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Adaptive Call Admission and Bandwidth Control in DVB-RCS Systems

机译:DVB-RCS系统中的自适应呼叫允许和带宽控制

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摘要

The paper presents a control architecture aimed at implementing bandwidth optimization combined with call admission control (CAC) over a digital video broadcasting (DVB) return channel satellite terminal (RCST) under quality of service (QoS) constraints. The approach can be applied in all cases where traffic flows, coming from a terrestrial portion of the network, are merged together within a single DVB flow, which is then forwarded over the satellite channel. The paper introduces the architecture of data and control plane of the RCST at layer 2. The data plane is composed of a set of traffic buffers served with a given bandwidth. The control plane proposed in this paper includes a layer 2 resource manager (L2RM), which is structured into decision makers (DM), one for each traffic buffer of the data plane. Each DM contains a virtual queue, which exactly duplicates the corresponding traffic buffer and performs the actions to compute the minimum bandwidth need to assure the QoS constraints. After computing the minimum bandwidth through a given algorithm (in this view the paper reports some schemes taken in the literature which may be applied), each DM communicates this bandwidth value to the L2RM, which allocates bandwidth to traffic buffers at the data plane. Real bandwidth allocations are driven by the information provided by the DMs. Bandwidth control is linked to a CAC scheme, which uses current bandwidth allocations and peak bandwidth of the call entering the network to decide admission. The performance evaluation is dedicated to show the efficiency of the proposed combined bandwidth allocation and CAC.
机译:本文提出了一种控制架构,旨在在服务质量(QoS)约束下,在数字视频广播(DVB)返回信道卫星终端(RCST)上实现与呼叫接纳控制(CAC)相结合的带宽优化。该方法可应用于来自网络地面部分的业务流在单个DVB流中合并在一起,然后通过卫星信道转发的所有情况。本文介绍了第2层RCST的数据和控制平面的体系结构。数据平面由一组在给定带宽下服务的流量缓冲区组成。本文提出的控制平面包括一个第2层资源管理器(L2RM),它被构造为决策者(DM),一个用于数据平面的每个业务缓冲区。每个DM都包含一个虚拟队列,该队列精确地复制了相应的流量缓冲区,并执行操作以计算确保QoS约束所需的最小带宽。在通过给定算法计算了最小带宽之后(在此视图中,论文报告了一些文献中可能采用的方案),每个DM将此带宽值传送给L2RM,后者将带宽分配给数据平面的流量缓冲区。实际带宽分配由DM提供的信息驱动。带宽控制链接到CAC方案,该方案使用当前带宽分配和进入网络的呼叫的峰值带宽来决定接纳。性能评估专用于显示建议的组合带宽分配和CAC的效率。

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