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A Comparison of Multilevel Solvers for the Cardiac Bidomain Equations

机译:心脏双畴方程的多级解算器比较

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Computing the extracellular potentials in a bidomain cardiac activation model is a computationally significant step in the solution process. Thus, using a fast solver can drastically reduce the overall time of simulation. Solving for the extracellular potentials involves inverting the matrix coming from the elliptic equation describing the extracellular-intracellular potential coupling. Elliptic equations are known to yield matrices that become progressively more ill-conditioned as the spatial resolution is increased. However, optimal multilevel solution methods are known to exist for these equations given enough effort is placed into developing the correct solution components. Two multilevel solvers that automatically perform much of this work are black box multigrid (BOXMG) and algebraic multigrid (AMG). In this paper, we compare the performance of BOXMG and AMG as solvers for the elliptic component of the bidomain equations. Our investigation is with respect to simulations of reentry in two-dimensional cardiac tissue
机译:在双域心脏激活模型中计算细胞外电位是解决过程中一个重要的计算步骤。因此,使用快速求解器可以大大减少仿真的总时间。解决细胞外电势涉及对来自描述细胞外-细胞内电势耦合的椭圆方程的矩阵求逆。已知椭圆方程产生的矩阵随着空间分辨率的提高而变得越来越不适。但是,已知在为开发正确的求解组件付出了足够的努力的情况下,对于这些方程式存在最佳的多级求解方法。自动执行大部分工作的两个多级求解器是黑盒多重网格(BOXMG)和代数多重网格(AMG)。在本文中,我们比较了BOXMG和AMG作为双畴方程椭圆分量求解器的性能。我们的研究是针对二维心脏组织中折返的模拟

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