应用于感应加热系统的线性片断 B-H 曲线非线性阻抗边界条件

COMPEL Pub Date : 2024-06-13 DOI:10.1108/compel-09-2023-0428
José Ortega, Óscar Lahuerta, Claudio Carretero, Juan Pablo Martínez, Jesús Acero
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引用次数: 0

摘要

目的 本文旨在将非线性阻抗边界条件(IBC)应用于频域仿真中的线性片断 B-H 曲线,以找出简单感应加热系统模型的等效阻抗。这适用于中等频率下涉及高导电材料的电磁系统,如感应加热系统。基于线性片断 B-H 曲线的模型简化了电磁描述,并有助于通过实验测量确定感应负载特性。这项工作旨在评估使用具有线性片断 B-H 曲线的材料非线性边界阻抗条件进行频域仿真的可行性,与时域仿真相比,可降低计算成本。原创性/价值本文研究了使用非线性边界阻抗条件来描述分段 B-H 曲线的材料,它可以近似于任何无滞后的依赖关系。研究结果与计算成本更高的时域模拟进行了比较。
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Non-linear impedance boundary condition from linear piecewise B-H curve applied to induction heating systems

Purpose

This paper aims to apply the non-linear impedance boundary condition (IBC) for a linear piecewise B–H curve in frequency domain simulations to find the equivalent impedance of a simple induction heating system model.

Design/methodology/approach

An electromagnetic description of the inductor system is performed to substitute the effects of the induction load, for a mathematical condition, the so-called IBC. This is suitable to be used in electromagnetic systems involving high conductive materials at medium frequencies, as it occurs in an induction heating system.

Findings

A reduction of the computational cost of electromagnetic simulation through the application of the IBC. The model based on linear piecewise B–H curve simplifies the electromagnetic description, and it can facilitate the identification of the induction load characteristics from experimental measurements.

Practical implications

This work is performed to assess the feasibility of using the non-linear boundary impedance condition of materials with linear piecewise B–H curve to simulate in the frequency domain with a reduced computational cost compared to time domain simulations.

Originality/value

In this paper, the use of the non-linear boundary impedance condition to describe materials with B–H curve by segments, which can approximate any dependence without hysteresis, has been studied. The results are compared with computationally more expensive time domain simulations.

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