模拟COVID-19大流行动态行为的逆可靠性问题的提出与求解

IF 1 Q3 URBAN STUDIES
F. Lobato, G. Platt, G. Libotte, A. S. Silva Neto
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引用次数: 3

摘要

不同类型的数学模型已被用于预测新型冠状病毒(COVID-19)的动态行为。其中许多涉及反问题的公式和解。通常将模型、设计变量向量和系统参数作为确定性值来考虑这类问题。在这篇贡献中,评估了一种基于双循环迭代过程的方法,用于评估不确定性对逆问题的影响。内部优化循环用于寻找与最高概率值相关的解,外部循环是用于确定设计变量向量的规则优化循环。对于这项任务,我们使用了逆可靠性方法和差分进化算法。为了说明目的,考虑中国疫情的真实数据和基本再现数(R0)的不确定性,应用所提出的方法估计与COVID-19大流行动态行为相关的SIRD(易感-感染-恢复-死亡)模型的参数。结果表明,可靠性的提高意味着目标函数值的提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formulation and Solution of an Inverse Reliability Problem to Simulate the Dynamic Behavior of COVID-19 Pandemic
Different types of mathematical models have been used to predict the dynamic behavior of the novel coronavirus (COVID-19). Many of them involve the formulation and solution of inverse problems. This kind of problem is generally carried out by considering the model, the vector of design variables, and system parameters as deterministic values. In this contribution, a methodology based on a double loop iteration process and devoted to evaluate the influence of uncertainties on inverse problem is evaluated. The inner optimization loop is used to find the solution associated with the highest probability value, and the outer loop is the regular optimization loop used to determine the vector of design variables. For this task, we use an inverse reliability approach and Differential Evolution algorithm. For illustration purposes, the proposed methodology is applied to estimate the parameters of SIRD (Susceptible-Infectious-RecoveryDead) model associated with dynamic behavior of COVID-19 pandemic considering real data from China’s epidemic and uncertainties in the basic reproduction number (R0). The obtained results demonstrate, as expected, that the increase of reliability implies the increase of the objective function value.
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来源期刊
CiteScore
0.70
自引率
35.30%
发文量
0
审稿时长
4 weeks
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