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QoSatAr: a cross-layer architecture for E2E QoS provisioning over DVB-S2 broadband satellite systems

机译:Qosatar:用于通过DVB-s2宽带卫星系统进行端到端Qos配置的跨层架构

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摘要

This article presents QoSatAr, a cross-layer architecture developed to provide end-to-end quality of service (QoS) guarantees for Internet protocol (IP) traffic over the Digital Video Broadcasting-Second generation (DVB-S2) satellite systems. The architecture design is based on a cross-layer optimization between the physical layer and the network layer to provide QoS provisioning based on the bandwidth availability present in the DVB-S2 satellite channel. Our design is developed at the satellite-independent layers, being in compliance with the ETSI-BSM-QoS standards. The architecture is set up inside the gateway, it includes a Re-Queuing Mechanism (RQM) to enhance the goodput of the EF and AF traffic classes and an adaptive IP scheduler to guarantee the high-priority traffic classes taking into account the channel conditions affected by rain events. One of the most important aspect of the architecture design is that QoSatAr is able to guarantee the QoS requirements for specific traffic flows considering a single parameter: the bandwidth availability which is set at the physical layer (considering adaptive code and modulation adaptation) and sent to the network layer by means of a cross-layer optimization. The architecture has been evaluated using the NS-2 simulator. In this article, we present evaluation metrics, extensive simulations results and conclusions about the performance of the proposed QoSatAr when it is evaluated over a DVB-S2 satellite scenario. The key results show that the implementation of this architecture enables to keep control of the satellite system load while guaranteeing the QoS levels for the high-priority traffic classes even when bandwidth variations due to rain events are experienced. Moreover, using the RQM mechanism the user’s quality of experience is improved while keeping lower delay and jitter values for the high-priority traffic classes. In particular, the AF goodput is enhanced around 33% over the drop tail scheme (on average).
机译:本文介绍了QoSatAr,这是一种跨层体系结构,旨在为第二代数字视频广播(DVB-S2)卫星系统上的Internet协议(IP)流量提供端到端的服务质量(QoS)保证。该体系结构设计基于物理层和网络层之间的跨层优化,以基于DVB-S2卫星信道中存在的带宽可用性提供QoS设置。我们的设计是在独立于卫星的层上开发的,符合ETSI-BSM-QoS标准。该架构是在网关内部建立的,它包括一个重排队机制(RQM)以增强EF和AF流量类别的吞吐量,以及一个自适应IP调度程序,以考虑到受影响的信道条件来保证高优先级的流量类别受雨天的影响。架构设计最重要的方面之一是,QoSatAr能够考虑一个参数就满足特定业务流的QoS要求:在物理层设置带宽可用性(考虑自适应代码和调制自适应)并发送给网络层通过跨层优化。该体系结构已使用NS-2仿真器进行了评估。在本文中,我们介绍了在DVB-S2卫星方案中评估QoSatAr时的评估指标,广泛的仿真结果以及有关性能的结论。关键结果表明,即使遇到降雨事件引起的带宽变化,该体系结构的实现也可以保持对卫星系统负载的控制,同时保证高优先级业务类别的QoS级别。此外,使用RQM机制,可以改善用户的体验质量,同时为高优先级流量类别保留较低的延迟和抖动值。尤其是,AF的吞吐量比空尾方案提高了约33%(平均)。

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