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A distributed load balancing approach for industrial IEEE 802.11 wireless networks

机译:工业IEEE 802.11无线网络的分布式负载平衡方法

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Advantages provided by the use of wireless technologies in industrial scenarios, like reduced costs of installation, better flexibility, the ability to easily realize temporary deployments (e.g. for monitoring purposes), etc. are discussed by researchers in literature. In these contexts, time-critical transmissions have to be supported by automation networks. In IEEE 802.11 standard protocol, one of most popular technologies for process control networks, Access Points (APs) are responsible for nodes connection. Timeliness of communications can be compromised by transmission of wireless nodes through overloaded APs. This paper shows a new dynamic Load Balancing approach that distributes network load in order to ensure, for each station, best possible performances in terms of soft real-time constraints, in an industrial process control scenario.
机译:研究人员在文献中讨论了在工业场景中使用无线技术所提供的优势,例如降低了安装成本,提高了灵活性,易于实现临时部署(例如出于监视目的)的能力等。在这些情况下,时间紧迫的传输必须由自动化网络来支持。在IEEE 802.11标准协议中,用于过程控制网络的最流行技术之一是访问点(AP)负责节点连接。通过超载AP传输无线节点可能会损害通信的及时性。本文展示了一种新的动态负载平衡方法,该方法可以分配网络负载,以确保在工业过程控制方案中,每个站点都可以在软实时约束方面确保最佳性能。

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