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Testing an Open-Source Multi Brand Sensor Node to Monitor Variability of Environmental Conditions inside a Greenhouse

机译:测试开源多品牌传感器节点,以监测温室内环境条件的可变性

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A research project was undertaken to collect data to study the variability in environmental parameters inside a greenhouse. The specific objectives of the project were to 1) develop the network of open-source sensor nodes, 2) evaluate the performance of the individual sensors, and 3) quantify the spatial variability of environmental parameters within the greenhouse. The sensor system consisted of a sensor node equipped with three temperature and relative humidity sensors, one light-level sensor, one barometric pressure sensor, AA batteries, and a microcontroller board with a built-in radio to transfer the data wirelessly. The sensors were controlled with open-source technology. Twelve sensor nodes were fabricated and placed at different locations in a greenhouse to evaluate variability in sensor location and environmental parameters. Data collected during February 2019 were used to test the sensors. Heatmaps were employed to assess the variability of the measurements. Variability in greenhouse temperature, relative humidity, and light level conditions was identified with the sensor system. Overall, environmental measures based on time of day appeared to be a better grouping mechanism for analysis than sensor location in the greenhouse. Similar patterns were observed between the different sensor manufacturer’s heatmaps for the temperature sensors and relative humidity sensors. This study provided a protocol for developing the inexpensive multi-sensor sensor node and showed that automated measurements obtained with the system could help monitor variation in a greenhouse setting. The costs of the system components fabricated for this study included US$76 for each sensor node and US$55 for the gateway, totaling US$967 for the 12-node study described.
机译:采取了研究项目来收集数据以研究温室内环境参数的变化。该项目的具体目标为1)开发开源传感器节点的网络,2)评估各个传感器的性能,3)量化温室内环境参数的空间变化。传感器系统由配备有三个温度和相对湿度传感器的传感器节点,一个光电电平传感器,一个气压传感器,AA电池和带内置无线电的微控制器,以无线传输数据。通过开源技术控制传感器。在温室中制造并放置在不同位置的十二个传感器节点,以评估传感器位置和环境参数的可变性。 2019年2月收集的数据用于测试传感器。采用热线来评估测量的可变性。用传感器系统识别温室温度,相对湿度和光水平条件的可变性。总体而言,基于一天中的环境措施似乎是分析的更好分组机制,而不是温室中的传感器位置。在不同的传感器制造商的热手臂之间观察到类似的图案,用于温度传感器和相对湿度传感器。本研究提供了一种用于开发廉价的多传感器传感器节点的协议,并显示使用系统获得的自动测量可以帮助监测温室设置的变化。本研究制造的系统组件的成本包括每个传感器节点的76美元,网关55美元,为12节点研究总额为967美元。

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