Iglesias-Rivera Alejandro, Van Glabbeek Roald, Guerra Erik Ortiz, Braeken An, Steenhaut Kris, Cruz-Enriquez Hector
Departamento de Electrónica y Telecomunicaciones, Universidad Central "Marta Abreu" de Las Villas, Santa Clara 50100, Villa Clara, Cuba.
Department of Engineering Technology (INDI), Vrije Universiteit Brussel, Pleinlaan 2, 1050 Brussel, Belgium.
Sensors (Basel). 2022 Mar 14;22(6):2253. doi: 10.3390/s22062253.
It has been demonstrated that LoRa-based wide area networks (WANs) can cover extended areas under harsh propagation conditions. Traditional LoRaWAN solutions based on single-hop access face important drawbacks related to the presence of blind spots. This paper aims to tackle blind spots and performance issues by using a relaying approach. Many researchers investigating multi-hop solutions consider a fixed spreading factor (SF). This simplifies synchronization and association processes, but does not take advantage of the orthogonality between the virtual channels (i.e., frequency, SF) that help to mitigate blind spots. This paper proposes a time-slotted spreading factor hopping (TSSFH) mechanism that combines virtual channels and time slots into a frame structure. Pseudo-random scheduling is used inside blind spots, which simplifies the end-devices' communication process and network organization. The results show how collisions decrease inside blind spots when more communication opportunities become available as more relaying nodes can be listening in different cells (i.e., frequency, SF-offset, time-offset). This has a direct impact on the collision-free packet delivery ratio (PDR) metric, which improves when more listening windows are opened, at the expense of faster battery depletion.
已经证明,基于LoRa的广域网(WAN)可以在恶劣的传播条件下覆盖扩展区域。基于单跳接入的传统LoRaWAN解决方案面临与盲点存在相关的重要缺点。本文旨在通过使用中继方法来解决盲点和性能问题。许多研究多跳解决方案的研究人员考虑固定扩频因子(SF)。这简化了同步和关联过程,但没有利用有助于减轻盲点的虚拟信道(即频率、SF)之间的正交性。本文提出了一种时隙扩频因子跳变(TSSFH)机制,该机制将虚拟信道和时隙组合成一个帧结构。在盲点内部使用伪随机调度,这简化了终端设备的通信过程和网络组织。结果表明,当更多的中继节点可以在不同的小区(即频率、SF偏移、时间偏移)中监听时,随着更多通信机会的出现,盲点内部的冲突如何减少。这对无冲突数据包传输率(PDR)指标有直接影响,当打开更多监听窗口时,该指标会提高,但代价是电池更快耗尽。