标题: | 利用耦合系数法设计介电波导滤波器 Designing dielectric waveguide BPFs by coupling coefficient method |
作者: | 陈鹤中 Chen Ho Chung 张志扬 Chi-Yang Chang 电信工程研究所 |
关键字: | 波导;滤波器;高介电;waveguide;filter;dielectric |
公开日期: | 2002 |
摘要: | 本篇论文藉由高介电 (εr=90) 材质、低温共烧陶瓷 (LTCC) 与高介电 (εr=10.2) 印刷电路板 (PCB) 三种微波材料,设计出尺寸微小同时兼顾成本低廉,不同架构,不同频率响应,适用于无线区域网路5至6 GHz (Hyper LAN 5.3 GHz) ,24GHz或毫米波 (millimeter wave) 频段 30 GHz 的波导式带通滤波器。 文中将简介耦合系数法 (coupling coefficient method),并利用此法分析外部品质因数 (external quality value) 与内部耦合系数(internal coupling coefficient),再透过现有的商用EM模拟软体 (如:Sonnet, IE3D, HFSS),找出相对应的滤波器共振腔尺寸,整个复杂的滤波器设计流程将变的简单又快速。论文中,藉由二阶、三阶式的滤波器设计与量测来实现三种柴式 (Chebyshev) 响应波导结构带通滤波器。最后,探讨交错耦合 (cross coupling) 路径产生传输零点 (transmission zero) 对滤波器截止频段的高拒斥效应。 Three kinds of microwave materials, high dielectric constant (εr=90) materials, low temperature co-fired ceramic (LTCC) and high dielectric constant (εr=10.2) print circuit board (PCB), would be used in this paper to make small-size, low-price, varied structures and different frequency responses band-pass filters. These kinds of filters are suitable for application in 802.11a WLAN band 5 to 6 GHz (Hyper LAN 5.3 GHz), 24 GHz or millimeter wave frequency 30 GHz. Coupling coefficient method would be introduced in the paper. The method can analyze the external quality factors and the internal coupling coefficients. Then, utilizing EM simulation software obtain relative resonator dimensions corresponding to previously determined external quality factors and internal coupling coefficients. The whole filter design procedure is simple and concise. Three kinds of Chebyshev response waveguide band pass filters (two-pole and three-pole) are implemented. Finally, investigating the added cross coupling and the produced transmission zeros would illustrate high rejection at stop band. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT910435071 http://hdl.handle.net/11536/70605 |
显示于类别: | Thesis |