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Dumbbell annular ring with circular patterned microstrip low-pass filter with higher selectivity, wider stopband and lower insertion loss

机译:带圆形微带低通滤波器的哑铃形环形环,具有更高的选择性,更宽的阻带和更低的插入损耗

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Electromagnetic Band Gap Structures (EBGs) have been developed to improve the efficiency of microwave and millimeter-wave devices, grown into most prominent framework by virtue of their unique electromagnetic and electrical properties. This article inspects the relationship between the operating performances of the low pass filter with the different EBG pattern. In this article, two high selectivity, wide stopband low pass filters (LPF) etched on ground plane with Tschebycheff polynomial distribution are proposed. A number of methods, method of moments (MOM) for numerical analysis and Tschebycheff polynomial distribution for designing the circuit are used. Moreover, to increase the stopband bandwidth of the new filters, a hybrid structure is used. The filter using ten dumbbell annular ring (DAR) patterns has improved selectivity of 47.19%, great matching upto 80 dB, negligible insertion loss less than 0.2 dB and two rejections in the stopband within 6.25 GHz, 12.97 GHz. In brief, this high selectivity, compact, wide stopband low pass filters were designed to alleviate the problem of low selectivity and small stopband bandwidth in microwave communication.
机译:电磁带隙结构(EBG)的开发是为了提高微波和毫米波设备的效率,由于它们独特的电磁和电性能,它们已发展成为最著名的框架。本文考察了具有不同EBG模式的低通滤波器的工作性能之间的关系。在本文中,提出了两个高选择性宽带阻带低通滤波器(LPF),该滤波器在地面上刻有Tschebycheff多项式分布。使用了许多方法,用于数值分析的矩量法(MOM)和用于设计电路的Tschebycheff多项式分布。此外,为了增加新滤波器的阻带带宽,使用了一种混合结构。使用十个哑铃环(DAR)模式的滤波器,选择性提高了47.19%,匹配度高达80 dB,插入损耗小于0.2 dB,并且在6.25 GHz,12.97 GHz的阻带中有两个抑制。简而言之,这种高选择性,紧凑,宽阻带低通滤波器的设计旨在缓解微波通信中低选择性和小阻带带宽的问题。

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