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Journal of Intelligent Systems and Internet of Things

ISSN
Online: 2690-6791 Print: 2769-786X
Frequency

Continuous publication

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Open access · Articles freely available online · APC applies after acceptance

Journal of Intelligent Systems and Internet of Things
Full Length Article

Volume 14Issue 1PP: 185-195 • 2025

Advanced IoT Framework for Optimizing Sunflower Seed Production in Uzbekistan: Integration of Multi-Environmental Sensors

Danish Ather 1* ,
Abu Bakar Bin Abdul Hamid 2 ,
Binti Ya’akub 2 ,
Rubina Liyakat Khan 3 ,
Pooja 4 ,
Rajneesh Kler 1
1Post Doctoral Research Fellow, Infrastructure University Kuala Lumpur, Malaysia; Amity University in Tashkent, Uzbekistan
2Infrastructure University Kuala Lumpur, Malaysia
3Imam AbdulRahman Bin Faisal University, Saudia Arabia
4Sharda University, Uzbekistan
* Corresponding Author.
Received: February 19, 2024 Revised: April 28, 2024 Accepted: July 20, 2024

Abstract

The current work focuses on the establishment of an enhanced Internet of Things (IoT) model in expectation to improve the sunflower seeds output in Uzbekistan. The presented framework involves examination of air quality, soil moisture, temperature, humidity, light intensity, GPS and weather station which is anticipated in giving a complete control and monitoring of the environmental probes at real time. The main goal is to establish an argument that such architecture will increase the yields in agriculture. It is done by simulating a model based on correlation and regression on secondary data which shows that the model will provide solutions to the problems associated with conventional farming which include conventional approaches towards provision of water and failure to internalize the conditions within which farming activities occur. The connection of the proposed sensors with the platform based on Arduino allows to gather and analyze the data that is essential for making appropriate decisions by the farmers. As the results the use of the developed framework in selected fields of sunflower will enhance yield with a potential of up to 25% in yield increase. Thus, the results shows that the implementation of such an innovative IoT architecture can greatly help farmers to increase efficiency, make proper use of resources, and minimize the negative effects on the environment while contributing to the development of sustainable agriculture. At the end the study recommends that further studies shall include more variables in the framework and test it for other crops and in other regions.

Keywords

IoT Framework Arduino Platform Sunflower Seed Production Air Quality Sensors Soil Moisture Sensors Temperature Sensors Light Intensity Sensors GPS Automated Irrigation Uzbekistan Farming

References

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[9] A. K. Agarwal, D. Ather, R. Astya, D. Parygin, A. Garg, and D. Raj, “Analysis of environmental factors for smart farming: An internet of things based approach,” in 2021 10th International Conference on System Modeling & Advancement in Research Trends (SMART), IEEE, 2021, pp. 210–214.

[10] R. L. Khan, D. Priyanshu, D. Ather, and H. Allataifeh, “An implementation of internet of things-based live temperature and humidity monitoring system,” in 2022 11th International Conference on System Modeling & Advancement in Research Trends (SMART), IEEE, 2022, pp. 277–281.

[11] W. Yao et al., “Study and application of an elevator failure monitoring system based on the internet of things technology,” Sci. Program, vol. 2022, 2022.

[12] A. Jain, A. Sarkar, D. Ather, and D. Raj, “Temperature Based Automatic Fan Speed Control System using Arduino,” Available at SSRN 4159188, 2022.

[13] R. Kler, D. Ather, G. Singh, N. Chaudhary, and M. Arora, “Predicting Agricultural Growth in Jizzax Region Using Advanced Machine Learning Techniques: An ARIMA-Based Approach,” in 2023 4th International Conference on Computation, Automation and Knowledge Management (ICCAKM), IEEE, 2023, pp. 1–5.

[14] G. Singh, N. Chaudhary, D. Ather, R. Kler, and M. Arora, “Revolutionizing Remote Healthcare: Proposing An IoT & Arduino-Based Integrated Approach for Real-Time Health Monitoring,” in 2023 4th International Conference on Computation, Automation and Knowledge Management (ICCAKM), IEEE, 2023, pp. 1–5.

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Ather, Danish, Hamid, Abu Bakar Bin Abdul, Ya’akub, Binti, Khan, Rubina Liyakat, , Pooja, Kler, Rajneesh. "Advanced IoT Framework for Optimizing Sunflower Seed Production in Uzbekistan: Integration of Multi-Environmental Sensors." Journal of Intelligent Systems and Internet of Things, vol. Volume 14, no. Issue 1, 2025, pp. 185-195. DOI: https://doi.org/10.54216/JISIoT.140114
Ather, D., Hamid, A., Ya’akub, B., Khan, R., , P., Kler, R. (2025). Advanced IoT Framework for Optimizing Sunflower Seed Production in Uzbekistan: Integration of Multi-Environmental Sensors. Journal of Intelligent Systems and Internet of Things, Volume 14(Issue 1), 185-195. DOI: https://doi.org/10.54216/JISIoT.140114
Ather, Danish, Hamid, Abu Bakar Bin Abdul, Ya’akub, Binti, Khan, Rubina Liyakat, , Pooja, Kler, Rajneesh. "Advanced IoT Framework for Optimizing Sunflower Seed Production in Uzbekistan: Integration of Multi-Environmental Sensors." Journal of Intelligent Systems and Internet of Things Volume 14, no. Issue 1 (2025): 185-195. DOI: https://doi.org/10.54216/JISIoT.140114
Ather, D., Hamid, A., Ya’akub, B., Khan, R., , P., Kler, R. (2025) 'Advanced IoT Framework for Optimizing Sunflower Seed Production in Uzbekistan: Integration of Multi-Environmental Sensors', Journal of Intelligent Systems and Internet of Things, Volume 14(Issue 1), pp. 185-195. DOI: https://doi.org/10.54216/JISIoT.140114
Ather D, Hamid A, Ya’akub B, Khan R, P, Kler R. Advanced IoT Framework for Optimizing Sunflower Seed Production in Uzbekistan: Integration of Multi-Environmental Sensors. Journal of Intelligent Systems and Internet of Things. 2025;Volume 14(Issue 1):185-195. DOI: https://doi.org/10.54216/JISIoT.140114
D. Ather, A. Hamid, B. Ya’akub, R. Khan, P. , R. Kler, "Advanced IoT Framework for Optimizing Sunflower Seed Production in Uzbekistan: Integration of Multi-Environmental Sensors," Journal of Intelligent Systems and Internet of Things, vol. Volume 14, no. Issue 1, pp. 185-195, 2025. DOI: https://doi.org/10.54216/JISIoT.140114
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