Estimation and analysis of communication service time in a real-time wireless industrial network

Matteo Bertocco, C. Narduzzi, F. Tramarin, L. Seno, S. Vitturi
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引用次数: 7

Abstract

Wireless communication systems for industrial applications should cope with the demanding performance figures of real-time wired networks, providing high reliability and satisfying tight timeliness constraints. The implementation of a scheduling framework may represent a relevant method to deploy real-time behavior in distributed measurement, process control and supervision networks. A schedulability analysis, based on task parameters, determines if the network will be able to provide the guarantees required by the specified application. Nonetheless, this strategy and the related error recovery mechanism are often implemented at a high level protocol layer, without carefully considering the behavior of physical/data-link layers of the network. An effective characterization of the service time for packet delivery, as seen by the data link-layer, is instead required for a fine tuning of the scheduling algorithms. We analyzed the case of an IEEE 802.11g based network, where a central scheduler manages the traffic. We derived a model for the transmission times, in particular accounting for retransmissions due to channel impairment and interference. An improved model for the service time is then proposed, based on a cross-layer analysis. This allows to reshape the statistical knowledge of the metric, hence improving the network performance and admission test outcomes. The provided case-study enables the reader to understand the effectiveness of the proposed method, which provide a reliable soft real-time data acquisition system.
实时无线工业网络中通信服务时间的估计与分析
工业应用的无线通信系统应满足实时有线网络的性能要求,提供高可靠性并满足严格的时效性约束。调度框架的实现可以代表在分布式测量、过程控制和监督网络中部署实时行为的相关方法。基于任务参数的可调度性分析确定网络是否能够提供指定应用程序所需的保证。尽管如此,这种策略和相关的错误恢复机制通常是在高层协议层实现的,而没有仔细考虑网络的物理/数据链路层的行为。数据链路层所看到的数据包交付服务时间的有效表征,则需要对调度算法进行微调。我们分析了基于IEEE 802.11g的网络的情况,其中一个中央调度器管理流量。我们推导了一个传输时间的模型,特别考虑了由于信道损伤和干扰造成的重传。基于跨层分析,提出了一种改进的服务时间模型。这允许重塑度量的统计知识,从而改善网络性能和准入测试结果。所提供的案例研究使读者了解所提出方法的有效性,它提供了一个可靠的软实时数据采集系统。
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