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A numerical algorithm of parameter estimation for dynamic model for HIV infection of CD4+ t cells

机译:CD4 + T细胞HIV感染动态模型参数估计数值算法

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The problem of approximation the values of 6 coefficients of a HIV infection basic model by knowing how viremia and target cells blood concentrations change as time goes on is considered. Above inverse problem for HIV dynamic model is reduced to the problem of minimization a least squares misfit function. A 6-dimensional Nelder-Mead algorithm is implemented to approximate this minimum. For a narrow interval to mean values of unknown coefficients (about 33% of the total bandwidth between experimental extreme coefficients values), proposed algorithm demonstrates a good convergence, with a probability of 17% for the Nelder-Mead algorithm. Results of numerical experiment are demonstrated and discussed.
机译:考虑了近似毒病症感染基本模型的6系数值的问题。考虑了随着时间的推移,患者血症和靶细胞血液浓度如何变化。高于HIV动态模型的逆问题减少到最小化最小二乘函数的问题。实现了6维Nelder-Mead算法以近似该最小值。对于狭窄的间隔到未知系数的意义值(实验性极端系数值之间的总带宽的约33%),所提出的算法表明了良好的收敛性,对于Nelder-Mead算法,概率为17%。证实和讨论了数值实验的结果。

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