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The Modeling of a Stochastic SIR Model for HIV/AIDS Epidemic Using Gillespie's Algorithm

机译:基于吉莱斯普算法的HIV / AIDS流行的随机SIR模型建模

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Mathematical modeling of disease has been an indispensable tool in accounting for disease transmission dynamics as well as disease spread. Epidemiological disease models have been used to explain the dynamics of HIV/AIDS in the population from the early 1900s. The models developed however faced considerable challenges ranging from inaccurate representation of natural data for deterministic models, to methods of forecasting such as statistical extrapolation which assumes that current conditions will prevail which is not always the case. Despite the spread of HIV/AIDS having been explored widely, not much literature is available on the Gillespie Algorithm based SIR model. This algorithm is able to give a statistically correct of the course of a disease with initial conditions to begin with and propensity functions to update the system. The purpose of this paper is to build on the concept of Gillespie's Algorithm based SIR models by developing a stochastic SIR model to simulate disease evolution in the population setting. The values produced through simulation by the model developed in this paper using a tau value as the time step of the model were compared to HIV/AIDS data from 1985 to 2018, given by NACC. We conclude that the simulated model reflects reality.
机译:疾病的数学建模已成为解决疾病传播动态和疾病传播的必不可少的工具。从1900年代初期开始,流行病学疾病模型已被用来解释艾滋病毒/艾滋病的动态。然而,开发的模型面临着巨大的挑战,从确定性模型的自然数据的不正确表示到统计推断等预测方法,这些方法假设当前的情况会普遍存在,但情况并非总是如此。尽管已经广泛研究了艾滋病毒/艾滋病的传播,但是关于基于吉莱斯比算法的SIR模型的文献很少。该算法能够从初始条件开始对疾病的过程进行统计学上的正确校正,并具有倾向性功能来更新系统。本文的目的是通过开发一种随机SIR模型来模拟人口环境中疾病的演变,从而基于基于吉莱斯皮算法的SIR模型的概念。将本文开发的模型使用tau值作为模型的时间步长,通过仿真得出的值与NACC提供的1985年至2018年的HIV / AIDS数据进行了比较。我们得出结论,模拟模型反映了现实。

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