南昌大学信息工程学院,江西南昌330031
[ "龚建强 男,1983年2月出生于江西省南昌市。现为南昌大学信息工程学院副教授、硕士生导师。主要研究方向为异向介质、滤波器与天线的综合与优化等。 E-mail: jqgong@ncu.edu.cn" ]
[ "章晨磊 男,2004年8月出生于江西省南昌市。现为南昌大学信息工程学院本科生。主要研究方向为微波滤波器综合与优化技术。 E-mail: zhangchenlei@email.ncu.edu.cn" ]
[ "廖梓豪 男,2004年1月出生于江西省吉安市。现为南昌大学信息工程学院本科生。主要研究方向为微波滤波器综合与优化技术。 E-mail: zhliao@email.ncu.edu.cn" ]
[ "刘宜润 男,2004年3月出生于山西省晋城市。现为南昌大学信息工程学院本科生。主要研究方向为微波滤波器综合技术。 E-mail: liuyirun@email.ncu.edu.cn" ]
[ "余韩超 男,2003年9月出生于浙江省杭州市。现为南昌大学信息工程学院本科生。主要研究方向为微波滤波器综合与优化技术。E-mail: zhliao@email.ncu.edu.cn" ]
[ "谢健 男,2004年10月出生于江西省赣州市。现为南昌大学信息工程学院本科生。主要研究方向为微波滤波器综合与优化技术。E-mail: xiejian@email.ncu.edu.cn" ]
收稿:2025-09-05,
录用:2026-02-04,
纸质出版:2026-02-25
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龚建强, 章晨磊, 廖梓豪, 等. 基于简化复合左右手零阶谐振器的二阶微带频变耦合带通滤波器[J]. 电子学报, 2026, 54(02): 646-652.
GONG Jianqiang, ZHANG Chenlei, LIAO Zihao, et al. A Compact Microstrip Second-Order Frequency-Variant Coupled Bandpass Filter with Simplified Composite Right-/Left-Handed Zeroth-Order Resonator[J]. Acta Electronica Sinica, 2026, 54(02): 646-652.
龚建强, 章晨磊, 廖梓豪, 等. 基于简化复合左右手零阶谐振器的二阶微带频变耦合带通滤波器[J]. 电子学报, 2026, 54(02): 646-652. DOI:10.12263/DZXB.20250769
GONG Jianqiang, ZHANG Chenlei, LIAO Zihao, et al. A Compact Microstrip Second-Order Frequency-Variant Coupled Bandpass Filter with Simplified Composite Right-/Left-Handed Zeroth-Order Resonator[J]. Acta Electronica Sinica, 2026, 54(02): 646-652. DOI:10.12263/DZXB.20250769
本文基于简化复合左右手零阶谐振器(Simplified composite right-/left-handed Zeroth-Order Resonator, SZOR)设计了一款小型化二阶微带频变耦合带通滤波器。小型化微带SZOR由高低阻抗线和并联枝节构成,结构对称,且具有可控的零阶主模和一阶寄生模。利用隐式空间映射可从SZOR的集总等效电路模型快速生成相应的微带版图。频变耦合由相邻微带SZOR低阻线间容性缝隙和并联枝节间感性条带提供的分立电磁耦合路径产生,电耦合与磁耦合皆可独立调控,易于实现目标频变耦合值。带通滤波器中心频率为3.1 GHz,相对带宽为4.5%,带内回波损耗为22 dB。滤波器初始物理参数基于二阶频变耦合矩阵生成。最优版图采用单纯形法最小化由S参数提取的频变耦合矩阵与理论频变耦合矩阵的绝对误差得到。优化过程完全自动化,无需人工干预。根据最优版图参数,加工并测试了滤波器原型,仿真与实测结果吻合良好。验证了磁主频变耦合传输零点位于上阻带以及电主频变耦合传输零点位于下阻带的关键特性。
This paper presents a compact microstrip second-order frequency-varying coupled bandpass filter (BPF) based on a simplified composite right-/left-handed zeroth-order resonator (SZOR). The miniature microstrip SZOR is symmetrically composed of the high/low-impedance lines and the parallel stub
featuring the controllable zeroth-order dominant mode and the first-order spurious mode
of which layout can be quickly generated from its lumped equivalent circuit model by applying the implicit space mapping technique. The separate electric and magnetic coupling routes essential for the frequency-variant coupling (FVC) comprise the capacitive gap between the low-impedance lines and the inductive strip connecting the parallel stubs of two neighbouring microstrip SZORs
through which the electric and magnetic couplings can be independently controlled
facilitating to acquire the specified FVC value. The target BPF centers at 3.1 GHz with a fractional bandwidth of 4.5% and an inband return loss of 22 dB. Its design starts from the FVC coupling matrix synthesis. The finalized layout parameters are automatically optimized through the Nelder-Mead Simplex algorithm by minimizing the absolute error between the extracted FVC coupling matrix and the theoretically synthesized one. Good agreement between the full-wave simulation and the prototype measurement demonstrates when the FVC is magnetically dominant
the generated TZ will locate above 3.1 GHz
while as the FVC is electrically dominant
the resulted TZ will shift below 3.1 GHz.
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