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Redundancy and Diversity in Wireless Networks to Support Mobile Industrial Applications in Industry 4.0

机译:无线网络中的冗余和多样性,以支持工业4.0的移动工业应用

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Factories are evolving into fully digitalized and networked structures for more adaptive and agile production ecosystems in the context of the Industry 4.0. Wireless communications will be a technical pillar of this evolution as it improves the reconfigurability of factories and the integration of mobile robots and objects. The integration of industrial wireless networks into the Industry 4.0 requires solutions capable to support highly reliable and deterministic low latency communications. This is particularly challenging for mobile industrial applications with constantly changing link quality conditions. This article experimentally evaluates for the first time the capacity of diversity and redundancy to improve the reliability and latency of wireless networks for mobile industrial applications. To this aim, a prototype is built in a collaborative robotics experimental facility. The prototype wirelessly connects a dual-arm robot and a mobile robot that collects and supplies components to the dual-arm robot. The prototype implements redundancy and diversity (using multipath TCP) for the wireless connections between both robots. The conducted trials show that both techniques improve the reliability of mobile industrial wireless communications even under the presence of interference. However, redundancy achieves lower latency levels and represents then the most attractive solution to support mobile industrial applications.
机译:工厂在行业的背景下,在行业背景下的更多自适应和敏捷的生产生态系统中的完全数字化和网络结构。无线通信将成为这一进化的技术支柱,因为它提高了工厂的重新配置和移动机器人和物体的集成。工业无线网络集成到行业4.0需要能够支持高度可靠和确定性低延迟通信的解决方案。这对移动工业应用尤其具有挑战性,具有不断变化的链路质量条件。本文首次评估了多样性和冗余能力,以提高无线网络用于移动工业应用的可靠性和延迟。为此目的,原型是在协同机器人实验设施中建立的。原型无线地连接双臂机器人和一个移动机器人,该机器人收集和将组件提供给双臂机器人。原型实现冗余和多样性(使用MultiPath TCP)以进行两个机器人之间的无线连接。所进行的试验表明,两种技术即使在干扰的情况下也能提高移动工业无线通信的可靠性。然而,冗余实现了更低的延迟水平,并且代表了支持移动工业应用的最具吸引力的解决方案。

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