标题: | 双频与压抑后波瓣之高增益行波天线设计 Design of Traveling-Wave Antennas for Dual-Band Operations, Gain Enhancement and Back-Lobe Suppression |
作者: | 陈嘉庆 Chen, Chia-Ching 周复芳 Dr. Christina F. Jou 电信工程研究所 |
关键字: | 行波天线;泄漏波天线;单导体;Traveling-Wave Antenna;Leaky-Wave Antenna;Single Conductor |
公开日期: | 2013 |
摘要: | 本论文将提出两种行波天线设计,第一种设计是双频可回授式之半模基板合成波导泄漏波天线,其操作频率为5.2 和5.8 GHz。传统的泄漏波天线,通常会在天线的尾端接上一个负载,让残余未辐射的能量不会反射,减少反射波,以压低后波瓣。并且传统的泄漏波天线,天线长度必须要到一定的长度,才能让能量有效的利用,所以天线的面很大。而回授式之半模基板合成波导泄漏波天线,可以藉由回授网路,让残余未辐射的能量再回到天线,可以增加增益。而天线的长度也可以变得比较短,不但有效率地使用能量,也相对的减少使用面积。第二种设计是单一导体行波天线的改良设计,此天线容易实现高增益以及宽频的特性。由于单一导体带第一高阶模的行波天线的基本物理特性为完美电墙(perfect electric wall)中心对称,纵向电流为奇对称分布,而横向电流为偶对称分布,所以藉由平衡转非平衡转换器馈入激发,使单一导体带第一高阶模之行波天线具备宽频以及高增益的特性。并且单一导体带第一高阶模之行波天线的正规化相位常数β/k0 在其频宽内都相当接近1,所以场型几乎为水平方向(end-fire)的辐射场型,但其场型会有后波瓣而可能会对后端电路造成辐射干扰,所以利用调整天线宽度的方法,以压低后波瓣,让天线场型有显着的改善,不会对后端电路产生干扰。 In this thesis, a dual-band half-mode substrate integrated waveguide(HMSIW) traveling-wave antenna(TWA) with feedback network and a single-conductor tapered strip traveling- wave antenna are proposed. The classical TWAs are always terminated at the end of antenna. Because the remaining power reflected from the end of TWA may excite back lobe to spoil the radiation pattern. Otherwise, its longitudinal length requires 5~10λ to radiate efficiently, and it will occupy too much space to fabricate in low price. In our first design, using feedback network of HMSIW TWA allows the remaining power which is non-radiating to re-radiate, it can not only enhance the gain of TWA but also suppress back lobe level. The length of HMSIW TWA with feedback network requires only 1~2λ, which is shorter than the classical TWAs, it would also reduce the area. In our second design, the improvement of single-conductor strip TWA is easy to achieve high gain and broadband performance. For the first higher mode in this structure, a virtual perfect electric wall is assumed at the center of the strip, which means that the longitudinal currents are odd-symmetric and the transverse currents are even-symmetric with respect to the center. A wide-band microstrip balun to feed this structure is needed to excite the first higher leaky mode. The normalized phase constant is very close to one in the space-wave leaky region. We observed that the main beam of this antenna is almost fixed at the end-fire direction in the operation band. From the radiation pattern of this structure, we find that the back lobe is very large, its radiation may interfere the circuits which are behind the antenna. So we taper the width of the single-conductor strip TWA to suppress back lobe level. After tapering the width of antenna, we can observe the improvement on the back lobe level. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070160279 http://hdl.handle.net/11536/75271 |
显示于类别: | Thesis |