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A greedy approach combined with graph coloring for non-uniform beam layouts under antenna constraints in multibeam satellite systems

机译:一种贪婪的方法,结合了多芯卫星系统的天线约束下的非均匀波束布局的图形着色

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Because of the ever-increasing traffic and quality demands for both internet and television, satellite systems must aim at designs that use the satellite resources in the most efficient way possible. In the case of multibeam satellite systems, this is achieved by making optimal use of the plurality of beams in terms of frequency reuse, power allocation, and quality of the layout. That last point is the one addressed in this paper, the optimisation of the beam layout being a complex but crucial task for the resulting telecommunication system since it directly affects its performances and cost. In the case of broadband systems, the key data is the repartition of the traffic demand over the zone to be covered which is never rigorously uniform. Though, it is common for satellite system design tools to rely on this fairly unrealistic assumption to provide regular coverage which is therefore often suboptimal : inappropriate beamwidths, overprovisioned or unsatisfied user stations, unprofitable beams. Nonetheless, one strong advantage of the regular scheme is that it is known to be compatible with the single feed per beam antenna constraint of minimum angular distance for all the couples of beams coming from the same reflector. The aim of this paper is to present a randomized multi-start heuristic to build a non-uniform layout, driven by the different telecommunication mission criteria and by the aforementioned antenna constraint that is dealt with by a graph recoloring procedure via local search and simulated annealing.
机译:由于互联网和电视的交通和质量需求不断增加,卫星系统必须以最有效的方式瞄准使用卫星资源的设计。在多芯卫星系统的情况下,这是通过在布局的频率重用,功率分配和质量方面最佳地利用多个光束来实现的。最后一点是本文解决的那篇文章,光束布局的优化是由此产生的电信系统的复杂但重要任务,因为它直接影响其性能和成本。在宽带系统的情况下,关键数据是在要覆盖的区域上的交通需求的重置,这绝不是严格统一。虽然,卫星系统设计工具是依赖这种相当不切实际的假设来提供定期覆盖的常规覆盖,这通常是次优:不适当的波束,过度透明或不满足的用户站,无利可图的光束。尽管如此,规则方案的一个强大优点在于,已知从来自同一反射器的所有耦合的光束的最小角度距离的每个光束天线限制的单射线天线约束兼容。本文的目的是呈现由不同电信任务标准驱动的随机多启发式启发式启发式,以通过不同的电信任务标准和上述天线约束通过本地搜索和模拟退火处理的图形重新定位过程来实现不均匀的布局。 。

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