一种低成本、低功耗环境监测系统的特性

M. Catelani, L. Ciani, A. Bartolini, G. Guidi, G. Patrizi
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引用次数: 4

摘要

物联网是一项革命性的技术,代表了计算和通信的未来。本文重点介绍了用于智能农业的无线传感器网络的特性,这是物联网的新前沿之一。智能农业是应用信息和数据技术来优化复杂的农业系统。无线传感器网络被广泛用于测量与农业相关的信息,如温度、湿度、太阳辐射、污染的存在等。针对无线网络中经常遇到的问题,提出了一种低成本、低功耗的片上系统组成的无线网状网络的设计方案。特别是,这项工作提出了一个框架,用于表征为监测网络设计的定制设备:执行不同类型的测试,以分析组件的行为。最大覆盖距离是农业领域的一个关键参数,因为覆盖面积很大;本文还讨论了热特性,以提高可靠性性能和ADC校准,以确保采集数据的高精度。此外,本文重点关注传感器节点的功耗,事实上,最小化节点的当前功耗是保证低维护成本的强制性要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of a low-cost and low-power environmental monitoring system
IoT is a revolutionary technology that represents the future of computing and communications. The paper focuses on the characterization of a Wireless Sensor Network used for smart agriculture, which is one of the new frontiers of IoT. Smart farming is the application of information and data technologies for optimizing complex farming systems. WSNs are widely used to measure agri-related information like temperature, humidity, solar radiation, presence of pollution and so on. In this paper the design of a wireless mesh network composed by low cost and low power system-on-a-chip is presented dealing with the frequently encountered issues of wireless networks. In particular, this work proposes a framework for the characterization of customized devices designed for monitoring networks: different types of test are performed in order to analyze the behavior of the components. The work focuses on the maximum coverage distance which is a critical parameter in agriculture field since the largeness of the involved area; it also deals with the thermal characterization to improve reliability performances and ADC calibration to ensure high accuracy of the acquired data. Moreover, the paper pays great attention on the power consumption of the sensor node, in fact the minimization of the current consumption of the nodes is a mandatory requirement to ensure low maintenance costs.
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