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State Machine with Tracking Tree and Traffic Allocation Scheme Based on Cumulative Entropy for Satellite Network

机译:具有跟踪树和交通分配方案的状态机,基于卫星网络累积熵

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摘要

Satellite network is regarded as an important component of 5th Generation (5G). New deployment scenarios have been designed in form of satellite network fused 5G terrestrial network. Service requests in Non terrestrial networks (NTN) are noncentralized in the time and space domain, which cause services modelling uncertain and lack of balance between latency and bandwidth. Targeted at those bottlenecks, a Satellite service model based on State machine with tracking tree (SM-SMTT) and traffic allocation scheme base on cumulative entropy is proposed. Enhanced mobile broadband service, low latency service and massive machine type communications in satellite will be modelled by SM-SMTT. Cumulative entropy is introduced as the criterion to allocate traffic. According to the lower bound from cumulative entropy, the balance of latency and bandwidth is achieved in different deployment scenarios. The simulation in OPNET, demonstrations the new scheme has promoted the performance of delay and bandwidth utilization by 37.8% and 12.0%.
机译:卫星网络被认为是第5代(5G)的重要组成部分。新的部署方案是以卫星网络熔融5G地面网络的形式设计的。非地面网络(NTN)中的服务请求在时间和空间域中无界化,这导致服务在延迟和带宽之间不确定且缺乏平衡。提出了一种基于具有跟踪树(SM-SMTT)和交通分配方案基于累积熵的卫星服务模型的瓶颈。增强的移动宽带服务,卫星中的低延迟服务和大量机床类型通信将由SM-SMTT进行建模。累计熵作为分配流量的标准。根据累积熵的下限,在不同部署方案中实现了延迟和带宽的平衡。 OPNET中的仿真,演示新方案促进了延迟和带宽利用的性能37.8%和12.0%。

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