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Design methodology of high performance domestic induction heating systems under worktop

机译:台面下高性能国内感应加热系统的设计方法

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This study presents design guidelines for planar induction systems whose winding is considerably farther from its load than in usual arrangements. Optimum efficiency design is paramount for larger distances due to the magnetic field dispersion. To this end, a parameterised finite element model is used to ascertain the system's parameters in this new configuration. This model is used to test variations in frequency, inductor-load distance and inductor diameter. From simulation results, efficiency, output power, power loss volumetric density and near field measurement predictions are obtained. Graphical representation of these results is used to determine the viability of each possible design, choosing one to develop a prototype. Moreover, a study was carried out with Pareto techniques to determine the effect of ferrite coverage and thickness, as well as its distance to the aluminium shielding on efficiency and near field predictions in order to develop a second prototype. The validity of the model is confirmed by experimental tests in small and operating signal regimes.
机译:本研究提出了平面感应系统的设计指南,其绕组远离其负荷比通常的安排更远。由于磁场分散,最佳效率设计对于较大的距离至关重要。为此,参数化的有限元模型用于确定该新配置中的系统参数。该模型用于测试频率,电感器 - 负载距离和电感直径的变化。从仿真结果,获得效率,输出功率,功率损耗体积密度和近场测量预测。这些结果的图形表示用于确定每个可能的设计的可行性,选择一个开发原型。此外,通过帕罗纹覆盖和厚度的工艺进行了一种研究,以及其与铝屏蔽的距离和近场预测的距离,以便开发第二种原型。通过小于和操作信号制度的实验测试确认了模型的有效性。

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