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An efficient and accurate method of representing magnetic saturation in physical-variable models of synchronous machines

机译:在同步电机的物理变量模型中表示磁饱和的有效而准确的方法

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When analyzing machine/converter systems it is convenient to represent the stator variables in physical (abc) form. It has been shown that a physical-variable voltage-behind-reactance form of the synchronous machine model can be derived which is numerically more efficient than existing physical-variable models. In this research, a new voltage-behind-reactance model is derived which incorporates the effects of magnetic saturation. This model is shown to have the same numerical efficiency of the unsaturated model and is readily implemented in either circuit-based or differential-equation based simulation languages. An example system is provided which demonstrates the accuracy and efficiency of this model for a wide-range in operating conditions.
机译:分析机器/变频器系统时,以物理(abc)形式表示定子变量非常方便。已经表明,可以导出同步电机模型的物理可变电压后电抗形式,其在数值上比现有的物理可变模型更有效。在这项研究中,推导了一个新的电压落后电抗模型,其中包含了磁饱和的影响。该模型具有与不饱和模型相同的数值效率,可以轻松地在基于电路或基于微分方程的仿真语言中实现。提供了一个示例系统,该系统演示了该模型在各种运行条件下的准确性和效率。

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