论文标题
标量和双异构性电磁元图参数的优化满足远场标准
Optimization of Scalar and Bianisotropic Electromagnetic Metasurface Parameters Satisfying Far-Field Criteria
论文作者
论文摘要
电磁元信息提供了实现几乎任意保存场变换的功能。这些场变换受广泛的板过渡条件的控制,该条件通过表面参数将表面每一侧的切向场与切向场相关联。理想情况下,工程师希望根据其应用特定的远场标准来确定转换的表面参数。但是,在没有直接了解表面一侧的切向场的情况下,确定表面参数满足这些标准是具有挑战性的,对于给定的远场模式而言并非唯一。结果,当前的设计仅限于可溶解或其他临时方法的分析示例。本文提出了一个基于凸优化的方案,该方案确定了表面参数,例如表面阻抗,入口和磁电磁耦合,该耦合满足远场约束,例如梁幅度,侧瓣水平和无效位置。优化是在使用矩方法构建的模型上进行的。该模型结合了边缘效应和相互耦合。使用乘数的交替方向方法放宽了来自该模型的非跨性别性。提出了这种优化方案的示例,表现多标准模式形成,极端角度的表面折射和Chebyshev束面。
Electromagnetic metasurfaces offer the capability to realize almost arbitrary power conserving field transformations. These field transformations are governed by the generalized sheet transition conditions, which relate the tangential fields on each side of the surface through the surface parameters. Ideally, engineers would like to determine the surface parameters for transformations based on their application-specific far-field criteria. However, determining the surface parameters to satisfy these criteria is challenging without direct knowledge of the tangential fields on one side of the surface, which are not unique for a given far field pattern. As a result, current design is restricted to analytical examples where the tangential fields are solvable or other ad hoc methods. This paper presents a convex optimization-based scheme which determines surface parameters, such as surface impedance, admittance, and magneto-electric coupling, which satisfy far-field constraints such as beam magnitude, side lobe level, and null locations. The optimization is performed on a model constructed using the method of moments. This model incorporates edge effects and mutual coupling. The resulting non-convexity from this model is relaxed using the alternating direction method of multipliers. Examples of this optimization scheme performing multi-criteria pattern forming, extreme angle small surface refraction, and Chebyshev beamforming are presented.