Flexible factory automation: Potentials of contactless transmission systems, combining state-of-the-art technologies

D. Wesemann, S. Witte, A. Schmelter, R. Hes
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引用次数: 1

Abstract

The reduction of wires and connections is a fundamental necessity for upcoming industrial 4.0 solutions, requiring a large amount of reconfigurability and flexibility. Our research focuses on recent ways of combining energy and data transmission in single contactless transducers, enabling easy installation, maintenance and possible fulfilment of high protection classes. While this approach can typically be solved by combining Wifi and inductive energy transfer, the Wifi aspect is often limited by the available media access and channel occupation. Another issue is the real time capability of Wifi or other wireless transmission protocols like IEEE 802.15.4. While creating a new wireless or contactless standard is beyond the focus of this work, we concentrate on combining existing technologies and their interoperability. This includes powerline communication systems, near field data transmission and inductive energy transfer mechanisms.
灵活的工厂自动化:结合最先进技术的非接触式传输系统的潜力
减少电线和连接是即将到来的工业4.0解决方案的基本需求,需要大量的可重构性和灵活性。我们的研究重点是在单个非接触式传感器中结合能量和数据传输的最新方法,从而易于安装,维护并可能实现高保护等级。虽然这种方法通常可以通过结合Wifi和感应能量传输来解决,但Wifi方面往往受到可用媒体访问和信道占用的限制。另一个问题是Wifi或其他无线传输协议(如IEEE 802.15.4)的实时能力。虽然创建新的无线或非接触式标准超出了这项工作的重点,但我们专注于结合现有技术及其互操作性。这包括电力线通信系统,近场数据传输和感应能量传输机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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