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April 3, 2026Scientific Reports0 citationsOpen Access

An auto-validation method for a complete IoT pivot irrigation model based on the Penman–Monteith equation

AEAbdelrahman Osman ElfakiSASaleh AlbelwiALAbderrahim Lakhouit

Key Points

  • The aim is to develop an auto-validation method for an IoT-based pivot irrigation model using the Penman–Monteith equation.
  • Developed a comprehensive IoT pivot irrigation model.
  • Conducted an experimental evaluation with grass over 49 days.
  • Established a benchmark framework for assessing pivot irrigation systems.
  • Significant improvements in water usage over traditional methods.
  • Enhanced agricultural productivity demonstrated through real-world tests.
  • The model effectively addressed various challenges in pivot irrigation systems.

Abstract

Pivot irrigation has been introduced as an engineering solution to cultivate large areas of farmland without increasing water usage. Although research studies have proposed different types of pivot irrigation systems, several challenges must be addressed to create a successful system. These challenges include determining crop water requirements, IoT components and architecture, and compatibility, as well as data interpretation, environmental factors, scalability, and result validation. This paper provides an auto-validation method for a complete IoT pivot irrigation model based on the Penman–Monteith equation. Auto-validation is crucial to protecting the pivot system from sensor errors caused by telecom network interference or natural factors. Furthermore, the proposed model effectively addresses all the aforementioned challenges, making it the first comprehensive IoT solution. This paper also develops a benchmark framework for evaluating pivot irrigation systems, providing a standardized basis for performance assessment in future research. As an initial experimental study, the evaluation was conducted using a single crop type (grass) at one field site over a period of 49 days, representing a proof-of-concept validation. Real-world experiments were performed to assess the accuracy and applicability of the proposed model. The results demonstrate significant improvements over traditional irrigation methods, highlighting the system’s effectiveness in optimizing water usage and enhancing agricultural productivity.

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Cite This Study

Elfaki et al. (2026) studied this question.

synapsesocial.com/papers/69cf5ced5a333a821460a7b0https://doi.org/10.1038/s41598-026-46804-3
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Also Consider

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