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Solving inverse coefficient problems of non-uniform fractionally diffusive reactive material by a boundary functional method

机译:用边界函数法求解不均匀分数扩散反应材料的反系数问题

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The inverse coefficient problems for estimating the unknown space-time dependent conductivity function and reaction coefficient function of a time-fractional diffusion reaction equation for non-uniform material are solved in the paper, without needing of initial condition, final time condition and internal measurement. We tackle these inverse coefficient problems supplementing with boundary data. After a homogenization technique by using these boundary data, a sequence of boundary functions are derived, which together with the zero element constitute a linear space. As an approximation, a boundary functional is proved in the linear space, of which the time-dependent energy is preserved for the energetic boundary function at each time step. The linear systems and iterative algorithms used to recover the unknown conductivity function and reaction coefficient with energetic boundary functions as bases are developed, which are convergent fast at each time step. The data required are merely the boundary temperatures and fluxes, and the boundary values and slopes of unknown functions to be recovered. The accuracy and robustness of present methods are confirmed by comparing the estimated results under large noise with exact solutions.
机译:本文解决了用于估计不均匀材料的时空扩散反应方程的未知时空相关电导率函数和反应系数函数的反系数问题,无需初始条件,最终时间条件和内部测量。我们解决了这些反系数问题,并补充了边界数据。通过使用这些边界数据进行均化技术后,可以导出一系列边界函数,这些边界函数与零元素一起构成线性空间。作为近似,在线性空间中证明了一个边界函数,其中在每个时间步长中,能量依赖的边界函数都保留了随时间变化的能量。建立了以能量边界函数为基础恢复未知电导率函数和反应系数的线性系统和迭代算法,它们在每个时间步均快速收敛。所需的数据仅是边界温度和通量,以及要恢复的未知函数的边界值和斜率。通过比较大噪声下的估计结果与精确解决方案,可以确认本方法的准确性和鲁棒性。

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