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Multi-Slice Modeling in Circuit-Field Coupled Systems Using Finite-Element and Modified Nodal Analyses

机译:使用有限元和修正节点分析的电路场耦合系统中的多层建模

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We propose a systematic method for interfacing different 2-D low-frequency electromagnetic field slices and nonidentical multi-port circuit networks using finite-element (FE) and modified nodal analyses. Each independent field slice has its own length, geometry, materials, boundary conditions, and number of filamentary and massive conductors. Similarly, each multi-port circuit network can have different circuit elements, topology, and number of ports. As a result, field slices are not required to be successively connected, since multi-port circuit networks can exist between them. Thus, solutions for virtually any possible configuration of 2-D circuit-field coupled systems are possible. The number of slices and multi-port networks does not affect the general form of the final system of equations, which is symmetric for most practical cases. Although we developed the methodology for 2-D time-harmonic magnetic problems, it can be readily extended to the transient case. We analyzed an induction motor to test the proposed multi-slice FE approach and validated the results using the total short-circuit leakage reactance and commercial software (Flux2D).
机译:我们提出了一种使用有限元(FE)和改进的节点分析技术将不同的二维低频电磁场切片与不相同的多端口电路网络接口的系统方法。每个独立的场片都有其自己的长度,几何形状,材料,边界条件以及丝状和块状导体的数量。类似地,每个多端口电路网络可以具有不同的电路元件,拓扑和端口数量。结果,不需要在场片之间进行连续连接,因为在它们之间可以存在多端口电路网络。因此,实际上可以解决2-D电路场耦合系统的任何可能配置。切片和多端口网络的数量不会影响最终方程组的一般形式,该方程组在大多数实际情况下都是对称的。尽管我们开发了二维时谐波磁问题的方法,但可以很容易地扩展到瞬态情况。我们分析了感应电动机,以测试提出的多层有限元方法,并使用总短路漏电抗和商用软件(Flux2D)验证了结果。

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