A New Dielectric Grating Antenna for Millimeter-Wave Applications

Y. Pan, S.J. Xu
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Abstract

The leakage properties of a new dielectric grating leaky wave antenna are carefully examined by an approach of combining the multimode network theory with the mode-matching method. A systematic comparison is given for the leaky characteristics of the n=-1 space harmonic of TM mode polarization between the present antenna and the traditional one. It has been found that the former not only has the advantage of lower conductor loss, but also is of larger leakage constant than the latter. As a result, the dimension of the antenna could be largely reduced, which is of practical significance for some applications. Extensive numerical results of the radiation characteristics are given to establish useful guidelines for the design of the new grating antenna. Furthermore, special features such as cancellation or resonance effects are high-lighted and discussed. Physical insights for the mathematical findings are also presented.
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一种新型毫米波介质光栅天线
采用多模网络理论和模式匹配相结合的方法,对一种新型介质光栅漏波天线的泄漏特性进行了细致的研究。系统地比较了现有天线与传统天线的TM模式极化n=-1空间谐波的泄漏特性。结果表明,前者不仅具有较低的导体损耗,而且具有较大的泄漏常数。这样可以大大减小天线的尺寸,对某些应用具有实际意义。给出了大量的辐射特性数值结果,为新型光栅天线的设计提供了有用的指导。此外,特别的特点,如抵消或共振效应被强调和讨论。对数学发现的物理见解也被提出。
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