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Performance of a 2-layer radial hole effective media lens

机译:2层径向孔有效介质透镜的性能

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摘要

The outer polyethylene layer of a 8λ0 radius 2-layer polyethylene/cross-linked polystyrene lens was implemented as a radial hole effective media that allows the entire lens to be milled from a single billet of cross-linked polystyrene, simplifying construction by avoiding layer fitting problems. Full wave simulations in a commercially available simulator showed that increasing the number of radial holes to 3000 gave peak directivity within 0.3dB of the original cross-linked polystyrene/polyethylene lens. Both Particle Swarm Optimization and icosahedron based methods were trialed for distributing the holes evenly over the sphere. The latter method produced symmetrical meshes allowing symmetry planes to be used to minimize computational burden, but was bound to the numbers of holes produced by successive triangular face subdivision iterations.
机译:半径为8λ0的2层聚乙烯/交联聚苯乙烯透镜的外部聚乙烯层被用作径向孔有效介质,可从单个坯料的交联聚苯乙烯中铣削整个透镜,从而避免了层配合,从而简化了结构问题。在商用模拟器中的全波模拟显示,将径向孔的数量增加到3000,可以使峰方向性达到原始交联聚苯乙烯/聚乙烯透镜的0.3dB之内。已尝试使用粒子群优化和基于二十面体的方法将孔均匀分布在球体上。后一种方法产生了对称网格,允许使用对称平面来最大程度地减少计算负担,但受限于连续三角形面细分迭代产生的孔数。

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