Prototipe Otomatisasi dan Pemantauan Sistem Hidroponik Berbasis IoT dengan Pemanfaatan Solar Panel Sebagai Sumber Energi

Authors

  • Apta Prana Mas Erlangga Universitas Pertamina, Indonesia
  • Ketut Saha Kesta Dinatha Universitas Pertamina, Indonesia
  • Frisca Elfrisa Nainggolan Universitas Pertamina, Indonesia
  • Soni Prayogi Universitas Pertamina, Indonesia

DOI:

https://doi.org/10.33379/gtech.v7i4.3143

Keywords:

Hidroponik, Internet of Things, Prototype, Photovoltaic, Real-time

Abstract

This research presents a prototype of automation and monitoring of an Internet of Things (IoT) based hydroponic system that is optimized by utilizing solar panels as an energy source. This system is designed to increase the efficiency of modern hydroponic farming by monitoring and controlling environmental parameters such as humidity levels, temperature, pH, and plant lighting in real time. Solar panels are used to provide a sustainable source of energy, making the system eco-friendly and autonomous. This prototype is connected to an IoT platform that allows users to access and control the system via a smartphone or computer application. In addition, the collected environmental data can be analyzed to increase agricultural yields and minimize resource consumption. This research represents an essential step in combining IoT technology and renewable energy to increase the productivity of modern agriculture in a sustainable and efficient way.

References

Al-Ali, A. R., Al Nabulsi, A., Mukhopadhyay, S., Awal, M. S., Fernandes, S., & Ailabouni, K. (2019). IoT-solar energy powered smart farm irrigation system. Journal of Electronic Science and Technology, 17(4), 100017. https://doi.org/10.1016/j.jnlest.2020.100017

Alfanz, R., Aqbal, A. H. A., & Martiningsih, W. (2023). Smart Farm Agriculture Design by Applying a Solar Power Plant. JURNAL NASIONAL TEKNIK ELEKTRO. https://doi.org/10.25077/jnte.v12n2.1085.2023

Chowdhury, M. E. H., Khandakar, A., Ahmed, S., Al-Khuzaei, F., Hamdalla, J., Haque, F., Reaz, M. B. I., Shafei, A. A., & Al-Emadi, N. (2020). Design, Construction and Testing of IoT Based Automated Indoor Vertical Hydroponics Farming Test-Bed in Qatar. Sensors (Basel, Switzerland), 20(19). https://doi.org/10.3390/s20195637

Dhanaraju, M., Chenniappan, P., Ramalingam, K., Pazhanivelan, S., & Kaliaperumal, R. (2022). Smart Farming: Internet of Things (IoT)-Based Sustainable Agriculture. Agriculture, 12(10), Article 10. https://doi.org/10.3390/agriculture12101745

Ghufron, S., & Prayogi, S. (2023). Cooling System in Machine Operation at Gas Engine Power Plant at PT Multidaya Prima Elektrindo. Journal of Artificial Intelligence and Digital Business (RIGGS), 1(2), Article 2. https://doi.org/10.31004/riggs.v1i2.21

Hamdani, D., Prayogi, S., Cahyono, Y., Yudoyono, G., & Darminto, D. (2022). The Effects of Dopant Concentration on the Performances of the a-SiOx:H(p)/a-Si:H(i1)/a-Si:H(i2)/µc-Si:H(n) Heterojunction Solar Cell. International Journal of Renewable Energy Development, 11(1), 173–181. https://doi.org/10.14710/ijred.2022.40193

Karanisa, T., Achour, Y., Ouammi, A., & Sayadi, S. (2022). Smart greenhouses as the path towards precision agriculture in the food-energy and water nexus: Case study of Qatar. Environment Systems and Decisions, 42(4), 521–546. https://doi.org/10.1007/s10669-022-09862-2

Megantoro, P., Prastio, R. P., Kusuma, H. F. A., Abror, A., Vigneshwaran, P., Priambodo, D. F., & Alif, D. S. (2022). Instrumentation system for data acquisition and monitoring of hydroponic farming using ESP32 via Google Firebase. Indonesian Journal of Electrical Engineering and Computer Science, 27(1), 52. https://doi.org/10.11591/ijeecs.v27.i1.pp52-61

Prayogi, S., Cahyono, Y., & Darminto, D. (2022). Electronic structure analysis of a-Si: H p-i1-i2-n solar cells using ellipsometry spectroscopy. Optical and Quantum Electronics, 54(11), 732. https://doi.org/10.1007/s11082-022-04044-5

Prayogi, S., Cahyono, Y., Iqballudin, I., Stchakovsky, M., & Darminto, D. (2021). The effect of adding an active layer to the structure of a-Si: H solar cells on the efficiency using RF-PECVD. Journal of Materials Science: Materials in Electronics, 32(6), 7609–7618. https://doi.org/10.1007/s10854-021-05477-6

Prayogi, S., Silviana, F., & Saminan, S. (2023). Development of an Inexpensive Spectrometer Tool with a Tracker to Investigate Light Spectrum. Jurnal Pendidikan MIPA, 24(1), Article 1.

Ramadhan, R. A., Kakke, G. R., Fajar, I. N., & Prayogi, S. (2023). Smart Trash Bin Berbasis Internet Of Things Menggunakan Suplai dari Panel Surya. G-Tech: Jurnal Teknologi Terapan, 7(3), 1149–1158. https://doi.org/10.33379/gtech.v7i3.2777

Ramin Shamshiri, R., Kalantari, F., C. Ting, K., R. Thorp, A transition to plant factories and urban agriculture. International Journal of Agricultural and Biological Engineering, 11(1), 1–22. https://doi.org/10.25165/j.ijabe.20181101.3210

Roidah, I. S. (2014). PEMANFAATAN LAHAN DENGAN MENGGUNAKAN SISTEM HIDROPONIK. Jurnal BONOROWO, 1(2), Article 2. https://doi.org/10.36563/bonorowo.v1i2.14

Santoso, P. P. A., Mahmuda, D., & Sanubary, I. (2023). Pengaruh Jumlah Panel dan Aki terhadap Waktu Operasi Pompa Air pada Sistem Hidroponik Tenaga Surya. G-Tech: Jurnal Teknologi Terapan, 7(3), 827–836. https://doi.org/10.33379/gtech.v7i3.2525

Sari, I. K., Rosida, A. I., Sephia, S., Syafitri, Y., Prakoso, R., Omega, N., Febriyanti, Y., Kristin, S., Gerald, W., Sy, Y. T., & Josua, M. (2022). TEKNIK BUDIDAYA HIDROPONIK DENGAN SISTEM RAKIT APUNG DI DESA HARAPAN JAYA, PELALAWAN. Nusantara Hasana Journal, 2(5), Article 5.

Sari, S., & Zahrosa, D. B. (2017). PEMANFAATAN LAHAN SEMPIT DENGAN SISTEM HIDROPONIK SEBAGAI USAHA TAMBAHAN BAGI IBU RUMAH TANGGA. INTEGRITAS : Jurnal Pengabdian, 1(1), Article 1.

Silviana, F., & Prayogi, S. (2023). An Easy-to-Use Magnetic Dynamometer for Teaching Newton’s Third Law. Jurnal Pendidikan Fisika Dan Teknologi, 9(1), Article 1. https://doi.org/10.29303/jpft.v9i1.4810

Siregar, S., Sari, M. I., & Jauhari, R. (2016). AUTOMATION SYSTEM HYDROPONIC USING SMART SOLAR POWER PLANT UNIT. Jurnal Teknologi, 78(5–7), Article 5–7. https://doi.org/10.11113/jt.v78.8713

Tatas, K., Al-Zoubi, A., Christofides, N., Zannettis, C., Chrysostomou, M., Panteli, S., & Antoniou, A. (2022). Reliable IoT-Based Monitoring and Control of Hydroponic Systems. Technologies, 10(1), 26. https://doi.org/10.3390/technologies10010026

Velazquez-Gonzalez, R. S., Garcia-Garcia, A. L., Ventura-Zapata, E., Barceinas-Sanchez, J. D. O., & Sosa-Savedra, J. C. (2022). A Review on Hydroponics and the Technologies Associated for Medium- and Small-Scale Operations. Agriculture, 12(5), Article 5. https://doi.org/10.3390/agriculture12050646

Venu, S., & Muralimohan, G. (2023). Sustainable atmospheric water generator for hydroponic farming. AIP Conference Proceedings, 2788(1), 130004. https://doi.org/10.1063/5.0148627

Wedashwara, W., Jatmika, A. H., Zubaidi, A., & Arimbawa, I. W. A. (2021). Solar-powered IoT based smart hydroponic nutrition management system using FARM. IOP Conference Series: Earth and Environmental Science, 913(1), 012010. https://doi.org/10.1088/1755-1315/913/1/012010

Wibowo, S. (2021). PEMANFAATAN LAHAN PEKARANGAN DENGAN HIDROPONIK SEDERHANA OLEH KWT SIDA MAKMUR PUCANG BANJARNEGARA. Jurnal Penelitian Dan Pengabdian Kepada Masyarakat UNSIQ, 8(3), Article 3. https://doi.org/10.32699/ppkm.v8i3.1487

Published

2023-10-03

How to Cite

Prototipe Otomatisasi dan Pemantauan Sistem Hidroponik Berbasis IoT dengan Pemanfaatan Solar Panel Sebagai Sumber Energi. (2023). G-Tech: Jurnal Teknologi Terapan, 7(4), 1367-1377. https://doi.org/10.33379/gtech.v7i4.3143

Most read articles by the same author(s)