Controlled Delay Scheduler for VoIP over LEO constellations on LMS channels

B. Tauran, E. Lochin, J. Lacan, F. Arnal, Mathieu Gineste, N. Kuhn
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引用次数: 1

Abstract

Satellite transmissions can suffer from high channel impairments, especially on the link between a satellite and a mobile end-user. To cope with these errors, physical and link layer reliability schemes have been introduced at the price of an end-to-end delay increase resulting in high jitter. Unfortunately, both the delay and the jitter negatively impacts on multimedia traffic. As a matter of fact, not taking into account the channel state greatly decreases the Quality of Experience (QoE) of VoIP users. In this paper, we propose to solve this issue by scheduling data transmission as a function of the channel condition. We first investigate existing scheduling mechanisms and analyze their performance for VoIP traffic with the objective to lower both latency and jitter, which are the most important metrics to achieve a consistent VoIP service. We select the best candidate among several schedulers and propose a novel algorithm specifically designed to carry VoIP over LEO constellations. Our simulations show that in some scenarios, we double the QoE of VoIP users.
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控制延迟调度VoIP在LEO星座在LMS信道
卫星传输可能受到高信道干扰,特别是在卫星和移动终端用户之间的链路上。为了应对这些错误,引入了物理层和链路层可靠性方案,但代价是端到端延迟增加,从而导致高抖动。不幸的是,延迟和抖动都会对多媒体流量产生负面影响。事实上,不考虑信道状态会大大降低VoIP用户的体验质量。在本文中,我们提出通过将数据传输作为信道条件的函数来调度来解决这个问题。我们首先研究了现有的调度机制,并分析了它们对VoIP流量的性能,目的是降低延迟和抖动,这是实现一致VoIP服务的最重要指标。我们从几个调度程序中选择最佳候选程序,并提出一种专门设计用于在LEO星座上携带VoIP的新算法。我们的模拟表明,在某些情况下,我们将VoIP用户的QoE提高了一倍。
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ASMS/SPSC 2018 Index Controlled Delay Scheduler for VoIP over LEO constellations on LMS channels A Design Method of Cognitive Overlay Links for Satellite Communications Cross-Layer Forward Packet Scheduling for Emerging Precoded Broadband Multibeam Satellite System ASMS/SPSC 2018 Advanced Satellite Multimedia Systems Conference and the 15th Signal Processing for Space Communications Workshop
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