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Impact of dynamic cross-saturation on accuracy of saturated synchronous machine models

机译:动态交叉饱和对饱和同步电机模型精度的影响

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Cross-saturation effect in synchronous machines has been a subject of considerable attention. Inclusion of the cross-saturation in the machine model has two consequences. The first one, called here "steady-state cross-saturation", consists of dependence of the steady-state d-q axis magnetizing inductances on the currents in both axes. The second one, termed here "dynamic cross-saturation", is the existence of nonzero elements in the system matrix, that describe cross coupling between d- and q-axis. Dynamic cross-saturation appears in all the saturated machine models, regardless of the selected set of state-space variables, with the exception of the winding flux linkage state-space model. The aim of this paper is to compare behavior of various models when dynamic cross-saturation is neglected. It is shown that the impact of dynamic cross-saturation on accuracy depends on the selected set of state-space variables. In the majority of cases omission of dynamic cross-saturation leads to very inaccurate results. However, it is found that for one particular class of models, omission of dynamic cross-saturation has practically no impact on accuracy. These models therefore fully describe the complete saturation effect by means of only continuous variation of the d-q axis magnetizing inductances.
机译:同步电机中的交叉饱和效应一直是相当受关注的主题。在机器模型中包含交叉饱和有两个结果。第一个,这里称为“稳态交叉饱和”,由稳态d-q轴励磁电感与两个轴上的电流有关。第二个在这里称为“动态交叉饱和”,是系统矩阵中非零元素的存在,这些元素描述了d轴和q轴之间的交叉耦合。在所有饱和电机模型中都会出现动态交叉饱和,而与所选的状态空间变量集无关,绕组磁链状态空间模型除外。本文的目的是在忽略动态交叉饱和时比较各种模型的行为。结果表明,动态交叉饱和对精度的影响取决于所选择的状态空间变量集。在大多数情况下,忽略动态交叉饱和会导致非常不准确的结果。但是,发现对于一类特定的模型,省略动态交叉饱和实际上对精度没有影响。因此,这些模型仅通过d-q轴励磁电感的连续变化来完全描述完整的饱和效应。

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