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A Comparison Study of LPWAN Technologies Based on Onsite Measurements in a Converter Station Hall

机译:基于转炉站大厅现场测量的LPWAN技术的比较研究

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With the fast development of the industrial internet of things (IIoT), communication technology becomes critical as it plays an essential role in any IIoT systems. For wireless battery-powered sensors with low data rate demands, the low power wide area network (LPWAN) technology is considered as an appropriate method due to its long-range and low energy consumption properties. In this paper, we aim at comparing and evaluating different LPWAN techniques in a converter station. In particular, we consider a scenario that wireless sensors are applied to monitor the condition of converters’ key components while gateways are placed in the patrol corridor of the converter hall to collect the state data transmitted from these sensors. Based on our onsite measurement results, we validate that the selected LPWAN techniques can provide the necessary coverage along with reliable link connections while a typical wireless local area network (WLAN) standard, i.e., WiFi, cannot fulfil. Moreover, the LoRa in 470 MHz outperforms other techniques in this certain scenario.
机译:随着企业互联网(IIOT)的快速发展,通信技术变得至关重要,因为它在任何IIOT系统中发挥着重要作用。对于具有低数据速率要求的无线电池供电的传感器,由于其远程和低能耗特性,低功耗广域网(LPWAN)技术被认为是适当的方法。在本文中,我们的目标是在转换站中进行比较和评估不同的LPWAN技术。特别是,我们考虑应用无线传感器以监视转换器关键部件的条件的情况,而网关放置在转换器大厅的巡逻轮路中以收集从这些传感器传输的状态数据。基于我们的现场测量结果,我们验证了所选的LPWAN技术可以提供必要的覆盖范围以及可靠的链路连接,而典型的无线局域网(WLAN)标准,即WiFi,不能满足。此外,LORA在470 MHz中优于这种情况下的其他技术。

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