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Modeling of the circuit parameters of an induction device for heating of a nonmagnetic conducting cylinder by means of a traveling wave as an excitation source

机译:通过行波作为激励源来加热非磁性导电圆柱体的感应装置的电路参数建模

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The basic circuit parameters that feature the electric performance in induction heating devices having an excitation axial winding as found in induction motors for generating rotary magnetic fields are mathematically modeled. The followed method for obtaining impedance parameters was based on main flux decomposition to partial fluxes along different regions that comprise the assembly. It includes the solution of electromagnetic diffusion equation for the conductive motionless work-piece. The modeled parameters for an induction-coupled system resembling an induction motor stator were compared to impedance data from trials on an experimental device at 60 Hz having one-paired -magnetic-pole configuration with a cylindrical insertion made of aluminum. The deviations between modeled and estimated parameters were lower than 5 %. Relatively high power factor and the inherent multi-layer configuration on induction motor stator seem to be advantageous.
机译:在数学上对基本电路参数进行了数学建模,该基本电路参数以具有感应轴向绕组的感应加热装置中的电性能为代表,该感应加热装置具有在感应电动机中发现的用于产生旋转磁场的轴向轴向绕组。用于获得阻抗参数的以下方法基于将主磁通分解为沿着组成组件的不同区域的部分磁通。它包括用于导电静止工件的电磁扩散方程的解。将类似于感应电动机定子的感应耦合系统的模型化参数与阻抗数据进行比较,该阻抗数据来自在60 Hz的实验设备上进行的试验,该设备具有一对磁极配置且铝制圆柱形插入物。建模参数和估计参数之间的偏差低于5%。相对较高的功率因数和感应电动机定子上固有的多层配置似乎是有利的。

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