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Evaluation of LoRa LPWAN technology for remote health and wellbeing monitoring

机译:LORA LPWAN技术评价远程健康与福利监测

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Low power consumption, low transceiver chip cost and large coverage area are the main characteristics of the low power wide area networks (LPWAN) technologies. We expect that LPWAN can be part of enabling new human-centric health and wellness monitoring applications. Therefore in this work we study the indoor performance of one LPWAN technology, namely LoRa, by the means of real-life measurements. The measurements were conducted using the commercially available equipment in the main campus of the University of Oulu, Finland, which has an indoor area spanning for over 570 meters North to South and over 320 meters East to West. The measurements were executed for a sensor node operating close to human body that was periodically reporting the sensed data to a base station. The obtained results show that when using 14 dBm transmit power and the largest spreading factor of 12 for the 868 MHz ISM band, the whole campus area can be covered. Measured packet success delivery ratio was 96.7 % without acknowledgements and retransmissions.
机译:低功耗,低收发器芯片成本和大覆盖面积是低功耗广域网(LPWAN)技术的主要特征。我们希望LPWAN可以成为实现新的人力化健康和健康监测应用的一部分。因此,在这项工作中,我们研究了一个LPWAN技术的室内性能,即LORA,通过现实生活的测量。测量使用芬兰奥卢大学主校区进行的商业上可获得的设备进行,该设备拥有距离南北570米以上的室内区域,以外320米到西。针对靠近人体的传感器节点执行测量,该传感器节点定期向基站报告感测数据。获得的结果表明,当使用14 dBm发射功率和868 MHz ISM频段的最大扩展因子12时,可以覆盖整个校园区。未经致谢和重传,测量数据包成功交付率为96.7%。

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