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Inductive coupling matrix of a multiconductor system for a winding-on-core prototype

机译:芯上绕组原型的多导体系统的电感耦合矩阵

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Broadband circuit models for electric machines are effective means to understand, predict, and control the phenomenon of conducted Electromagnetic Interference (EMI) from immunity/susceptibility perspective. These models should cover the capacitive and inductive coupling behavior of the component along the frequency range of interest. Circuit models used under generic SPICE simulation softwares are very helpful for design-related and troubleshooting activities. In this paper the inductive coupling for a winding on a laminated ferromagnetic core prototype has been investigated and analyzed with the aid of freely-available FEMM software package. Inductive coupling analysis resulted in the generation of a complex-numbered inductive coupling matrix expressing a certain wiring arrangement. This is achieved by automatically generating the desired geometry and assigning boundary conditions for the problem under FEMM through Lua scripting language and then solving for magneto-static and time-harmonic magnetic cases for both self- and mutual- inductances for every conductor in the multi-conductor system. Post-Processing of the solutions is performed and the results are linked back to MATLAB® and stored in a matrix format. The inductive coupling of the winding turns, along with the capacitive coupling, forms the resulting SPICE circuit model which is compared against prototype measurements taken by Rhode & Schwarz (R&S®) vector network analyzer.
机译:从抗扰性/磁化率的角度来看,电机的宽带电路模型是理解,预测和控制传导电磁干扰(EMI)现象的有效手段。这些模型应涵盖所关注频率范围内组件的电容性和电感性耦合行为。通用SPICE仿真软件下使用的电路模型对于与设计有关的活动和故障排除活动非常有帮助。在本文中,借助于免费提供的FEMM软件包,对叠层铁磁芯原型上的绕组的电感耦合进行了研究和分析。电感耦合分析导致生成表示特定布线布置的复数电感耦合矩阵。通过使用Lua脚本语言自动生成所需的几何形状并为FEMM下的问题分配边界条件,然后针对多导体中的每个导体的自感和互感,解决静磁和时谐磁情况,从而实现这一目标。导体系统。对解决方案进行后处理,并将结果链接回MATLAB®,并以矩阵格式存储。绕组的电感耦合与电容耦合一起形成了最终的SPICE电路模型,并将其与Rhode&Schwarz(R&S®)矢量网络分析仪进行的原型测量进行比较。

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