School of Information and Communication Engineering, Chungbuk National University, Cheongju 28644, Republic of Korea.
Research Institute for Computer and Information Communication, Chungbuk National University, Cheongju 28644, Republic of Korea.
Sensors (Basel). 2023 Apr 10;23(8):3874. doi: 10.3390/s23083874.
Long range (LoRa) is a low-power wide-area technology because it is eminent for robust long-distance, low-bitrate, and low-power communications in the unlicensed sub-GHz spectrum used for the Internet of things (IoT) networks. Recently, several multi-hop LoRa networks have proposed schemes with explicit relay nodes to partially mitigate the path loss and longer transmission time bottlenecks of the conventional single-hop LoRa by focusing more on coverage expansion. However, they do not consider improving the packet delivery success ratio (PDSR) and the packet reduction ratio (PRR) by using the overhearing technique. Thus, this paper proposes an implicit overhearing node-based multi-hop communication (IOMC) scheme in IoT LoRa networks, which exploits implicit relay nodes for performing the overhearing to promote relay operation while satisfying the duty cycle regulation. In IOMC, implicit relay nodes are selected as overhearing nodes (OHs) among end devices with a low spreading factor (SF) in order to improve PDSR and PRR for distant end devices (EDs). A theoretical framework for designing and determining the OH nodes to execute the relay operations was developed with consideration of the LoRaWAN MAC protocol. Simulation results verify that IOMC significantly increases the probability of successful transmission, performs best in high node density, and is more resilient to poor RSSI than the existing schemes.
远距离(LoRa)是一种低功耗广域网技术,因为它在物联网(IoT)网络中使用的免授权 sub-GHz 频谱上具有强大的长距离、低比特率和低功耗通信能力。最近,已经提出了几种多跳 LoRa 网络方案,这些方案明确使用中继节点,通过更多地关注覆盖范围的扩展,部分缓解传统单跳 LoRa 的路径损耗和较长传输时间瓶颈。然而,它们没有考虑通过使用侦听技术来提高分组投递成功率(PDSR)和分组减少率(PRR)。因此,本文提出了一种物联网 LoRa 网络中的隐式侦听节点多跳通信(IOMC)方案,该方案利用隐式中继节点执行侦听以促进中继操作,同时满足占空比规定。在 IOMC 中,选择具有低扩频因子(SF)的终端设备中的隐式中继节点作为侦听节点(OH),以提高远距离终端设备(ED)的 PDSR 和 PRR。已经制定了一个设计和确定执行中继操作的 OH 节点的理论框架,同时考虑了 LoRaWAN MAC 协议。仿真结果验证了 IOMC 显著提高了成功传输的概率,在高节点密度下性能最佳,并且比现有方案对 RSSI 较差更具弹性。