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Modeling of Smart Grid traffics using non-preemptive priority queues

机译:使用非先发制人的优先级队列建模智能网格流量

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The Smart Grid which is a digitally-enhanced version of the traditional electric grid will provide the infrastructure to support financial, informational, and electrical transactions among consumers, assets, and those users who have authorized access. Smart grid has different capabilities. It can be used to monitor and control the national electrical network. By efficient control of electrical network it is possible to maximize the throughput of the system and reduce network energy consumption. n the smart grid networks, different traffics with different requirements are flow in the network. There are multiple smart grid applications which are running in the network simultaneously. As there are different traffic types with different quality of service requirements in the smart grid, in this paper we propose a service differentiation unit which can support different services in smart grid networks. The proposed model can support the already mentioned traffic classes. The Class1 is assigned to high priority real time traffic such as teleprotection. Alarm data or remote real-time monitoring and control with SCADA systems and DCS systems are assigned to Class 2. Surveillances camera and emergency connectivity through mobile base stations are some sample applications of Class 3. Metering data and event notification are assigned to Class 4. Finally, Class 5 is for VoIP traffics. Using Non-Preemptive Priority Queues, the smart grid traffics are simulated. Simulation results confirm that this type of queuing discipline is proper for smart grid traffics.
机译:作为传统电网的数字增强版的智能电网将提供基础设施,以支持消费者,资产和已授权访问的用户之间的财务,信息和电气交易。智能电网具有不同的功能。它可用于监控和控制国家电网。通过有效地控制电网,可以最大化系统的吞吐量并降低网络能耗。 n智能电网网络,具有不同要求的不同流量在网络中流动。有多个智能电网应用程序同时在网络中运行。由于在智能电网中具有不同的交通类型具有不同的服务质量要求,因此在本文中,我们提出了一种服务差分单元,可以支持智能电网网络中的不同服务。该建议的模型可以支持已经提到的流量类。类别1被分配给高优先级的实时流量,例如远程保护。使用SCADA系统和DCS系统的报警数据或远程实时监控和控制被分配给类2.监视摄像机和通过移动基站的紧急连接是某些类别的应用程序应用程序。计量数据和事件通知分配给4级。最后,5级是用于VoIP流量的。使用非抢占优先级队列,模拟智能网格流量。仿真结果证实,这种类型的排队纪律适用于智能网格流量。

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