首页> 外文期刊>Journal of the Korean Institute of Electromagnetic Engineering and Science >A Uniform Heating Technique for Cavity in Volatile Organic Compound (VOC) Removal System Using Slotted Waveguide Array
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A Uniform Heating Technique for Cavity in Volatile Organic Compound (VOC) Removal System Using Slotted Waveguide Array

机译:使用开槽波导阵列的挥发性有机化合物(VOC)去除系统中均匀的加热技术

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摘要

In this study, two types of slotted waveguide are designed in the frequency of 2.45 GHz to improve the microwave heating uniformity of a quadrangular prism-shaped cavity in a volatile organic compound (VOC) removal system. Both types adopt the equivalent circuit approach used for a waveguide slot array antenna. The difference between the two types is the slot impedance extraction method of the waveguide slot array: one calculates the impedance taking the cavity structure into account and the other finds it in free space. Both methods show that the heating uniformity is improved by 52% compared with that of the conventional horn-type feeding structure system according to the simulation results. Even though there is no difference in the heating uniformity between the two models, it is confirmed that the slotted waveguide array feeding model designed by using the impedance data of the slot incorporating the cavity (SAWFMcavity) has about 6.35 dB better impedance matching characteristics than the other model designed by extracting the impedance data of the slot in free space (SAWFMfree). Also, it is found that the SAWFMcavity shows more stable impedance characteristics with respect to the loading condition than the SAWFMfree. Therefore, it is concluded that the impedance of the slot should be extracted taking the cavity into account for the design of the slotted waveguide feeding structure since it improves the reflection characteristic as well as the heating uniformity compared with the horn-type feeding structure.
机译:在该研究中,两种类型的开槽波导设计成2.45GHz的频率,以改善挥发性有机化合物(VOC)去除系统中四边形棱镜形腔的微波加热均匀性。两种类型采用用于波导槽阵列天线的等效电路方法。两种类型之间的差异是波导槽阵列的槽阻抗提取方法:一个计算腔结构考虑的阻抗,另一个在自由空间中找到它。两种方法表明,与常规喇叭型馈送结构系统相比,加热均匀性提高了52%,与常规喇叭型馈电结构系统的仿真结果相比。尽管两种模型之间的加热均匀性没有差异,但是通过使用结合腔(Sawfccavity)的槽的阻抗数据来确认开槽波导阵列馈送模型具有大约6.35dB的更好的阻抗匹配特性通过在自由空间中提取插槽的阻抗数据(SAWFMFREE)来设计其他模型。而且,发现锯晶笼具有比Sawffree的负载条件更稳定的阻抗特性。因此,得出结论,应提取槽的阻抗考虑到凹槽波导馈电结构的设计,因为它改善了与喇叭型进料结构相比的反射特性以及加热均匀性。

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