An Energy Efficient LoRa-based Multi-Sensor IoT Network for Smart Sensor Agriculture System

Shivakant Mishra, S. Nayak, Ramnarayan Yadav
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引用次数: 6

Abstract

With the advancement and usage of Internet of Things (IoT), smart agriculture is evolving rapidly. Smart solutions based on IoT can not only help the farmers in maximizing the profits but also help them in reducing the manual supervision of agriculture land. In a smart agriculture system, inexpensive, resource-constrained sensors are installed near the crops as well as at some strategic locations in an agriculture field to collect relevant crop and environment data in real time. This data is then used for both critical, latency-sensitive decision making as well as long-term planning. The key challenges in building a smart agriculture system include high communication latency and bandwidth consumption incurred with computing on the cloud, frequent Internet disconnections in rural areas, and a need for keeping the overall cost low for the end users (farmers). In this paper, we discuss the design and implementation of our on-going, LoRa-based three-tier smart agriculture system comprised of (i) Sensing layer, (ii) Fog layer, and (iii) Cloud layer. In particular, we focus on the how the low-power, low-bandwidth and long-range features of LoRa are utilized to transform traditional agriculture land of rural areas in India into smart agriculture system. We present the performance of our current prototype and compare with the existing, state-of-the-arts framework for smart agriculture system in terms of cost, latency and distance.
面向智能传感器农业系统的高效节能lora多传感器物联网
随着物联网的发展和应用,智慧农业正在迅速发展。基于物联网的智能解决方案不仅可以帮助农民实现利润最大化,还可以帮助他们减少对农业用地的人工监管。在智能农业系统中,廉价且资源有限的传感器安装在作物附近以及农业领域的一些战略位置,以实时收集相关的作物和环境数据。然后将这些数据用于关键的、对延迟敏感的决策制定以及长期规划。构建智能农业系统的主要挑战包括高通信延迟和云计算带来的带宽消耗,农村地区频繁的互联网中断,以及对最终用户(农民)保持低总体成本的需求。在本文中,我们讨论了我们正在进行的,基于lora的三层智能农业系统的设计和实现,该系统由(i)传感层,(ii)雾层和(iii)云层组成。我们特别关注如何利用LoRa的低功耗、低带宽和远程特性,将印度农村地区的传统农业用地转变为智能农业系统。我们展示了我们当前原型的性能,并在成本、延迟和距离方面与现有的最先进的智能农业系统框架进行了比较。
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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