Detecting of water shortage information in crops with acoustic emission technology and automatic irrigation system

Shifeng Yang, Jian-ying Guo, Xiuqing Wang
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引用次数: 8

Abstract

The automatic and real time irrigation system based on detecting of water shortage information in crops with acoustic emission (AE) technology was studied and developed, an experimental study in greenhouse with the crop of tomato as the target was carried out. PCI-2 AE board-card, R15 sensor, electronic balance, temperature sensor, humidity sensor, CO2 sensor, illumination sensor and PCI-8333 DAQ were adopted to compose the hardware detecting system, the virtual instrument technology was used to construct the software system, the three factors of soil, crops and atmosphere in SPAC system were effectively integrated, the real time acquisition and detecting system of information between crop acoustic emission and each environmental factor was established. It shows that: to some extent, the frequency counts of AE of the crops in water stress increase gradually with the increase of the water stress extent in crops, and are related with the transpiration rate of crops; in order to avoid the influence from water stress on crops, it has the potential to realize the automatic irrigation and regulation in crops based on the information acquired from crops with AE sensor, to make the transpiration amount and irrigation amount of crops achieve an balanced regulation, aiming to make the crops grow in an optimum soil water environment, to increase the utilization of water, and improve the quality of crop fruit.
利用声发射技术和自动灌溉系统检测作物缺水信息
研究开发了基于声发射(AE)技术检测作物缺水信息的自动实时灌溉系统,并以番茄作物为目标进行了温室试验研究。采用PCI-2 AE板卡、R15传感器、电子天平、温度传感器、湿度传感器、CO2传感器、照度传感器和PCI-8333 DAQ组成硬件检测系统,采用虚拟仪器技术构建软件系统,将SPAC系统中土壤、作物和大气三要素有效集成。建立了作物声发射与各环境因子信息的实时采集与检测系统。结果表明:在一定程度上,水分胁迫下作物的声发射频率计数随着作物水分胁迫程度的增加而逐渐增加,并与作物蒸腾速率有关;为了避免水分胁迫对作物的影响,利用声发射传感器获取的作物信息,实现作物的自动灌溉和调节,使作物的蒸腾量和灌水量达到平衡调节,使作物生长在最佳的土壤水环境中,提高水分的利用率,提高作物果实的品质。
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