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首页> 外文期刊>IEEE Transactions on Vehicular Technology >A Traffic Distribution Technique to Minimize Packet Delivery Delay in Multilayered Satellite Networks
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A Traffic Distribution Technique to Minimize Packet Delivery Delay in Multilayered Satellite Networks

机译:一种用于最小化多层卫星网络中数据包传递延迟的流量分配技术

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Multi-Layered Satellite Networks (MLSNs) have enormous potential to provide a ubiquitous wireless environment due to their advantages, such as extensive coverage, high network capacity, and lower delay performance. Since MLSNs are flexible and can be expanded easily to construct useful communication networks, researchers have paid a great deal of attention to find out how to use them efficiently. However, traffic congestion may occur in such networks since the distribution of MLSN users is heavily influenced by geographical restrictions, and they may often lead to severe communication delay and throughput degradation. Traditional research has proposed a counter-measure for avoiding traffic congestion caused by traffic flow on each layer. However, they do not consider congestion due to the inter-layer traffic that may, indeed, occur in MLSNs. Therefore, to effectively resolve the problem of traffic congestion, we propose a new MLSN model by envisioning a method to distribute the flow of packets between the two layers of the considered MLSNs for minimizing the packet delivery delay of the network. Moreover, we analyze the effect of the method on the packet delivery delay by considering propagation and queuing latencies. The analysis clearly shows the advantage of our proposed model. Furthermore, computer-based simulation results validate our analysis and demonstrate the effectiveness of our proposed model.
机译:多层卫星网络(MLSN)具有诸如覆盖范围广,网络容量高和延迟性能低等优点,具有提供无处不在的无线环境的巨大潜力。由于MLSN灵活且可以轻松扩展以构建有用的通信网络,因此研究人员已投入大量精力来寻找如何有效地使用它们。但是,由于MLSN用户的分布受到地理限制的严重影响,因此在此类网络中可能会出现流量拥塞,并且它们通常可能导致严重的通信延迟和吞吐量下降。传统的研究提出了一种对策,以避免由每一层的交通流引起的交通拥堵。但是,他们不考虑由于实际上可能在MLSN中发生的层间流量而造成的拥塞。因此,为有效解决流量拥塞问题,我们通过设想一种在考虑的MLSN的两层之间分配数据包流的方法来提出一种新的MLSN模型,以最小化网络的数据包传递延迟。此外,我们通过考虑传播和排队等待时间来分析该方法对数据包传递延迟的影响。分析清楚地表明了我们提出的模型的优势。此外,基于计算机的仿真结果验证了我们的分析并证明了我们提出的模型的有效性。

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