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外部参数对南瓜成熟度的影响。

The Influence of External Parameters on the Ripeness of Pumpkins.

机构信息

College of Horticulture, Gansu Agricultural University, Lanzhou 730070, China.

College of Plant Protection, Gansu Agricultural University, Lanzhou 730070, China.

出版信息

Sensors (Basel). 2023 Dec 27;24(1):143. doi: 10.3390/s24010143.

Abstract

Growing pumpkins in controlled environments, such as greenhouses, has become increasingly important due to the potential to optimise yield and quality. However, achieving optimal environmental conditions for pumpkin cultivation requires precise monitoring and control, which can be facilitated by modern sensor technologies. The objective of this study was to determine the optimal placement of sensors to determine the influence of external parameters on the maturity of pumpkins. The greenhouse used in the study consisted of a plastic film for growing pumpkins. Five different sensors labeled from A1 to A5 measured the air temperature, humidity, soil temperature, soil humidity, and illumination at five different locations. We used two methods, error-based sensor placement and entropy-based sensor placement, to evaluate optimisation. We selected A3 sensor locations where the monitored data were close to the reference value, i.e., the average data of all measurement locations and parameters. Using this method, we selected sensor positions to monitor the influence of external parameters on the maturity of pumpkins. These methods enable the determination of optimal sensor locations to represent the entire facility environment and detect areas with significant environmental disparities. Our study provides an accurate measurement of the internal environment of a greenhouse and properly selects the base installation locations of sensors in the pumpkin greenhouse.

摘要

在受控环境中种植南瓜,例如在温室中,由于有优化产量和质量的潜力,变得越来越重要。然而,要实现南瓜种植的最佳环境条件,需要精确的监测和控制,现代传感器技术可以为此提供便利。本研究的目的是确定传感器的最佳放置位置,以确定外部参数对南瓜成熟度的影响。研究中使用的温室由用于种植南瓜的塑料薄膜组成。五个不同的传感器,从 A1 到 A5 进行标记,分别测量五个不同位置的空气温度、湿度、土壤温度、土壤湿度和光照。我们使用了两种方法,基于误差的传感器放置和基于熵的传感器放置,来进行优化评估。我们选择了 A3 传感器位置,这些位置监测到的数据接近参考值,即所有测量位置和参数的平均值。使用这种方法,我们选择了传感器位置来监测外部参数对南瓜成熟度的影响。这些方法可以确定最佳的传感器位置来代表整个设施环境,并检测具有显著环境差异的区域。我们的研究提供了温室内部环境的精确测量,并在南瓜温室中正确选择了传感器的基本安装位置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c36/10781241/ef0da7a97912/sensors-24-00143-g001.jpg

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