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Development of Leaky Wave Antennas for Layered Ridge Dielectric Waveguide

机译:层状脊介质波导漏波天线的研制

摘要

The millimeter wave, especially above 100 GHz, and the submillimeter wave frequency spectrum offers the possibility for narrow-beam, high-resolution antennas which are critical for high definition radars required for space debris tracking, airport ground avoidance radars, and missile tracking. In addition, the frequency which most atmospheric constituents may be detected lie in this part of the frequency spectrum. Therefore, the development of electronic components for millimeter/submillimeter wave passive sensors is required for environmental monitoring of the Earth's atmosphere. Typical microwave transmission lines such as microstrip and coplanar waveguide rely on two or more electrical conductors to concentrate and guide the electromagnetic energy. Unfortunately, the surface resistance of the conductors increases as the square root of frequency. In addition, the circuit dimensions must be decreased with increasing frequency to maintain a single mode transmission line which further increases the conductor loss. An alternative family of transmission lines are formed from two or more insulating materials and rely on the differences in the permittivities between the two materials to guide the wave. No metal conductors are required although some dielectric waveguides do utilize a metallic ground plane to facilitate the interconnections of active electrical elements or to reduce the transmission line size. Examples of such transmission lines are image guides, insulated image guides, trapped image guides, ridge guide, and layered ridge dielectric waveguide (LRDW). Although most dielectric waveguides have dimensions on the order of lambda to provide sufficient field confinement, the LRDW has been shown to provide good field confinement for electrically small lines. This offers an advantage in circuit integration. It has been shown that a periodic array of metallic strips placed either along or on top of a dielectric waveguide forms an effective radiator. This antenna is easy to fabricate and there is good background of microstrip type antenna design information in the literature. This paper reports the development of the first frequency scanning antenna fed by a LRDW.
机译:毫米波(尤其是高于100 GHz的毫米波)和亚毫米波频谱为窄波束,高分辨率天线提供了可能性,这对于空间碎片跟踪,机场避空雷达和导弹跟踪所需的高清雷达至关重要。此外,大多数大气成分可能被检测到的频率位于频谱的这一部分。因此,需要开发用于毫米波/亚毫米波无源传感器的电子组件,以监测地球大气的环境。典型的微波传输线(如微带线和共面波导)依靠两个或多个电导体来集中并引导电磁能。不幸的是,导体的表面电阻随频率的平方根增加。另外,电路尺寸必须随着频率增加而减小,以维持单模传输线,这进一步增加了导体损耗。另一类传输线由两种或多种绝缘材料形成,并依靠两种材料之间的介电常数差异来引导波。尽管某些介电波导确实利用金属接地层来促进有源电气元件的互连或减小传输线的尺寸,但不需要金属导体。这样的传输线的示例是图像波导,绝缘图像波导,陷波图像波导,脊形波导和分层脊形介质波导(LRDW)。尽管大多数介电波导的尺寸约为λ,以提供足够的电场限制,但LRDW已显示为电气小线路提供良好的电场限制。这在电路集成方面提供了优势。已经表明,沿着介质波导或在介质波导顶部放置的金属带的周期性阵列形成有效的辐射器。该天线易于制造,并且在文献中具有微带型天线设计信息的良好背景。本文报告了由LRDW馈电的第一台频率扫描天线的发展。

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