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Parallel Time-stepped Analysis of Induction Machines With Newton-Raphson Iteration and Domain Decomposition

机译:Newton-Raphson迭代和域分解的平行时间阶梯分析

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This paper presents an approach for the efficient solution of multi-slice two-dimensional eddy-current finite-element analysis of skewed induction machines. The Newton-Raphson method is applied to linearize the nonlinear field equations for each slice and domain decomposition is then utilized to reduce the field equations on to the circuit equations. The proposed algorithm reduces the computational cost of multi-slice simulation, when compared to the case without domain decomposition. In order to reduce further the elapsed time during simulations, the algorithm may be executed in parallel with little additional overhead. Simulation results for serial and parallel computation are presented.
机译:本文介绍了一种高效解决偏置电机的多切片二维涡流有限元分析的方法。牛顿Raphson方法应用于线性化每个切片的非线性场方程,然后利用域分解来减少电路方程的场方程。与没有域分解的情况相比,该算法降低了多切片模拟的计算成本。为了在仿真期间进一步减少经过的时间,可以在很少的额外开销中并行地执行算法。提出了串行和并行计算的仿真结果。

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