{"title":"The relation of LoRaWAN efficiency with energy consumption of sensor node","authors":"Nisit Pukrongta, Boonyarit Kumkhet","doi":"10.1109/ICPEI47862.2019.8945016","DOIUrl":null,"url":null,"abstract":"This paper presents the study of the various factors of LoRaWAN or LPWAN (Low power wide area network), that affect energy consumption compared to the efficiency of sensor nodes such as the transmitting and receiving data, the distance of transmission, and stability. The experiment efficiency of sensor node system by focuses on two parts. The first part, considered the node’s communication. We connected sensor node 3 nodes with LoRa base station and operating communication test for 7 days using the sensor node, which purpose to measurement and monitor of soil moisture, temperature, and humidity. Then setting and varying 3 communication parameters namely such as SF (spreading factor), CR (coding rate), d (distance). When any variable is adjusted, other variable is remaining constant. Finally, energy consumption was analyzed with each of variable to determine the suitability for different environments. When SF is high the power consumption is high, which is the highest SF value is 11. When the CR is low the power consumption is high, the lowest CR is 4/8. The second part, we measuring factor of packet’s communication, which is following to the LoRa protocol standard. Which the power consumption 73.29 mW/H. From experiment test, the soil moisture sensor nodes have a battery node’s lifetime is 6 days and 3 hours. in addition, maximum distance to communication of the soil moisture sensor node is 226m, with RSSI -116 dBm.","PeriodicalId":128066,"journal":{"name":"2019 International Conference on Power, Energy and Innovations (ICPEI)","volume":"45 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2019-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"6","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"2019 International Conference on Power, Energy and Innovations (ICPEI)","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1109/ICPEI47862.2019.8945016","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 6
Abstract
This paper presents the study of the various factors of LoRaWAN or LPWAN (Low power wide area network), that affect energy consumption compared to the efficiency of sensor nodes such as the transmitting and receiving data, the distance of transmission, and stability. The experiment efficiency of sensor node system by focuses on two parts. The first part, considered the node’s communication. We connected sensor node 3 nodes with LoRa base station and operating communication test for 7 days using the sensor node, which purpose to measurement and monitor of soil moisture, temperature, and humidity. Then setting and varying 3 communication parameters namely such as SF (spreading factor), CR (coding rate), d (distance). When any variable is adjusted, other variable is remaining constant. Finally, energy consumption was analyzed with each of variable to determine the suitability for different environments. When SF is high the power consumption is high, which is the highest SF value is 11. When the CR is low the power consumption is high, the lowest CR is 4/8. The second part, we measuring factor of packet’s communication, which is following to the LoRa protocol standard. Which the power consumption 73.29 mW/H. From experiment test, the soil moisture sensor nodes have a battery node’s lifetime is 6 days and 3 hours. in addition, maximum distance to communication of the soil moisture sensor node is 226m, with RSSI -116 dBm.
本文研究了LoRaWAN或低功率广域网(Low power wide area network, LPWAN)中影响传感器节点效率的各种因素,如数据的收发、传输距离、稳定性等。传感器节点系统的实验效率主要分为两部分。第一部分,考虑节点的通信。我们将传感器节点3个节点与LoRa基站连接,并使用该传感器节点进行了7天的运行通信测试,用于测量和监测土壤湿度、温度和湿度。然后设置和改变3个通信参数,即SF(扩频因子)、CR(编码率)、d(距离)。当任何变量被调整时,其他变量保持不变。最后,对每个变量的能耗进行分析,以确定不同环境的适用性。当顺丰度高时,功耗也高,最高顺丰度为11。当CR低时,功耗高,最低CR为4/8。第二部分根据LoRa协议标准对数据包的通信性能进行了测试。其中耗电量73.29 mW/H。从实验测试来看,土壤湿度传感器节点的电池节点寿命为6天3小时。土壤湿度传感器节点的最大通信距离为226m, RSSI为-116 dBm。