Research of LoRaWAN productivity performance models for building IoT networks

R. Shaporin, Mykola A. Hodovychenko, Roman O. Melnyk
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Abstract

The study of the LoRaWAN method application performance models in the IoT networks, which is currently being intensively developed, improved and is an important component of the information society. LoRa is a new long-range, low-power wireless technology that is key to building IoT networks around the world. Unlike other wireless technologies, the signal range and autonomy are enormous. Unlike GSM networks, it does not require bulky equipment with a high level of radiation. It can be easily used in places with mass construction without harm to human health. Two main scenarios for modeling performance improvement were investigated. Based on the results of the research, it is concluded that doubling the bandwidth effectively doubles the baud rate, and increasing the bandwidth reduces the sensitivity of the receiver, while increasing the propagation factor increases the sensitivity of the receiver. It is shown that by slightly changing the ACK procedure, it is possible to significantly improve the system performance in terms of packet delivery factor, system capacity, and energy efficiency. Conversely, it is determined that other system parameters are already well configured.
面向物联网网络构建的LoRaWAN生产力性能模型研究
LoRaWAN方法在物联网网络中的应用性能模型的研究,是目前正在大力发展和完善的,是信息社会的重要组成部分。LoRa是一种新的远程、低功耗无线技术,是在全球范围内构建物联网网络的关键。与其他无线技术不同,它的信号范围和自主性都非常大。与GSM网络不同的是,它不需要体积庞大、辐射强度高的设备。可方便地应用于大型建筑场所,对人体健康无危害。研究了建模性能改进的两个主要场景。根据研究结果得出,带宽加倍有效地提高了波特率,增加带宽降低了接收机的灵敏度,而增加传播系数则提高了接收机的灵敏度。结果表明,通过稍微改变ACK过程,可以显著提高系统的性能,包括数据包传输系数、系统容量和能源效率。相反,确定其他系统参数已经配置好。
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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