激发的:获得对理事物理学的新见解并产生通过客观指标量化的改进的预测。通常,一个是以另一个为代价的。在这里,我们提出了一种问题驱动的集合(QDE)建模方法来解决这两个目标。我们首先描述了灵活的ETA模型,其中我们放松了模型校准期间参数定义的余震生产率和背景地震速率的假设。取而代之的是,生产率和背景速率均通过数据校准,以便它们的变异性最佳地由模型表示。然后,我们考虑了南加州和意大利的伪标准预测实验中的64个QDE模型。 QDE模型是通过结合不同成分模型的模型参数来构建的,其中如何结合参数的规则是由有关未来地震性的问题定义的。 QDE模型可以解释为使用不同成分模型的不同问题的模型。我们发现某些模型最能解决两个区域中相同的问题,并且QDE模型可以大大优于标准ETA和所有成分模型。最佳性能QDE模型是通过允许灵活的背景地震性和柔性余震生产率的模型组合而获得的,其中前者将背景地震的空间分布以及将地震性分配到背景事件和余震中的空间分布,而后者则用于参数化Spatio-temporal-temporporal shatporal shertshockss shatporrence shatporrence shertshockss shatporrence shatporrence of shatporrence of shatporrence。

The development of new earthquake forecasting models is often motivated by one of the following complementary goals: to gain new insights into the governing physics and to produce improved forecasts quantified by objective metrics. Often, one comes at the cost of the other. Here, we propose a question-driven ensemble (QDE) modeling approach to address both goals. We first describe flexible ETAS models in which we relax the assumptions of parametrically defined aftershock productivity and background earthquake rates during model calibration. Instead, both productivity and background rates are calibrated with data such that their variability is optimally represented by the model. Then we consider 64 QDE models in pseudo-prospective forecasting experiments for Southern California and Italy. QDE models are constructed by combining model parameters of different ingredient models, where the rules for how to combine parameters are defined by questions about the future seismicity. The QDE models can be interpreted as models which address different questions with different ingredient models. We find that certain models best address the same issues in both regions, and that QDE models can substantially outperform the standard ETAS and all ingredient models. The best performing QDE model is obtained through the combination of models allowing flexible background seismicity and flexible aftershock productivity, respectively, where the former parameterizes the spatial distribution of background earthquakes and the partitioning of seismicity into background events and aftershocks, and the latter is used to parameterize the spatio-temporal occurrence of aftershocks.

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