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An application of the impedance boundary condition for the design of coils used in domestic induction heating systems

机译:阻抗边界条件在家用感应加热系统线圈设计中的应用

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摘要

Purpose - The aim of this paper is to propose a design procedure based on the impedance boundary condition in order to simplify the design of inductors for domestic induction heating systems.Design/methodology/approach - An electromagnetic description of the inductor system is performed to substitute the effects of a component, named system load, for a mathematical condition, the so-called impedance boundary conditioa This is suitable to be used in electromagnetic systems involving high conductive materials at medium frequencies, as it occurs in an induction heating system. Applying this approach, a simplified electrical model arises from the general system. Findings - A considerable reduction in the efforts devoted to design a coil for induction heating purposes is achieved, because the solution considering the variation of three physical parameters are projected to a one-dimensional space only depending on a single parameter named corrected penetration depth. This proposal assesses the working conditions of standard induction systems. Practical implications - This work is performed to achieve a better understanding of the fundamentals involved in the electromagnetic modeling of an induction heating system. The main goal is the definition of a better coil design process because it is probably the most time-consuming task in the construction of a complete induction system.Originality/value - In this paper, the so-called corrected penetration depth is defined. This single parameter allows explaining the influence of the physical parameter of the inductor load and the excitation frequency in the equivalent of the complete inductor system. The numerical results carried out considering the corrected penetration depth instead of the physical load properties have been validated experimentally.
机译:目的-本文的目的是提出一种基于阻抗边界条件的设计程序,以简化家用感应加热系统的电感器的设计。设计/方法/方法-对电感器系统进行电磁描述来代替在数学条件下,称为系统负载的组件的影响,即所谓的阻抗边界条件。它适用于涉及中频高导电材料的电磁系统,因为它发生在感应加热系统中。应用这种方法,可以从通用系统中获得简化的电气模型。发现-大大减少了设计用于感应加热目的线圈的工作量,因为考虑到三个物理参数变化的解决方案仅根据称为校正后的熔深的单个参数投影到一维空间。该建议评估了标准感应系统的工作条件。实际意义-进行这项工作是为了更好地理解感应加热系统的电磁建模中涉及的基本原理。主要目标是定义更好的线圈设计过程,因为这可能是构建完整感应系统中最耗时的任务。原始数据/值-在本文中,定义了所谓的校正的熔深。该单个参数可以解释等效于完整电感器系统的电感器负载的物理参数和励磁频率的影响。考虑到校正的穿透深度而不是物理载荷特性而进行的数值结果已通过实验验证。

著录项

  • 来源
    《Compel》 |2011年第5期|p.1616-1625|共10页
  • 作者单位

    Departamento Ingenieria Ekctronica y Comunicadones,Universidad de Zaragoza, Zaragoza, Spain;

    Departamento Ingenieria Ekctronica y Comunicadones,Universidad de Zaragoza, Zaragoza, Spain;

    Departamento Ingenieria Ekctronica y Comunicadones,Universidad de Zaragoza, Zaragoza, Spain;

    Departamento Fisica Aplicada. Universidad de Zaragoza, Zaragoza, Spain;

    Departamento Ingenieria Ekctronica y Comunicadones,Universidad de Zaragoza, Zaragoza, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electromagnetism; induction heating; electromagnetic modelling; heating equipment;

    机译:电磁感应加热电磁建模加热设备;

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