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Communication Capacity and Quality Enhancement Using a Two-Layered Adaptive Resource Allocation Scheme for Multi-Beam Mobile Satellite Communication Systems

机译:使用两层自适应资源分配方案的多波束移动卫星通信系统的通信容量和质量增强

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摘要

To obtain large capacity, high quality mobile satellite communication systems in the future, we must use a multi-beam that can cope with extremely high levels of frequency reuse. This paper describes a novel resource allocation algorithm for multi-beam satellite communication systems that can dynamically adapt to maximum communication capacity without compromising quality. The algorithm combines two resource allocation schemes that enable it to contend with the ever-changing user distribution and inter-beam interference conditions. The first scheme optimizes the resources amongst beams. To minimize interference, the optimal constraint conditions are clarified when all clusters share and occupy the same bandwidth completely. These constraints are used in the optimization algorithm. The second scheme manages the various required resources and adapts them to the beam gain and interference levels at various user locations within a single beam. We propose a fixed power adaptive modulation scheme to obtain stable communications. This two-layered scheme can satisfactorily allocate multi-beam satellite resources to contend with the increasing communication capacity and still improve the quality.
机译:为了将来获得大容量,高质量的移动卫星通信系统,我们必须使用能够应对极高频率复用水平的多波束。本文介绍了一种用于多波束卫星通信系统的新颖资源分配算法,该算法可以动态适应最大通信容量而不会影响质量。该算法结合了两种资源分配方案,使其能够应对不断变化的用户分布和波束间干扰条件。第一种方案优化波束之间的资源。为了最大程度地减少干扰,当所有群集完全共享并完全占用相同带宽时,阐明了最佳约束条件。这些约束在优化算法中使用。第二种方案管理各种所需的资源,并使它们适应单个波束内各个用户位置的波束增益和干扰水平。我们提出了一种固定功率自适应调制方案,以获得稳定的通信。这种两层方案可以令人满意地分配多波束卫星资源,以应对不断增加的通信容量并仍提高质量。

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