The adoption of wireless communications and, in particular, Wi-Fi, at the lowest level of the factory automation hierarchy has not increased as fast as expected so far, mainly because of serious issues concerning determinism. Actually, besides the random access scheme, disturbance and interference prevent reliable communication over the air and, as a matter of fact, make wireless networks unable to support distributed real-time control applications properly. Several papers recently appeared in the literature suggest that diversity could be leveraged to overcome this limitation effectively. In this paper a reference architecture is introduced, which describes how seamless link-level redundancy can be applied to Wi-Fi. The framework is general enough to serve as a basis for future protocol enhancements, and also includes two optimizations aimed at improving the quality of wireless communication by avoiding unnecessary replicated transmissions. Some relevant solutions have been analyzed by means of a thorough simulation campaign, in order to highlight their benefits when compared to conventional Wi-Fi. Results show that both packet losses and network latencies improve noticeably.
翻译:采用无线通信,特别是无线-Fi,是工厂自动化等级最低层的无线通信,特别是无线-Fi,没有像预期的那样迅速增加,这主要是由于确定性方面的严重问题,实际上,除了随机访问计划之外,干扰和干扰还阻止了可靠的空中通信,事实上,使无线网络无法适当地支持实时的实时控制应用软件,最近一些文献中出现的文件表明,可以利用多样性来有效克服这一限制。本文件引入了一个参考结构,其中描述了如何将无缝连接级冗余应用到无线-Fi。这个框架很笼统,足以作为今后加强协议的基础,还包括两个优化办法,目的是通过避免不必要的重复传输来改进无线通信的质量。一些相关解决办法已经通过彻底的模拟活动加以分析,以便强调与常规的无线-Fi相比,它们的好处。结果显示,包损失和网络迟发情况都明显改善。