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Design of Micro-strip Symmetrical Dual-band Filter Based on Wireless Sensor Network Nodes

机译:基于无线传感器网络节点的微带对称双频滤波器设计

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Abstract The micro-strip antenna filter design of wireless sensor network nodes is usually used to improve the out-of-band suppression and frequency selectivity by increasing the order of the filters, but the filters are usually single band, not only the size is large, but also the in-band characteristics of the filters are not ideal. This paper proposes a method to design a micro-strip symmetric dual-band filter in wireless sensor network nodes. Firstly, the coupling matrix of single-passband filter is obtained by using the synthesis method of generalized Chebyshev filter function. Then, the coupling matrix of the dual-passband filter is generated according to the reflection zeros and the transmission zeros. Finally, the S parameters response curve is drawn by mapping the normalized frequency domain of the dual-passband to the actual frequency domain. According to the data analysis and experimental results, the method is feasible and effective to design a micro-strip symmetrical dual-band filter. It can not only provide a more guiding design method for the joint design of antenna and RF front-end circuit, but also realize the spread of single-passband filter to multi-frequency for a wireless sensor network node antenna.
机译:摘要无线传感器网络节点的微带天线滤波器设计通常用于通过增加滤波器的顺序来改善带外抑制和频率选择性,但过滤器通常是单频带,不仅大小很大,还有过滤器的带内特征不理想。本文提出了一种在无线传感器网络节点中设计微带对称双频滤波器的方法。首先,通过使用广义Chebyshev滤波器函数的合成方法获得单通带滤波器的耦合矩阵。然后,根据反射零和传输零生成双通带滤波器的耦合矩阵。最后,通过将双通带的归一化频域映射到实际频域来绘制S参数响应曲线。根据数据分析和实验结果,该方法可行,可有效地设计微带对称双频带滤波器。它不仅可以为天线和RF前端电路的关节设计提供更引导的设计方法,而且还实现了单通带滤波器的扩散到无线传感器网络节点天线的多频率。

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