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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Design of Novel Ultra-Wideband Bandpass Filter with High Selectivity and Wide Stop Band and Optimizing it with Neuro-Genetic Method
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Design of Novel Ultra-Wideband Bandpass Filter with High Selectivity and Wide Stop Band and Optimizing it with Neuro-Genetic Method

机译:高选择性,高阻带的新型超宽带带通滤波器的设计及其神经遗传算法的优化

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摘要

This paper develops a novel ultra-wideband bandpass filter with high selectivity, deep stop band and compact size. By linking a broadband bandstop filter at two sides with two feed lines via interdigital coupled lines with enhanced coupling degree, an initial ultra-wideband bandpass filter is created. In this filter, all undesired pass bands are rejected by broadband bandstop filter embedded in middle of ultra-wideband filter. Then, stepped impedance open stubs are used for realizing transmission zeros in pass band edges to increase selectivity. Finally, a neuro-genetic method is applied for optimizing of proposed ultra-wideband bandpass filter. For this task, first a nonlinear relation is established between the input (layout parameters) and output (electrical responses) data by using neural network. Then, genetic algorithm is used in conjunction with neural network model for optimizing the ultra-wideband bandpass filter parameters. The designed filter was fabricated and measured that showed good characteristics including deep stop band and very high pass band selectivity.
机译:本文开发了一种新型的超宽带带通滤波器,具有高选择性,深阻带和紧凑的尺寸。通过以具有增强的耦合度的叉指耦合线将两侧的宽带带阻滤波器与两条馈线链接起来,可以创建一个初始的超宽带带通滤波器。在该滤波器中,所有不需要的通带都被嵌入在超宽带滤波器中间的宽带带阻滤波器拒绝。然后,使用阶跃阻抗开路短截线来实现通带边缘的传输零,以提高选择性。最后,将神经遗传方法应用于提出的超宽带带通滤波器的优化。对于此任务,首先通过使用神经网络在输入(布局参数)和输出(电响应)数据之间建立非线性关系。然后,将遗传算法与神经网络模型结合使用,以优化超宽带带通滤波器参数。所设计并制造的滤波器具有良好的特性,包括较深的阻带和很高的通带选择性,并经过测量。

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