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Multilevel Methodology For Simulation Of Spatio-Temporal Systems With Heterogeneous Activity: Application To Spread Of Valley Fever Fungus

机译:多级活动时空系统模拟的多层次方法学:在谷热真菌传播中的应用

摘要

Spatio-temporal systems with heterogeneity in their structure and behavior have two major problems. The first one is that such systems extend over very large spatial and temporal domains and consume a lot of resources to simulate that they are infeasible to study with current platforms. The second one is that the data available for understanding such systems is limited. This also makes it difficult to get the data for validation of their constituent processes while simultaneously considering their global behavior. For example, the valley fever fungus considered in this dissertation is spread over a large spatial grid in the arid Southwest and typically needs to be simulated over several decades of time to obtain useful information. It is also hard to get the temperature and moisture data at every grid point of the spatial domain over the region of study. In order to address the first problem, we develop a method based on the discrete event system specification which exploits the heterogeneity in the activity of the spatio-temporal system and which has been shown to be effective in solving relatively simple partial differential equation systems. The benefit of addressing the first problem is that it now makes it feasible to address the second problem.We address the second problem by making use of a multilevel methodology based on modeling and simulation and systems theory. This methodology helps us in the construction of models with different resolutions (base and lumped models). This allows us to refine an initially constructed lumped model with detailed physics-based process models and assess whether they improve on the original lumped models. For that assessment, we use the concept of experimental frame to delimit where the improvement is needed. This allows us to work with the available data, improve the component models in their own experimental frame and then move them to the overall frame. In this dissertation, we develop a multilevel methodology and apply it to a valley fever model. Moreover, we study the model's behavior in a particular experimental frame of interest, namely the formation of new sporing sites.
机译:在结构和行为上具有异质性的时空系统存在两个主要问题。第一个是这样的系统扩展到非常大的时空范围,并消耗大量资源来模拟它们无法在当前平台上进行研究。第二个问题是可用于理解此类系统的数据有限。这也使得很难在获取数据的同时验证其组成过程,同时考虑其全局行为。例如,本论文考虑的谷类发烧真菌分布在干旱西南地区的大型空间网格上,通常需要模拟几十年才能获得有用的信息。在研究区域的空间域的每个网格点也很难获得温度和湿度数据。为了解决第一个问题,我们开发了一种基于离散事件系统规范的方法,该方法利用了时空系统活动中的异质性,并且已证明在解决相对简单的偏微分方程组方面有效。解决第一个问题的好处是现在使解决第二个问题变得可行。我们通过使用基于建模和仿真以及系统理论的多层次方法论来解决第二个问题。这种方法学可以帮助我们构建具有不同分辨率的模型(基本模型和集总模型)。这使我们可以使用基于物理的详细过程模型来完善最初构建的集总模型,并评估它们是否在原始集总模型上有所改进。对于该评估,我们使用实验框架的概念来界定需要改进的地方。这使我们可以使用可用数据,在自己的实验框架中改进组件模型,然后将其移至整个框架。本文提出了一种多层次的方法论,并将其应用于谷热模型。此外,我们在特定的实验框架内研究模型的行为,即形成新的孢子位点。

著录项

  • 作者

    Jammalamadaka Rajanikanth;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 EN
  • 中图分类

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