Mini plant factory development using IoT and cloud system for urban greens cultivation

A significant urban population increases with the rising demand for higher food quality and security. Adapting the current food chain system and our eating patterns are needed to make them more sustainable. Plant factories are one approach for making the food chain system more sustainable. However,...

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Main Authors: Dzaky, M. A. F., Nugroho, A. P., Prasetyatama, Y. D., Falah, M. A. F., Sutiarso, L., Okayasu, T.
Format: Conference or Workshop Item
Language:English
Published: Institute of Physics 2022
Subjects:
Online Access:https://repository.ugm.ac.id/283066/1/63_Mini%20Plant-Dzaky_2022_IOP_Conf._Ser.%20_Earth_Environ._Sci._1116_012028.pdf
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author Dzaky, M. A. F.
Nugroho, A. P.
Prasetyatama, Y. D.
Falah, M. A. F.
Sutiarso, L.
Okayasu, T.
author_facet Dzaky, M. A. F.
Nugroho, A. P.
Prasetyatama, Y. D.
Falah, M. A. F.
Sutiarso, L.
Okayasu, T.
author_sort Dzaky, M. A. F.
collection UGM
description A significant urban population increases with the rising demand for higher food quality and security. Adapting the current food chain system and our eating patterns are needed to make them more sustainable. Plant factories are one approach for making the food chain system more sustainable. However, plant factory systems typically require significant initial capital expenditure. As a result, a mini plant factory, which is more affordable and flexible, will be appropriate in urban areas. The objective of this study was to design, build, and evaluate a mini plant factory system for horticultural crop production. The mini plant factory system comprises a mini cultivation room with three growing shelves equipped with a microclimate sensor, nutrient dosing system, artificial growth light, and ventilation system. Sensors and actuators are integrated with the Agrieye Cloud system for monitoring and control and can autonomously execute data retrieval and actuation. Mini Plant Factory operates by automatically capturing monitoring data every five minutes; if a value exceeds the limit, the actuator control system activates to stabilize that value. The linear regression test yielded the most excellent R2 value of 0.999 for sensor calibration. The validation test was conducted using RMSE (Root Mean Square Error) and MAPE (Mean Absolute Percentage Error). The results show that the lowest RMSE values are 0.133, and the lowest MAPE values are 0.082. The data logging system's performance is perfect. The control and scheduling system works well but does not function optimally since there are no interruptions throughout the data gathering process.
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spelling oai:generic.eprints.org:2830662023-11-17T07:41:24Z https://repository.ugm.ac.id/283066/ Mini plant factory development using IoT and cloud system for urban greens cultivation Dzaky, M. A. F. Nugroho, A. P. Prasetyatama, Y. D. Falah, M. A. F. Sutiarso, L. Okayasu, T. Sustainable Agricultural Development A significant urban population increases with the rising demand for higher food quality and security. Adapting the current food chain system and our eating patterns are needed to make them more sustainable. Plant factories are one approach for making the food chain system more sustainable. However, plant factory systems typically require significant initial capital expenditure. As a result, a mini plant factory, which is more affordable and flexible, will be appropriate in urban areas. The objective of this study was to design, build, and evaluate a mini plant factory system for horticultural crop production. The mini plant factory system comprises a mini cultivation room with three growing shelves equipped with a microclimate sensor, nutrient dosing system, artificial growth light, and ventilation system. Sensors and actuators are integrated with the Agrieye Cloud system for monitoring and control and can autonomously execute data retrieval and actuation. Mini Plant Factory operates by automatically capturing monitoring data every five minutes; if a value exceeds the limit, the actuator control system activates to stabilize that value. The linear regression test yielded the most excellent R2 value of 0.999 for sensor calibration. The validation test was conducted using RMSE (Root Mean Square Error) and MAPE (Mean Absolute Percentage Error). The results show that the lowest RMSE values are 0.133, and the lowest MAPE values are 0.082. The data logging system's performance is perfect. The control and scheduling system works well but does not function optimally since there are no interruptions throughout the data gathering process. Institute of Physics 2022 Conference or Workshop Item PeerReviewed application/pdf en https://repository.ugm.ac.id/283066/1/63_Mini%20Plant-Dzaky_2022_IOP_Conf._Ser.%20_Earth_Environ._Sci._1116_012028.pdf Dzaky, M. A. F. and Nugroho, A. P. and Prasetyatama, Y. D. and Falah, M. A. F. and Sutiarso, L. and Okayasu, T. (2022) Mini plant factory development using IoT and cloud system for urban greens cultivation. In: IOP Conference Series: Earth and Environmental Science, 9 August 2022 through 10 August 2022, Banda Aceh.
spellingShingle Sustainable Agricultural Development
Dzaky, M. A. F.
Nugroho, A. P.
Prasetyatama, Y. D.
Falah, M. A. F.
Sutiarso, L.
Okayasu, T.
Mini plant factory development using IoT and cloud system for urban greens cultivation
title Mini plant factory development using IoT and cloud system for urban greens cultivation
title_full Mini plant factory development using IoT and cloud system for urban greens cultivation
title_fullStr Mini plant factory development using IoT and cloud system for urban greens cultivation
title_full_unstemmed Mini plant factory development using IoT and cloud system for urban greens cultivation
title_short Mini plant factory development using IoT and cloud system for urban greens cultivation
title_sort mini plant factory development using iot and cloud system for urban greens cultivation
topic Sustainable Agricultural Development
url https://repository.ugm.ac.id/283066/1/63_Mini%20Plant-Dzaky_2022_IOP_Conf._Ser.%20_Earth_Environ._Sci._1116_012028.pdf
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