Performance evaluation of LoRa LPWAN technology for IoT-based blast-induced ground vibration system

IF 0.6 Q4 ENGINEERING, MECHANICAL
P. Ragam, D. Nimaje, D. Yadav, Guntha Karthik
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引用次数: 8

Abstract

The recent proliferation of wireless sensor networks (WSNs) evolution into the Internet of Things (IoT) vision enables a variety of low-cost monitoring applications which allows a seamless transfer of information via embedded computing and network devices. Ambiguous ground vibration can be induced by blasting demolition is a severe concern which grievously damages the nearby dwellings and plants. It is an indispensable prerequisite for measuring the blast-induced ground vibration (BIGV), accomplishing a topical and most active research area. Thus, proposed and developed an architecture which emphasizes the IoT realm and implements a low-power wide-area networks (LPWANs) based system. Especially, using the available Long-Range (LoRa) Correct as Radio Frequency (RF) module, construct a WSN configuration for acquisition and streaming of required data from and to an IoT gateway. The system can wirelessly deliver the information to mine management and surrounding rural peoples to aware of the intensity of BIGV level. In this article, an endeavor has been made to introduce a LoRa WAN connectivity and proved the potentiality of the integrated WSN paradigm by testing of data transmission-reception in a non-line of sight (NLOS) condition. The path loss metrics and other required parameters have been measured using the LoRa WAN technology at 2.4 GHz frequency.
LoRa LPWAN技术在基于物联网的爆破地面振动系统中的性能评估
最近,无线传感器网络(WSN)向物联网(IoT)发展,实现了各种低成本的监控应用程序,这些应用程序允许通过嵌入式计算和网络设备无缝传输信息。爆破拆除可能会引起不明确的地面振动,这是一个严重的问题,会严重损坏附近的住宅和植物。它是测量爆炸引起的地面振动(BIGV)的必要前提,完成了一个热门和最活跃的研究领域。因此,提出并开发了一种强调物联网领域并实现基于低功耗广域网(LPWAN)的系统的体系结构。特别是,使用可用的远程(LoRa)校正射频(RF)模块,构建WSN配置,用于从物联网网关获取和向物联网网关传输所需数据。该系统可以无线地将信息传递给矿山管理部门和周围农村人民,以了解BIGV水平的强度。在本文中,我们致力于引入LoRa WAN连接,并通过在非视距(NLOS)条件下测试数据传输接收来证明集成WSN模式的潜力。已经使用2.4GHz频率下的LoRa WAN技术测量了路径损耗度量和其他所需参数。
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来源期刊
Journal of Measurements in Engineering
Journal of Measurements in Engineering ENGINEERING, MECHANICAL-
CiteScore
2.00
自引率
6.20%
发文量
16
审稿时长
16 weeks
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