Design of a Smart Portable Farming Kit for Indoor Cultivation Using the Raspberry Pi Platform
-
Published:2023-05-24
Issue:4
Volume:31
Page:
-
ISSN:2231-8526
-
Container-title:Pertanika Journal of Science and Technology
-
language:en
-
Short-container-title:JST
Author:
Ramli Muhammad Izzad,Mohd Ariffin Muhammad Azizi,Zainol Zarina,Mohd Amin Mohd Nazrul,Hirawan Dedeng,Sumitra Irfan Dwiguna,Jamil Nursuriati
Abstract
The global crisis and climate change have resulted in severe food shortages worldwide. One of the solutions is self-farming by using smart farming technology. Smart and efficient agricultural production or smart farming using IoT sensors, big data, and cloud service has proven its value for a decade, but the effect depends on the agricultural environment of the country or society. Hence self-farming is likely the most feasible solution to avoid food scarcity. The smart farming system monitors and maintains essential growth parameters like light, temperature, and humidity to ensure maximum yield. In this paper, we propose a Smart Portable Farming Kit design, which is simple, lightweight, and durable to be placed indoors in an urban area. This prototype design uses the Internet of Things (IoT) based system for cultivating short-duration vegetables and mushrooms in an urban area with minimal user attention. The proposed design proved better than the traditional setup by increasing the mushroom yield. With Smart Portable Farming Kit, urban farming becomes a more viable alternative to increase food security, making oyster mushroom cultivation in the urban area easier and more profitable.
Publisher
Universiti Putra Malaysia
Subject
General Earth and Planetary Sciences,General Environmental Science
Reference35 articles.
1. AccuWeather. (2022, June 6). AccuWeather, Shah Alam, Selangor. https://www.accuweather.com/en/my/shah-alam/230464/june-weather/230464 2. Ahmmad, S. N. Z., Jaafar, M. M., Muchtar, F., & Yusof, M. A. (2020). Automated gardening portable plant using IoT. International Journal of Advanced Trends in Computer Science and Engineering, 9(1.1), 205-211. https://doi.org/10.30534/ijatcse/2020/3691.12020 3. Almalki, F. A., Soufiene, B. O., Alsamhi, S. H., & Sakli, H. (2021). A low-cost platform for environmental smart farming monitoring system based on IoT and UAVs. Sustainability, 13(11), Article 5908. https://doi.org/10.3390/SU13115908 4. Antonaci, L., Atieno, I., Baoua, I., Chotard, S., Difrancesco, P., Gayford, M., Goetschal, N., Hamadoun, M., Herwanger, N., Hoffine, T., Hohfeld, L., Hoover, S., Husain, A., Hussein, P., Jama, A., Jayasekaran, D., Joud, D., Kabuyaya, J., Khosravi, A., … & Verstraeten, R. (2022). Global Report on Food Crises. Food Security Information Network. 5. Ariffin, M. A. M., Ramli, M. I., Amin, M. N. M., Ismail, M., Zainol, Z., Ahmad, N. D., & Jamil, N. (2020). Automatic climate control for mushroom cultivation using IoT approach. In 2020 IEEE 10th International Conference on System Engineering and Technology (ICSET) (pp. 123-128). IEEE Publishing. https://doi.org/10.1109/ICSET51301.2020.9265383
Cited by
1 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|