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February 5, 2026RASSA Journal of Science for Society0 citations

Real-time Automatic Monitoring of Soil Moisture, Relative Humidity, and Temperature Inside a Polyhouse Using Sensors and PLC

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CSC. D. SinghKDKumkum Dubey

Key Points

  • The aim is to optimize plant growth in polyhouses by using real-time environmental monitoring.
  • Developed an automatic system using sensors for temperature, humidity, and soil moisture monitoring.
  • Established correlations between sensor signals and actual environmental measurements.
  • Implemented corrective measures through fan control based on environmental data.
  • Enabled real-time tracking of critical environmental variables.
  • Facilitated improved crop quality and enhanced yield potential.
  • Strengthened the efficiency of crop management practices in polyhouse settings.

Abstract

AbstractReal-time monitoring of the polyhouse environment using sensors and advanced software can significantly improve yield and economic performance by optimizing plant growth. In this paper, we present an automatic system that collects and monitors information related to the polyhouse environment, including temperature, RH, and soil moisture. The developed system establishes correlations between sensor signals and reference measurements of the environmental variables to which they are exposed and takes corrective measures by switching the fan on or off for temperature and RH control. This information helps farmers increase yield, improve crop quality, and ensure timely crop management in polyhouse cultivation.

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Cite This Study

Singh et al. (2025) studied this question.

synapsesocial.com/papers/69843383f1d9ada3c1fb0bdbhttps://doi.org/10.5958/2583-3715.2025.00018.0
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