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A General Method to Compute the Electric Flux Lines between Two Magnet Wires in Close Contact and Its Application for the Evaluation of Partial Discharge Risks in the Slots of Electric Machines Embedded in Future Transportation Systems

机译:一种在密闭接触中计算两种磁导线之间的电量线的一般方法及其在未来运输系统中嵌入电机槽中局部放电风险的应用

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The sizing of the Electrical Insulation System (EIS) is an important challenge in electric motors of higher specific power driven by faster inverters. That keeps increasing the electric stress which the winding is submitted in the stator slot. Consequently, Partial Discharges (PD) are more likely to occur. Nowadays, the Paschen’s criterion is widely used to evaluate the risk of partial discharge. It requires the knowledge of electric field lines. This paper presents a method to precisely compute the electric field lines in a two-dimensional (2D) electrostatic problem. The field of study is composed of two magnet wires in close contact. Such configuration is representative of the turn-to-turn style="font-family:Verdana;"> style="font-family:Verdana;"> style="font-family:Verdana;"> interaction in an electric motor slot. The problem is solved using the scalar potential formulation only. The notion of flux tubes is used style="font-family:Verdana;"> style="font-family:Verdana;"> style="font-family:Verdana;">for the style="font-family:Verdana;"> style="font-family:Verdana;"> style="font-family:Verdana;">post process>> style="font-family:""> style="font-family:Verdana;"> style="font-family:Verdana;"> style="font-family:Verdana;">of >> style="font-family:""> style="font-family:Verdana;">the electric field lines in a developed numerical code on Matlab. The developed method is compared to a ballistic method already included on Matlab. The work presented here is included in an automatic tool to suppress or reduce the partial discharge risk in a stator slot of style="font-family:Verdana;">high style="font-family:Verdana;"> power density motor destined style="font-family:Verdana;"> style="font-family:Verdana;"> style="font-family:Verdana;">for style="font-family:Verdana;"> style="font-family:Verdana;"> style="font-family:Verdana;"> future transportation systems.
机译:电绝缘系统(EIS)的尺寸是通过更快的逆变器驱动的更高特定功率的电动机中的重要挑战。这不断增加绕组在定子槽中提交的电力应力。因此,更容易发生部分放电(PD)。如今,Paschen的标准被广泛用于评估局部放电的风险。它需要电场线的知识。本文介绍了一种精确地计算二维(2D)静电问题中的电场线的方法。研究领域由两个紧密接触的磁线组成。这种配置代表了转弯 style =“font-family:verdana;”> style =“font-family:verdana;”> <跨度样式=“Font-Family:Verdana;”>电动机插槽中的交互。仅使用标量潜在配方解决了问题。使用通量管的概念 y style =“font-family:verdana;”> style =“font-family:verdana;”> style =“ Font-Family:Verdana;“> style =”font-family:verdana;“> style =”font-family:verdana;“> style =“font-family:verdana;”>帖子过程 > > style =“font-family:”“> style =“font-family:verdana;”> style =“font-family:verdana;”> style =“font-family:verdana;”> < / span> > > style =“font-family:”“”> style =“font-family:verdana;”> Matlab上发达的数字代码中的电场线。将开发的方法与已经包含在MATLAB上的弹道方法进行比较。这里提出的工作包括在自动工具中,以抑制或减少 样式=“字体家族:verdana;”> high style =“的定子插槽中的部分放电风险。 Font-Family:Verdana;“>电源密度电机到期 style =”font-family:verdana;“> style =”font-family: verdana;“> style =”font-family:verdana;“>对于 style =”font-family:verdana;“> style =”font-家庭:Verdana;“> <跨度样式=”Font-Family:Verdana;“>未来的运输系统。

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