Res. Agr. Eng., 2024, 70(1):13-22 | DOI: 10.17221/20/2023-RAE
Enhancing melon yield through a low-cost drip irrigation control system with time and soil sensorOriginal Paper
- 1 Faculty of Science and Technology, Nakhon Pathom Rajabhat University, Nakhon Pathom, Thailand
Drip irrigation is a highly efficient method for watering crops, as it delivers water directly to the roots and minimises wastage due to evaporation or runoff. This paper presents the development and implementation of a low-cost drip irrigation control system that uses both time- and soil sensor-based approaches. The system’s efficiency was compared through a field experiment of melon growing, divided into three categories and four replications using a completely randomised design. The treatments include: T1 [time-based irrigation (TBI)], T2 [soil moisture-based irrigation (SMI)], and T3 [hand watering irrigation system (HWI)]. Results indicated that the TBI technique resulted in faster plant growth compared to the other treatments, as evidenced by increased leaf widths, lengths, numbers, and stem diameter. All irrigation techniques showed significant differences in yield characteristics, with TBI and SMI producing no differences in the first flowering day of female fruit widths, lengths, and weight of melon. However, the HWI treatment resulted in lower fruit length and weight yields. Cost analysis showed that the system is beneficial as a very low-cost device that is affordable, precise, and useful for measuring and controlling irrigation-related parameters for melon cultivation.
Keywords: Arduino; field experiment; irrigation automation; melon cultivation; yield characteristics
Received: February 8, 2023; Revised: September 6, 2023; Accepted: September 13, 2023; Published: March 13, 2024 Show citation
References
- Abba S., Namkusong J.W., Lee J.-A., Crespo M.L. (2019): Design and performance evaluation of a low-cost autonomous sensor interface for a smart IoT-based irrigation monitoring and control system. Sensors, 19: 3643.
Go to original source...
- Abioye E.A, Abidin M.S.Z, Mahmud M.S.A, Buyamin S., Ishak M.H.I., Abd Rahman M.K.I., Otuoze A.O., Onotu P., Ramli M.S.A. (2020): A zeview on monitoring and advanced control strategies for precision irrigation. Computers and Electronics in Agriculture, 173: 105441.
Go to original source...
- Borah R., Kumar R., Mukherjee S. (2020): Low-cost IoT framework for irrigation monitoring and control. International Journal of Intelligent Unmanned Systems, 9: 63-79.
Go to original source...
- Chaoumead A., Phangkeio D. (2019): Soil moisture control system for melon cultivation in greenhouse. Rajamangala University of Technology Srivijaya Research Journal, 11: 269-278.
- Elasbah R., Selim T., Mirdan A., Berndtsson R. (2019): Modeling of fertilizer transport for various fertigation scenarios under drip irrigation. Water, 11: 893.
Go to original source...
- Hamdi M., Rehman A., Alghamdi A., Nizamani m.A., Missen M.M., Memon M.A. (2021): Internet of things (IoT) based water irrigation system. International Journal of Online and Biomedical Engineering, 17: 69-80.
Go to original source...
- Jusoh, M.F., Adnan N., Muttalib M.F.A., Katimon A. (2020): Performance evaluation of drip irrigation system and water productivity (WP) of rock melon grown inside netted rain house shelter. IOP Conference Series: Earth and Environmental Science: 549: 012094.
Go to original source...
- Khanin M., Nabati J., Ebrahimi M., Tavakkoli A., Javidnia D. (2020): Effects of irrigation scheduling and mulching on yield, quality and water use efficiency of melon (Cucumis melo L.). Agricultural Water Management: 234.
- Kodali R.K., Sarjerao B.S. (2017): A low cost smart irrigation system using MQTT protocol. In: IEEE Region 10th Symposium, July 14-16, 2017: 1-5.
Go to original source...
- Kothawade S.N., Furkhan S.M., Raoof A., Mhaske K.S. (2016): Efficient water management for greenland using soil moisture sensor. In: IEEE 1st International Conference on Power Electronics, Intelligent Control and Energy Systems, Oct 22-24, 2018: 1-4.
Go to original source...
- Navarro-Hellín H., Torres-Sánchez R., Soto-Valles F., Albaladejo-Pérez C., López-Riquelme J.A., Domingo-Miguel R. (2015): A wireless sensors architecture for efficient irrigation water management. Agricultural Water Management, 151: 64-74.
Go to original source...
- Nawandar N. K., Satpute V.R. (2019): IoT based low cost and intelligent module for smart irrigation system. Computers and electronics in agriculture, 162: 979-990.
Go to original source...
- Nut N., Phou K., Mihara M., Nuth S., Sor S. (2019): Effects of drip irrigation frequency on growth and yield of melon (Cucumis melo L.) under net-house's conditions. International Journal of Environmental and Rural Development, 10: 146-152.
- Pramanik S., Lai S., Ray R., Patra S.K. (2016): Effect of drip fertigation on yield, water use efficiency, and nutrients availability in banana in West Bengal, India. Communications in Soil Science and Plant Analysis, 47: 1691-1700.
Go to original source...
- Sensoy S., Ertek A., Gedik I., Kucukyumuk C. (2007): Irrigation frequency and amount affect yield and quality of field-grown melon (Cucumis melo L.). Agricultural Water Management, 88: 269-274..
Go to original source...
- Sharma S.P., Leskovar D.I., Crosby K.M., Volder A., Ibrahim A.M.H. (2014): Root growth, yield, and fruit quality responses of reticulatus and inodorus melons (Cucumis melo L.) to deficit subsurface drip irrigation. Agricultural Water Management, 136: 75-85.
Go to original source...
- Shigeta R., Kawahara Y., Goud G.D., Naik B.B. (2018). Capacitive-touch-based soil monitoring device with exchangeable sensor probe. In: 2018 IEEE SENSORS. New Delhi, Oct 28-31, 2018: 1-4.
Go to original source...
- Sudarmaji A., Sahirman S., Saparso Ramadhani Y. (2019). Time based automatic system of drip and sprinkler irrigation for horticulture cultivation on coastal area. In: IOP Conference Series: Earth and Environmental Science, 250: 012074..
Go to original source...
- Visconti F., Salvador A., Navarro P., de Paz J.M. (2019). Effects of three irrigation systems on 'Piel de sapo' melon yield and quality under salinity conditions. Agricultural Water Management, 226: 105829.
Go to original source...
- Zhang H., Li X., Yu H., Zhang Y., Li M., Wang H., Yi H. (2019). A high-quality melon genome assembly provides insights into genetic basis of fruit trait improvement. Iscience, 22: 16-27.
Go to original source...
This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 International (CC BY NC 4.0), which permits non-comercial use, distribution, and reproduction in any medium, provided the original publication is properly cited. No use, distribution or reproduction is permitted which does not comply with these terms.