Design of a WSN for smart irrigation in citrus plots with fault-tolerance and energy-saving algorithms

L. Parra, Javier Rocher, Laura García, Jaime Lloret, Jesús Tomás, Óscar Romero, M. Rodilla, S. Falco, M. Sebastiá-Frasquet, J. Mengual, J. A. González, B. Roig
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引用次数: 27

Abstract

Wireless sensor networks are widely used for monitoring different processes, including agriculture, in order to reach sustainability. One of the keys to sustainable crops is water saving. In particular, saving water is extremely important in arid and semiarid regions. In those regions, citrus trees are cultivated, and drip irrigation is used to save water. In this paper, we propose a smart irrigation system for citrus trees using a WSN. We describe the employed sensors and nodes for this proposal. Next, we present the proposed architecture and the operational algorithms for the nodes. Moreover, we designed different algorithms for fault tolerance and energy saving functionalities. The energy saving algorithm is based on the relevance of the gathered data, which is analyzed in order to consider whether the information should be forwarded or not. A TPC-based protocol is proposed to perform the communication among the nodes of our system. In addition, we present different simulations of the proposed system. Particularly, we show the consumed bandwidth and the remaining energy in the different nodes. Finally, we test different energy configurations to evaluate the network lifetime and the remaining energy when the first node depletes its energy.
基于容错和节能算法的柑橘小区智能灌溉无线传感器网络设计
无线传感器网络被广泛用于监测不同的过程,包括农业,以达到可持续性。可持续作物的关键之一是节水。特别是在干旱和半干旱地区,节约用水极为重要。在这些地区,人们种植柑橘树,并采用滴灌来节约用水。本文提出了一种基于无线传感器网络的柑橘树智能灌溉系统。我们描述了该提案所使用的传感器和节点。接下来,我们提出了节点的架构和操作算法。此外,我们针对容错和节能功能设计了不同的算法。节能算法是基于采集到的数据的相关性进行分析,以考虑信息是否需要转发。提出了一种基于tpc的协议来实现系统各节点之间的通信。此外,我们提出了不同的模拟所提出的系统。特别是,我们显示了在不同节点上消耗的带宽和剩余能量。最后,我们测试了不同的能量配置,以评估网络寿命和第一个节点耗尽其能量时的剩余能量。
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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