标题: | 微带漏波模之孔径耦合激发及模耦合现象之研究 Aperture-Coupling Excitation and Mode-Coupling Phenomena of Microstrip Leaky Modes |
作者: | 陈泰利 Tai-Lee Chen 林育德 Yu-De Lin 电子研究所 |
关键字: | 微带;漏波天线;孔径耦合;模耦合;馈入结构;漏波模;microstrip;leaky-wave antenna;aperture coupling;mode coupling;feeding structure;leaky mode |
公开日期: | 1998 |
摘要: | 本论文探讨微带第一及第二高阶漏波模之特性及其应用,包括其有效之馈入结构、微带线间之相互耦合效应、不同漏波模间之耦合效应、以及多种天线之设计应用。整篇论文均采用频域分析法做为微带漏波模传播特性分析之工具。 本论文之第一部份探讨有关微带第一高阶漏波模(微带奇次模)之特性及应用。孔径耦合激发微带第一高阶漏波模之设计方法在此被提出。将辐射单元与其他元件以接地面隔离可提供此二部份个别之最佳化设计,因此能将微带漏波天线之宽频、高天线增益及频率扫描特性充分展现。X波段之斜向及横向天线验证了此种设计方法。K波段之单波束及数种双波束天线阵列与S波段基地台天线之应用亦被设计完成。结合多层结构技术的优点可提供无线通讯应用有效、简单、多样性以及高天线增益之设计。此外,因第一高阶漏波模所产生微带线间耦合现象亦被讨论。我们发现无限长耦合微带线间之共振现象,此现象肇因于耦合微带线内缘之边界条件配合微带第一高阶漏波模为场源所形成。于耦合微带线之奇对称及偶对称分别产生不只一个漏波模,而这些模有相互耦合的现象。 本论文之第二部份探讨有关微带第二高阶漏波模(微带偶次模)之特性及应用。微带偶次模之耦合现象在此被讨论。此现象发生于当微带漏波主模的色散曲线与偶次模接近时。改变微带之金属带宽及基板厚度可观察到有趣的模演化迁移现象,并由此得知偶次模间漏波模之相互关系。我们发现偶次模本身之频域间隙乃为漏波主模与漏波偶次模发生耦合的结果。短路之共平面波导馈入与微带线馈入方法被采用以有效激发微带第二高阶漏波模。分别激发具有漏波主模及不具漏波主模之第二高阶漏波模之实验显示了漏波主模对第二高阶漏波模天线设计之影响。 This thesis investigates the properties and applications of the first two higher order leaky modes of the microstrip, which include efficient feeding structures, mutual coupling on microstrips, coupling effect in different leaky modes, and several antenna applications. The spectral domain analysis is employed to solve the propagation characteristics of the microstrip leaky modes throughout this study. The first part of the thesis pertains to the first higher order leaky mode (odd mode) of the microstrip line. The design procedure of the microstrip first higher order leaky-mode antenna excited by aperture-coupling method is presented. Separating the radiators from other components with the ground planes provides optimal design of both parts respectively so that the inherent broadband, high gain and frequency-scanning properties of the leaky-wave antenna can be exploited. Tilted- and broadside-beam antennas are designed in X-band. Single and dual beams arrays in K-band and a base-station antenna application for S-band are also implemented. The required elements were reduced markedly in comparison with the patch antenna for higher gain design. Versatile designs combining the merits of multilayer technology offer simplicity and efficient design for many wireless applications. In addition, the coupling effects in the coupled microstrips, which caused by the first higher order leaky mode on the microstrip, are investigated. The resonance phenomena found between the strip of the infinite coupled microstrips are owing to the inner edges of the coupled microstrips forming the resonant boundary and the leaky modes of the microstrips serving as the resonant sources. For even- and odd-symmetry of the coupled microstrips, more than one leaky mode are found in both cases, and these leaky modes couple with each other. The second part of the thesis treats the subjects of the microstrip second higher order leaky mode (even mode). Mode-coupling phenomena of the even modes on microstrip is investigated. These phenomena occur when the dispersion curve of the leaky dominant mode of the microstrip is close to those of the even higher order modes of the microstrip. Interesting patterns of the migration of mode evolution, obtained by varying the ratio of the strip width to the substrate thickness, exhibit the relationships between the even higher order modes and the leaky dominant mode. The spectral gap effect of the even higher order modes is the result of the coupling between these modes and the leaky dominant mode. Design of the even higher order leaky mode as a line source should be based on the physical implications of these phenomena. Short-end CPW and microstrip feeding method are used to excite the second higher order leaky mode. Experimentally exciting the second higher order leaky mode with and without the leaky dominant mode reveals the interference between these two leaky modes. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#NT870428088 http://hdl.handle.net/11536/64376 |
显示于类别: | Thesis |