首页> 外文期刊>WSEAS Transactions on Communications >Defected Ground Structures (DGS) and Uniplanar Compact-Photonic Band Gap (UC-PBG) Structures for Reducing the Size and Enhancing the Out-of-Band Rejection of Microstrip Bandpass Ring Resonator Filters
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Defected Ground Structures (DGS) and Uniplanar Compact-Photonic Band Gap (UC-PBG) Structures for Reducing the Size and Enhancing the Out-of-Band Rejection of Microstrip Bandpass Ring Resonator Filters

机译:缩小的地面结构(DGS)和单平面紧凑型光子带隙(UC-PBG)结构,用于减小尺寸并增强微带带通环形谐振器滤波器的带外抑制

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This paper addresses a modified bandpass ring resonator filter providing compact size, low insertion-loss, wide bandwidth, sharp rejection and suppressed higher order modes. Typically, ring resonator filters suffer from large occupation area and limited out of band rejection. These limitations are tackled in this work by means of a threefold approach. On the one hand, the use of internal folded stubs allows the exploitation of the internal ring area yielding more than 70% of overall size reduction with respect to conventional orthogonal straight stubs solution. On the other hand, the introduction of Defected Ground Structures (DGS) and Uniplanar Compact-Photonic Bandgap (UC-PBG) structures, formed by etching patterns in the ground plane of the filter, enhances by great extends the rejection of higher order modes providing a stopband that reaches 4.7 GHz beside offering a further advantage in terms of size reduction. The two approaches are first separately validated and then simultaneously combined to provide an optimized filter design. Finally, a solution employing via holes to replace the tuning stubs is explored in order to extend the lower stopband. EM simulation, equivalent circuit model, as well as measurement results validate the followed design approach and are in excellent agreement within each other.
机译:本文讨论了一种改进的带通环形谐振器滤波器,该滤波器具有紧凑的尺寸,低的插入损耗,宽带宽,尖锐的抑制能力和抑制的高阶模。典型地,环形谐振器滤波器具有较大的占用面积并且受限于带外抑制。在这项工作中,这些局限性可以通过三方面的方法来解决。一方面,使用内部折叠的短截线允许利用内部环面积,相对于传统的正交直截线短截线解决方案,其内部尺寸减小了70%以上。另一方面,通过在滤波器的接地平面上刻蚀图案而形成的缺陷接地结构(DGS)和单平面紧凑型光子带隙(UC-PBG)结构的引入,极大地扩展了对高阶模的抑制能力,阻带可达4.7 GHz,此外在减小尺寸方面还具有其他优势。两种方法首先进行单独验证,然后同时进行组合以提供优化的滤波器设计。最终,探索了一种使用通孔来替换调谐桩的解决方案,以扩展下阻带。 EM仿真,等效电路模型以及测量结果验证了遵循的设计方法,并且彼此之间有着极好的一致性。

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