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A Novel Method to Design Stub-loaded Microstrip Filters with Arbitrary Passband Based on the Reflection Theory and Monte Carlo Method

机译:一种基于反射理论和蒙特卡罗方法设计具有任意通带的存根微带滤波器的新方法

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摘要

In this paper, a novel method for microstrip filters with arbitrary passband design is proposed. A kind of stub-loaded microstrip filter with asymmetric structure is proposed. The mathematic function of total reflection coefficient at the input port of the filter is derived based on the reflection theory, an ultra-wide-band (UWB) filter which can work from 11GHz to 39GHz is fabricated and measured to verify that our function can calculate the reflection coefficient precisely. The procedure to design stub-loaded microstrip filters with arbitrary passbands is given in this paper, this design procedure is based on the Monte Carlo method. A bandpass filter (BPF) which can work on 7--9.5GHz is designed and measured as an example. The comparison between calculated dimensions and practical dimensions of this filter shows a satisfactory fitting degree. A low-pass filter (LPF) which can work below 4GHz is designed and compared with some prior arts in order to show that our proposed filter is simple in structure and small in size. By using our proposed method, the stub-loaded microstrip filter can be designed quickly and easily. Based on the results mentioned above, we can count that the method proposed in this paper has a good application in microstrip filter design.
机译:本文提出了一种具有任意通带设计的微带滤波器的新方法。提出了一种具有非对称结构的存根微带滤波器。基于反射理论导出滤波器输入端口的总反射系数的数学函数,制造和测量可以从11GHz到39GHz工作的超宽带(UWB)滤波器,以验证我们的功能是否可以计算反射系数精确。在本文中给出了设计具有任意通带的存根电池过滤器的过程,本文基于蒙特卡罗方法。可以在7--9.5GHz上工作的带通滤波器(BPF)作为示例设计和测量。计算尺寸与该过滤器的实际尺寸之间的比较显示了令人满意的装配度。可以在4GHz以下工作的低通滤波器(LPF),并与一些现有技术进行设计,以表明我们所提出的过滤器结构简单,尺寸小。通过使用我们提出的方法,可以快速且容易地设计存档的微带滤波器。基于上述结果,我们可以计算本文提出的方法在微带滤波器设计中具有良好的应用。

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