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SIW based Leaky wave antenna with Semi C-shaped slots and its Modeling, Design and parametric considerations for different materials of Dielectric

机译:基于SIW的具有半C形缝隙的泄漏波天线及其针对不同介电材料的建模,设计和参数考虑

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Although waveguide structures are having advantages of carrying high power capacity with high quality factor, but also had disadvantages as they were bulky, this lead to SIW which is promising technology which features both high power capacity and compact in size. leaky wave Antenna is Travelling Wave Antenna which can be made easily on this Substrate Integrated Waveguide (SIW) structure. In this paper, Modeling of SIW based Leaky Wave Antenna (LWA) with Semi C- Shaped Slots has been designed and analyzed to investigate the effects of different dielectric materials on its operating parameters of electric field, transmission gain, return losses and polar far field. Silicon(Si), Printed Circuit Board (PCB), polymethyl methacrylate (PMMA), Mica and fused silica (quartz) are used as different dielectric materials to evaluate the results in frequency domain for 9.5 GHz. Design steps for modeling LWA were orderly pursued also optimized with various equations followed by finite element method based modeling. The result obtained after simulation had showed maximum electric field is observed for PMMA and return loss is −47 dB at frequency of 9.5 GHz directivity gain of antenna 1.2dB and half power beamwidth is 27°.
机译:尽管波导结构具有以高品质因数承载高功率容量的优点,但是由于它们体积大也具有缺点,这导致了SIW,其是具有高功率容量和尺寸紧凑的有前途的技术。漏波天线是行波天线,可以在这种基板集成波导(SIW)结构上轻松制造。本文设计并分析了基于SIW的具有半C形缝隙的泄漏波天线(LWA)的模型,以研究不同介电材料对其电场工作参数,传输增益,回波损耗和极远场的影响。 。硅(Si),印刷电路板(PCB),聚甲基丙烯酸甲酯(PMMA),云母和熔融石英(石英)被用作不同的介电材料,以在9.5 GHz的频域中评估结果。依次对LWA进行建模的设计步骤也进行了优化,并采用了各种方程式,然后进行了基于有限元方法的建模。模拟后获得的结果表明,对于PMMA观察到最大电场,并且在天线1.2dB的9.5 GHz方向性增益和一半功率波束宽度为27°的情况下,回波损耗为-47 dB。

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