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QoS based Admission Control using Multipath Scheduler for IP over Satellite Networks

机译:使用多路径调度程序的基于QoS的卫星网络IP的基于QoS的准入控制

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摘要

This paper presents a novel scheduling algorithm to support quality of service (QoS) for multiservice applications over integrated satellite and terrestrial networks using admission control system with multipath selection capabilities. The algorithm exploits the multipath routing paradigm over LEO and GEO satellites constellation in order to achieve optimum end-to-end QoS of the client-server Internet architecture for HTTP web service, file transfer, video streaming and VoIP applications. The proposed multipath scheduler over the satellite networks advocates load balancing technique based on optimum time-bandwidth in order to accommodate the burst of application traffics. The method tries to balance the bandwidth load and queue length on each link over satellite in order to fulfil the optimum QoS level for each traffic type. Each connection of a traffic type will be routed over a link with the least bandwidth load and queue length at current time in order to avoid congestion state. The multipath routing scheduling decision is based on per connection granularity so that packet reordering at the receiver side could be avoided. The performance evaluation of IP over satellites has been carried out using multiple connections, different file sizes and bit-error-rate (BER) variations to measure the packet delay, loss ratio and throughput.
机译:本文提出了一种新的调度算法,该算法使用具有多径选择功能的准入控制系统,在集成的卫星和地面网络上支持多服务应用的服务质量(QoS)。该算法利用LEO和GEO卫星星座上的多路径路由范式,以实现用于HTTP Web服务,文件传输,视频流和VoIP应用的客户端-服务器Internet体系结构的最佳端到端QoS。提议的卫星网络上的多路径调度程序提倡基于最佳时间带宽的负载均衡技术,以适应应用流量的突发性。该方法尝试平衡卫星上每个链路上的带宽负载和队列长度,以便为每种流量类型实现最佳QoS级别。为了避免拥塞状态,将在当前时间通过带宽负载和队列长度最小的链路来路由流量类型的每个连接。多路径路由调度决策基于每个连接的粒度,因此可以避免在接收器侧对数据包进行重新排序。卫星IP的性能评估已使用多个连接,不同的文件大小和误码率(BER)变化来测量数据包延迟,丢失率和吞吐量。

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