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A Dynamic Cross-Layer Architecture for QoS Provisioning of Multimedia Services on all-IP based Adaptive Satellite Networks

机译:基于ALK-IP自适应卫星网络的多媒体服务QoS配置的动态跨层架构

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This paper identifies a dynamic cross-layer architecture for QoS provisioning of multimedia services on an all-IP-based DVB-RCS/S2 satellite network. The proposed dynamic QoS architecture presents three cross-layer interfaces: one between the application and network layers on the satellite terminals (ST), which allows the provision of dynamic guaranteed QoS for multimedia applications and the user of adaptive codecs or multi-codec applications on the user side. A second cross-layer interface is proposed, between the IP and MAC layers in the Network Control Centre (NCC), which increases the efficiency of the satellite resource utilization. Finally, a third interface is introduced, between the physical layer of the gateway and the QoS manager of the NCC, which helps to minimize the connection blocking and dropping probabilities by implementing on the QoS manager a prediction algorithm (Bandwidth Estimator - BWE) for the physical channel variations. In addition, the system also implements in-band signaling to compensate for the management and control traffic overhead introduced by the highly dynamic architecture.
机译:本文识别了基于ALL-IP的DVB-RCS / S2卫星网络上的多媒体服务的动态跨层架构。所提出的动态QoS架构呈现三个横梁接口:卫星终端(ST)上的应用程序和网络层之间的一个,这允许为多媒体应用程序和自适应编解码器或多编解码器应用程序提供动态保证QoS用户侧。建议在网络控制中心(NCC)中的IP和MAC层之间提出了第二交叉层接口,这增加了卫星资源利用率的效率。最后,在网关的物理层和NCC的QoS管理器之间引入了第三界面,这有助于通过在QoS管理器上实现QoS Manager一种预测算法(带宽估计器 - BWE)来最小化连接阻塞和丢弃概率物理信道变化。此外,该系统还实现了带内信令以补偿由高动态架构引入的管理和控制业务开销。

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