Feasibility Study of the LoRaWAN blind Adaptive Data Rate

A. Farhad, Dae-Ho Kim, Jeong-Sun Yoon, Jae-Young Pyun
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引用次数: 6

Abstract

LoRaWAN is widely adopted as an alternate solution for the Internet of Things applications due to its long-range, low-cost, ultra-low energy consumption and support for a large number of end devices (EDs). To allocate resources to EDs, LoRaWAN utilizes an energy-efficient adaptive data rate (ADR), which is recommended for static applications. Recently, Semtech suggests using a blind ADR (BADR) to increase geographical coverage with enhanced battery life for mobile applications, such as pet-tracking. The BADR utilizes three spreading factors (SFs): SF 12 (one time), SF 10 (twice), and SF 7 (three times) every hour. This study aims to analyze and provide insights into the potential and limits of the BADR. Simulation results show that both ADRs suffer from high packet loss and excessive energy consumption in confirmed and unconfirmed modes. However, BADR is observed outperforming the ADR.
LoRaWAN盲自适应数据速率的可行性研究
LoRaWAN因其远程、低成本、超低能耗和支持大量终端设备(ed)而被广泛采用为物联网应用的替代解决方案。为了将资源分配给ed, LoRaWAN采用了一种节能的自适应数据速率(ADR),推荐用于静态应用。最近,Semtech建议使用盲ADR (BADR)来增加地理覆盖范围,同时延长移动应用(如宠物追踪)的电池寿命。BADR每小时使用三个扩频因子(SF): SF 12(一次),SF 10(两次)和SF 7(三次)。本研究旨在分析和洞察BADR的潜力和局限性。仿真结果表明,在确认模式和未确认模式下,adr都存在丢包率高、能耗大的问题。然而,BADR的表现优于ADR。
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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