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Modelling QoS in IoT Applications

机译:物联网应用中的QoS建模

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摘要

Internet of Things (IoT) aims to enable the interconnection of a large number of smart devices (things) using a combination of networks and computing technologies. But an influx of interconnected things makes a greater demand on the underlying communication networks and affects the quality of service (QoS). This paper investigates into the QoS of delay sensitive things and the corresponding traffic they generate over the network. Things such as security alarms, cameras, etc, generate delay sensitive information that must be communicated in a real time. Such things have heterogeneous features with limited buffer capacity, storage and processing power. Thus the most commonly used Best Effort service model cannot be an attractive mechanism to treat delay sensitive traffic. This paper proposes a cost-effective analytical model for a finite capacity queueing system with pre-emptive resume service priority and push-out buffer management scheme. Based on the analytical model various simulation results are generated in order to analyse the mean queue length and the blocking probability of high and low priority traffic for system with various capacities.
机译:物联网(IoT)旨在通过网络和计算技术的结合实现大量智能设备(事物)的互连。但是,互连事物的涌入对底层通信网络提出了更高的要求,并影响了服务质量(QoS)。本文研究了时延敏感事物的QoS以及它们在网络上产生的相应流量。诸如安全警报,摄像机等之类的东西会产生对延迟敏感的信息,必须实时进行通信。这样的事物具有异构特征,其缓冲容量,存储和处理能力有限。因此,最常用的“尽力而为”服务模型不能成为处理对延迟敏感的流量的有吸引力的机制。本文提出了一种具有优先抢占式服务优先级和推出缓冲区管理方案的有限容量排队系统的经济有效的分析模型。基于该分析模型,可以生成各种仿真结果,以便分析具有各种容量的系统的平均队列长度以及高优先级和低优先级流量的阻塞概率。

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