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Investigation of the mutual coupling between apertures on doubly curved convex surfaces: theory and measurements

机译:双曲凸面上孔之间的相互耦合研究:理论与测量

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摘要

A hybrid method of high-frequency approximation (UTD) and method of moments is used to calculate the mutual coupling between circular apertures on a doubly curved surface. This requires that the geodesics on doubly curved surfaces be found. To represent the aperture fields, a single waveguide mode approximation is used. In order to verify the theoretical results, a general paraboloid of revolution with circular waveguide-fed apertures was built at Ericsson Microwave Systems AB, Molndal, Sweden. This has given a possibility to verify the theoretical model for a general doubly curved surface against measurements. To the authors' knowledge, no such verification is available in the literature. It was found that measured and theoretical results in terms of mutual coupling agree very well for copolar coupling. As expected, the mutual coupling results are very dependent on the polarization. In fact, the definition of polarization directions and the need for polarization control are important issues for doubly curved conformal array antennas.
机译:高频近似(UTD)和矩量法的混合方法用于计算双曲面上圆形孔之间的相互耦合。这就要求在双曲面上找到测地线。为了表示孔径场,使用了单波导模式近似。为了验证理论结果,在瑞典Molndal的爱立信微波系统公司(Ericsson Microwave Systems AB)制造了带有圆形波导馈电孔的普通旋转抛物面。这提供了验证常规双曲面的理论模型与测量结果的可能性。据作者所知,文献中没有此类验证。发现对于互极耦合,在互耦合方面的测量结果和理论结果非常吻合。不出所料,相互耦合的结果非常取决于极化。实际上,极化方向的定义和极化控制的需求对于双曲共形阵列天线是重要的问题。

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