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A variational method for identifying a spacewise-dependent heat source

机译:识别与空间有关的热源的变分方法

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摘要

The inverse problem of determining a spacewise-dependent heat source for the parabolic heat equation using the usual conditions of the direct problem and information from one supplementary temperature measurement at a given instant of time is studied. This spacewise-dependent temperature measurement ensures that this inverse problem has a unique solution, but the solution is unstable and hence the problem is ill-posed. We propose a variational conjugate gradient-type iterative algorithm for the stable reconstruction of the heat source based on a sequence of well-posed direct problems for the parabolic heat equation which are solved at each iteration step using the boundary element method. The instability is overcome by stopping the iterative procedure at the first iteration for which the discrepancy principle is satisfied. Numerical results are presented which have the input measured data perturbed by increasing amounts of random noise. The numerical results show that the proposed procedure yields stable and accurate numerical approximations after only a few iterations.
机译:研究了使用直接问题的通常条件和给定时间的一次补充温度测量获得的信息来确定抛物线热方程的空间相关热源的反问题。这种与空间有关的温度测量可确保此反问题具有唯一的解决方案,但是该解决方案不稳定,因此存在问题。我们基于抛物线热方程的一系列正定直接问题的序列,提出了一种变分共轭梯度型迭代算法,用于热源的稳定重构,该问题在每个迭代步骤都使用边界元方法求解。通过在满足差异原理的第一次迭代中停止迭代过程,可以克服这种不稳定性。给出了数值结果,这些数值使输入的测量数据受到越来越多的随机噪声的干扰。数值结果表明,所提出的过程仅经过几次迭代即可产生稳定且准确的数值近似值。

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  • 来源
    《IMA Journal of Applied Mathematics》 |2007年第6期|748-760|共13页
  • 作者

    B. Tomas Johansson and;

  • 作者单位

    School of Mathematics University of Birmingham Edgbaston Birmingham B15 2TT UK Department of Applied Mathematics University of Leeds Leeds LS2 9JT UK;

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  • 正文语种 eng
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