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A benchmark survey of long range (LoRaTM) spread-spectrum-communication at 2.45 GHz for safety applications

机译:针对安全应用的2.45 GHz远程(LoRaTM)扩频通信的基准调查

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The demand of wireless solutions in industrial applications increases since the early nineties. This trend is not only ongoing, it is further pushed by developments in the area of software stacks like the latest Bluetooth Low Energy Stack. It is also pushed by new chip-designs and powerful and highly integrated electronic hardware. The acceptance of wireless technologies as a possible solution for industrial applications, has overcome the entry barrier [1]. The first step to see wireless as standard for many industrial applications is almost accomplished. Nevertheless there is nearly none acceptance of wireless technology for Safety applications. One highly challenging and demanding requirement is still unsolved: The aspect safety and robustness. Those topics have been addressed in many cases but always in a similar manner. WirelessHART as an example addresses this topic with redundant so called multiple propagation paths and frequency hopping to handle with interferences and loss of network participants. So far the pure peer to peer link is rarely investigated and there are less safety solutions available. One product called LoRa™ can be seen as one possible solution to address this lack of safety within wireless links. This paper focuses on the safety performance evaluation of a modem-chip-design. The use of diverse and redundant wireless technologies like LoRa can lead to an increase acceptance of wireless in safety applications. Many measurements in real industrial application have been carried out to be able to benchmark the new chip in terms of the safety aspects. The content of this research results can help to raise the level of confidence in wireless. In this paper, the term “safety” is used for data transmission reliability.
机译:自九十年代初以来,无线解决方案在工业应用中的需求不断增长。这种趋势不仅在持续,而且在软件堆栈领域(例如最新的蓝牙低功耗堆栈)方面的发展进一步推动了这一趋势。新的芯片设计和功能强大且高度集成的电子硬件也推动了它的发展。无线技术作为工业应用的可能解决方案已被接受,从而克服了进入壁垒[1]。将无线视为许多工业应用的标准的第一步已基本完成。然而,几乎没有人接受安全技术中的无线技术。一个极具挑战性和高要求的要求仍未解决:方面的安全性和鲁棒性。这些主题在很多情况下都已解决,但总是以类似的方式进行。以WirelessHART为例,它以冗余的所谓多传播路径和跳频来解决这个问题,以应对干扰和网络参与者的损失。到目前为止,很少研究纯对等链路,并且可用的安全解决方案较少。可以将一种名为LoRa™的产品视为解决无线链路中这种安全性不足的一种可能的解决方案。本文着重于调制解调器芯片设计的安全性能评估。使用LoRa之类的多样且冗余的无线技术可以提高安全应用中对无线的接受程度。为了在安全性方面对新芯片进行基准测试,已经进行了实际工业应用中的许多测量。这项研究结果的内容可以帮助提高对无线技术的信心。在本文中,术语“安全性”用于数据传输的可靠性。

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