Technologies for biodegradable wireless plant monitoring sensors

S. Kurth, S. Voigt, R. Zichner, F. Roscher, Perez Weigel, T. Großmann
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引用次数: 1

Abstract

A monitoring system to early detect adverse plant crowing conditions is developed as a first attempt, and laboratory samples are available. The hardware part of the system consists of a wireless sensor network to gather and transfer the data, a data gateway to collect data and bring it to the internet and a central server running an expert system. For practical use, the sensors are fabricated from materials that are biodegradable or inert with a minimum amount of metal and ceramic and allow for remaining them on the field when harvesting. The sensors detect temperature, soil moisture and, in the near future the leaf wetness and nitrate. Single-chip controllers which include radio communication interfaces are used on printed circuit boards made partly of conventional PCB material and of biodegradable substrate printing of the wiring and of the communication antennas. A biodegradable zinc-manganese dioxide battery was applied for powering of the sensor nodes. The advance of the new forecast system is that the sensors are cheap and degradable which make it possible to monitor micro-climate on an even significantly higher dense scale at lower effort and low price by the professionals. This allows for site-specific treatment, and thus makes it possible to lower the plant protection agents application even more within the field scale.
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生物可降解无线植物监测传感器技术
作为第一次尝试,开发了一个监测系统,以早期发现不利的植物生长条件,并提供实验室样品。该系统的硬件部分由收集和传输数据的无线传感器网络、收集数据并将其传输到互联网的数据网关和运行专家系统的中央服务器组成。在实际应用中,传感器由可生物降解或惰性的材料制成,其中含有少量的金属和陶瓷,并允许在收获时将其留在现场。传感器可以检测温度、土壤湿度,在不久的将来还可以检测树叶湿度和硝酸盐。包括无线电通信接口的单芯片控制器用于部分由传统PCB材料和印刷布线和通信天线的可生物降解基板制成的印刷电路板上。采用可生物降解的锌-二氧化锰电池为传感器节点供电。新预报系统的进步在于传感器便宜且可降解,这使得专业人员可以以更低的努力和更低的价格监测更密集的微气候。这样就可以进行特定地点的处理,从而可以在田间范围内进一步降低植保剂的施用。
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