提出了多波束卫星系统的容量优化机制

R. Alegre-Godoy, N. Alagha, M. Vázquez-Castro
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引用次数: 37

摘要

本文研究了基于实际有效载荷模型的多波束卫星系统容量优化机制。第一种机制针对长期流量变化,提出了基于单波束流量请求的容量优化算法。由于交通的高度不对称,我们的算法提供了时间和空间的灵活性,在几个时隙的窗口内照亮一组特定的波束。我们的算法最大限度地提高了实际提供的容量,同时降低了功耗。第二种机制处理短期流量变化,为此我们在链路层提出了基于网络编码(NC)的技术。其目的是利用通常被认为是干扰源的重叠波束覆盖来增加提供的容量。该技术不仅适用于经典的多波束系统,而且在单波束容量优化的基础上,作为处理第一种机制中未评估的快速流量不平衡的一种方法。分析和仿真结果表明,第一种情况下系统容量可提高13%,第二种情况下系统容量可提高90%。
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Offered capacity optimization mechanisms for multi-beam satellite systems
In this paper we investigate capacity optimization mechanisms for multi-beam satellite systems built on a realistic payload model. The first proposed mechanism deals with long term traffic variations, for which capacity optimization algorithms are proposed based on per-beam traffic requests. Due to the high asymmetry of the traffic, our algorithms provide time and spatial flexibility illuminating a specific set of beams within a window of several time-slots. Our algorithms maximize the amount of capacity actually offered while providing reduced power consumption. The second proposed mechanism deals with short-term traffic variations, for which we propose Network Coding (NC) based techniques at the link layer. The aim is to increase the offered capacity taking advantage of overlapping beam coverage, usually considered as a source of interference. This technique is meant to be applied not only in classical multi-beam systems, but also on top of the per-beam capacity optimization as a method to deal with fast traffic unbalances not evaluated in the first mechanism. Analysis and simulations results show that system capacity can be increased up to 13% in the first case and up to 90% in the second case.
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