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Topologies for ad-hoc networks utilizing directional antennas with restricted fields of view

机译:利用具有受限视场的定向天线的ad-hoc网络的拓扑

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摘要

ORCLE (Optical/RF Combined Link Experiment), is an airborne network in which aircraft have multiple directional antennas that are restricted in their pointing direction. A pair of aircraft in ORCLE can be linked if they both have an antenna pointing at each other. Four topology algorithms, which coordinate the pointing of the antennas and attempt to maximize a connectedness metric, are presented and analyzed using a custom 2D simulation platform. Three of the algorithms are based on the Relative Neighbor Graph (RNG): the first constrains the RNG to requirements of the ORCLE network, the second augments the constrained RNG with edges from the Delaunay Triangulation, and the third algorithm tries to improve on the second by adding edges to reduce the diameter. The final algorithm uses a novel concept of overlapping sets of nested convex hulls to select the links of the network. All algorithms are stateless and interface with a Target Transition Layer, which gradually migrates topologies to prevent a large number of edges from being lost simultaneously. Scenes with varying node density, number of terminals per node, fields of view, and re-targeting delays are used to test the algorithms against a wide range of possible situations.
机译:ORCLE(光/射频组合链路实验)是一种机载网络,其中飞机具有多个定向天线,这些天线在指向方向上受到限制。如果ORCLE中的一对飞机的天线互相指向对方,则可以链接它们。使用定制的2D仿真平台,提出并分析了四种拓扑算法,它们协调天线的指向并尝试最大化连接性度量。其中三种算法基于相对邻居图(RNG):第一种将RNG约束为ORCLE网络的需求,第二种使用Delaunay三角剖分的边来增强约束的RNG,第三种算法尝试在第二种上进行改进通过添加边缘以减小直径。最终算法使用了重叠的嵌套凸包集合的新颖概念来选择网络的链接。所有算法都是无状态的,并且与目标过渡层接口,目标过渡层逐渐迁移拓扑结构,以防止大量边缘同时丢失。具有变化的节点密度,每个节点的终端数量,视野和重定目标延迟的场景可用于在各种可能的情况下测试算法。

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