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The geodesic constant method: a novel approach to analytical surface-ray tracing on convex conducting bodies

机译:测地常数方法:在凸形导体上分析表面射线的新方法

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摘要

A generalized approach to analytical surface-ray tracing in three dimensions, and a review of its application to convex conducting bodies, is presented, using the Eisenhart coordinate system. The ray-parameters so obtained, for quadric cylinders (QUACYLs) and surfaces of revolution (QUASORs), are in a one-parameter form for UTD mutual-coupling applications. The ray analysis is also extended to the hybrid QUACYLs (e.g. aircraft wings) and hybrid QUASORs (e.g., satellite-launch vehicles), by introducing Hertz's principle of particle dynamics to EM theory. This mathematical formulation is applicable even to other important non-Eisenhart surfaces, such as the ogive. A summary of the mathematical formulations is included.
机译:使用艾森哈特坐标系,提出了一种在三维上进行分析的表面射线追踪的通用方法,并对其在凸形导电体上的应用进行了综述。这样获得的用于二次圆柱(QUACYL)和旋转曲面(QUASOR)的射线参数为UTD互耦合应用程序的一参数形式。通过将赫兹的粒子动力学原理引入EM理论,射线分析还扩展到了混合QUACYL(例如飞机机翼)和混合QUASOR(例如卫星发射飞行器)。该数学公式甚至适用于其他重要的非艾森哈特曲面,例如齿形。其中包括数学公式的摘要。

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