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A multi-model reference control approach for bandwidth-on-demand protocols in satellite networks

机译:卫星网络中按需带宽协议的多模型参考控制方法

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This paper presents a multi-model reference control (MMRC) approach for queue-based bandwidth-on-demand (BoD) procedures in geostationary satellite networks. BoD access protocols address the problem of guaranteeing a high exploitation of the valuable satellite bandwidth while offering acceptable end-to-end delays to the traffic accessing the network. In queue-based protocols, the controller objective is to drive the buffer queue length to a certain target queue length; in the proposed scheme, model references (MRs) are used to address the problem of adapting the target queue length to the statistical characteristics of the traffic. The reference queue length is computed as a weighted sum of the outputs of the different MRs; the weights are computed on-line by evaluating the network utilization achieved by each MR, in response to the actual traffic feeding the system. Moreover, the target network utilization is dynamically varied based on the estimated network load. The BoD performances are evaluated via simulations. The work underlying this paper is based on the results of the GEOCAST, SATIP6 and SATSIX projects, financed by European Union.
机译:本文提出了对地静止卫星网络中基于队列的按需带宽(BoD)程序的多模型参考控制(MMRC)方法。 BoD访问协议解决了以下问题:保证对宝贵的卫星带宽进行充分利用,同时为访问网络的流量提供可接受的端到端延迟。在基于队列的协议中,控制器的目标是将缓冲区队列长度驱动到特定的目标队列长度。在提出的方案中,模型参考(MR)用于解决使目标队列长度适应流量统计特征的问题。参考队列长度被计算为不同MR的输出的加权和;通过评估每个MR响应于馈入系​​统的实际流量,可以通过评估每个MR实现的网络利用率来在线计算权重。此外,目标网络利用率会根据估计的网络负载动态变化。通过模拟评估BoD的性能。本文所依据的工作是基于欧盟资助的GEOCAST,SATIP6和SATSIX项目的结果。

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