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Microwave heating based on two rotary waveguides to improve efficiency and uniformity by gradient descent method

机译:基于两个旋转波导的微波加热,通过梯度下降方法提高效率和均匀性

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摘要

This study aims to improve the efficiency and uniformity of microwave heating based on a rotary radiation structure. This study's steps are summarized as follows. First, using the finite element method in a simulation model, two radiation ports revolve on their axes and heat the material. Second, the heating efficiency at different angles is analyzed to find efficient angles of radiation ports. Finally, to improve the uniformity of material with high efficiency, we use the gradient descent method in machine learning to optimize the heating time at selected angles. An experimental system is established for this research and the simulation results are verified by experiments, showing that this research has an obvious superiorly and efficiency and uniformly of the material have improved compared to traditional heating results without angle selection and optimization of the heating time. What is more, influences of material with different shapes, positions and materials have also been discussed.
机译:本研究旨在提高基于旋转辐射结构的微波加热的效率和均匀性。本研究的步骤总结如下。首先,在仿真模型中使用有限元方法,两个辐射端口在其轴上旋转并加热材料。其次,分析了不同角度的加热效率以找到有效的辐射端口角度。最后,为了提高材料的均匀性,使用机器学习中的梯度下降方法,以优化所选角度的加热时间。建立了该研究的实验系统,并通过实验验证了模拟结果,表明该研究具有明显的优势和效率,而且材料的效率和均匀的材料与传统的加热结果相比,没有角度选择和加热时间的优化。还有更重要的是,还讨论了具有不同形状,位置和材料的材料的影响。

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