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Bandwidth enhancement of ultra-wideband microstrip bandpass filter using defected ground structure

机译:使用缺陷的地面结构的超宽带微带带通滤波器的带宽增强

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In this paper, the bandwidth enhancement of ultra-wideband (UWB) microstrip bandpass filter (BPF) is proposed by utilizing defected ground structure (DGS). The initial UWB microstrip BPF which is designed to have the bandwidth response of 4GHz with the center frequency of 4GHz is deployed on FR4 Epoxy dielectric substrate with overall size and thickness of 11mm × 32mm and 0.8mm respectively. To enhance the bandwidth response, an attempt is carried out by applying DGS on to the ground plane of initial filter. Here, the proposed DGS is constructed of 3 circular dumbbells. Some parametrical studies to the DGS such as changing the radius of dumbbells and the dimension of bridging-section of dumbbells are conducted intensively to obtain the optimum geometry of DGS with the desired bandwidth response. From the characterization result, it shows that the utilization of DGS on to the ground plane of filter has widened 3dB bandwidth response up to 5.36GHz ranges from 1.84GHz to 7.2GHz yielding an enhanced ultra-wideband response for various UWB applications. The minimum insertion loss and maximum return loss of microstrip BPF with proposed DGS in the passband area are 2.05dB and 6.73dB, respectively.
机译:在本文中,通过利用缺陷的地面结构(DGS)提出了超宽带(UWB)微带通道过滤器(BPF)的带宽增强。初始UWB微带BPF设计为具有4GHz的中心频率的4GHz带宽响应,在FR4环氧介电基板上部署,整体尺寸和厚度为11mm× 32mm和0.8mm。为了增强带宽响应,通过将DGS应用于初始滤波器的接地平面来执行尝试。这里,所提出的DGS由3个圆形哑铃构成。对DG的一些参数研究如改变哑铃半径和哑铃的桥接截面的尺寸,以获得具有所需带宽响应的DG的最佳几何形状。从表征结果来看,它表明,将DGS的利用在滤波器接地平面上扩大了3DB带宽响应,高达5.36GHz的范围为1.84GHz至7.2GHz,产生各种UWB应用的增强的超宽带响应。微带BPF的最小插入丢失和最大回波损耗与通带区域中提出的DGS分别为2.05dB和6.73dB。

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