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Algorithms for Fast Simulation of Transformer Windings for Diagnostic Testing of Power Transformers

机译:用于电力变压器诊断测试的变压器绕组快速仿真算法

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Accurate high-frequency simulation of power transformer windings often involves detailed turn-by-turn modeling of the winding structure. The most detailed models currently in existence use multiphase transmission systems with frequency-dependent losses. The conventional Electromagnetic Transients Program method of solving these systems involves eigenvalue decompositions for hyperbolic corrections as well as matrix inversions, both of which are prohibitively computationally expensive. This paper presents three optimized algorithms for improving the simulation speed of the most common circuit models by taking advantage of useful mathematical identities. A diakoptic method of splitting the system into series and shunt elements to exploit the sparsity of the shunt admittance system is also presented. The result is a significant speed increase, making the simulation of large systems more feasible and minimizing the need for circuit-reduction techniques
机译:电力变压器绕组的准确高频仿真通常涉及到绕组结构的详细的逐段建模。当前存在的最详细的模型使用具有取决于频率的损耗的多相传输系统。解决这些系统的常规电磁瞬变程序方法涉及用于双曲线校正以及矩阵求逆的特征值分解,这两者在计算上都非常昂贵。本文提出了三种优化算法,可通过利用有用的数学标识来提高最常用电路模型的仿真速度。还提出了一种将系统分成串联和并联元件以利用并联导纳系统的稀疏性的透光方法。结果是速度显着提高,从而使大型系统的仿真更加可行,并且最大限度地减少了对电路缩减技术的需求

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