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On the convergence of relaxation schemes to couple phasor-mode and electromagnetic transients simulations

机译:关于相量模和电磁瞬态仿真耦合的弛豫方案的收敛性

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Hybrid simulations combining phasor-mode and electromagnetic transients models aim at taking advantage of computational speed of the former and accuracy of the latter. For simulation accuracy, a relaxation process is used, which consists of iterating between both models. The convergence properties of this relaxation process are investigated. The speed of convergence is assessed when the variables exchanged at the interface between both models are respectively pure voltage/current sources, Nor-ton/Thévenin equivalents, or a combination of them. Iteratively updated Norton/Thévenin equivalents are shown to drastically reduce the number of relaxation iterations.
机译:结合相量模式和电磁瞬态模型的混合仿真旨在利用前者的计算速度和后者的准确性。为了提高仿真的准确性,使用了松弛过程,该过程包括在两个模型之间进行迭代。研究了该松弛过程的收敛性质。当在两个模型之间的接口处交换的变量分别是纯电压/电流源,诺顿/特维宁当量或它们的组合时,可以评估收敛速度。迭代更新的Norton /Thévenin等价物可以显着减少松弛迭代的次数。

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